Atwell Supports Offshore Wind Developers Throughout Complex Processes

The offshore wind industry in the United States has seen a boom in interested parties since around 2015, and that interest has steadily grown since President Biden’s 30 GW by 2030 initiative as well as the passing of the Inflation Reduction Act. The race is on to acquire lease areas on the continental shelf, complete the site assessment process, communicate effectively with essential stakeholders, and begin construction. Fortunately for Atwell, our Environmental team is already three years into supporting sizable offshore wind development in the Atlantic Ocean and beyond.

“Generally speaking, these projects can take a decade or more to develop and they can cost billions of dollars to assess, permit, and construct, depending on the project size and the scale,” said Andrew DeWitt, Director of Atwell’s Environmental team. “What Atwell is doing right now is a small piece of the big picture, but it is a significant piece as we work through supporting stakeholder engagement, survey plan development, and site assessment plan, or SAP, preparation.”

Atwell has been working with an offshore wind client and the Bureau of Ocean Energy Management (BOEM) on the permitting and development of an offshore wind facility for more than three years, and they still have several significant milestones to reach. Atwell initially supported its client in conducting assessments to determine the viability and potential risks associated with pursuing lease areas for offshore wind development. After the client was awarded the offshore lease through a competitive auction facilitated by BOEM, Atwell continued to provide support by laying the groundwork for communication among agencies involved in development, fisheries stakeholders, and Native American Tribes. Atwell has also supported the development of the BOEM-required buoy survey plan and a site assessment plan.

Katy Reminga, Associate Project Manager at Atwell, shared, “Lease stipulations required us to draft a series of communications plans, the first being an Agency Communication Plan. It details our client’s procedure and plan for engaging with all the relevant agencies involved in permitting and development on the outer continental shelf. We have also drafted a Fisheries Communication Plan, and this plan outlines our process for communicating with individuals involved in the commercial or recreational fishing industries and other tourism-related fishing groups. We’ve also supported the development of a Native American Tribes Communication Plan.”

As the project moved into the next phase of work, Atwell has helped plan and coordinate surveying of the underwater landscape within the lease area. The project team and their survey contractors will search the seafloor for resources to assess possible impacts on underwater habitats, water quality, and cultural resources. Following that, and based on survey results and other information, the client will identify locations to deploy metocean buoys in the water for further research on the wind, wave, and other conditions in the lease area.

With all these moving parts, Atwell has the ability to act as program manager for large-scale and multifaceted development projects. Atwell’s network of connections and subcontractors allows us to walk alongside our client and serve as advisors during discussions of scope, while providing technical feedback and context throughout the process.

Atwell presents a competitive edge in the race to wind development that cannot be understated. As DeWitt and the environmental team have grown, so too has our ability to predict and help prevent challenges in the development of offshore wind projects for our clients. As companies move to diversify their portfolios and take advantage of the renewable energy push, we have the experience and expertise to guide clients along a new frontier from the stakeholder, permitting, and reporting perspectives.

Now, DeWitt and his team are at a crucial turning point in their current project. “When the client is done with the initial high-level surveys, the SAP is submitted and approved, and the buoys are deployed, data will continue to be collected, and assessments will be conducted to support the development of the Construction and Operations Plan, or COP. Once the COP is finalized, it goes to BOEM for their review. BOEM will then conduct an Environmental Impact Statement and continue to gather feedback from stakeholders to inform their decision to approve, approve with modifications, or deny the project.”

Through constant and open communication with clients and stakeholders, and the commitment to incorporate the invaluable feedback received, Atwell continuously aims to hit the mark so clients can keep moving forward. Maintaining high-quality reporting and hitting key milestones is essential to what the Environmental team does.

“It’s very beneficial to have a central group that is supporting the management of all the moving pieces of a project of this scale. We’re held to very rigorous and specific requirements by the federal government, and we work tirelessly to ensure we don’t miss a single important milestone that may have the potential to impede the project’s progression. Working as an extension of our clients, it is our job to ensure the project is moving along from a permitting and reporting standpoint so the developer can focus on other elements,” said Reminga.

That is the Atwell difference, after all. Our clients approach us with large-scale, long-term projects and know that it will not only be completed on time, but that the requirements of doing so will be met with the highest standards. Additionally, our expansive and consistently growing network of offices and team members provide us with the expertise needed to be leaders in our markets and make the mark our clients want to see.

The 7 benefits of using GIS to support the prospecting process for renewable energy companies

By: Lauren Federsel, Associate Director of GIS, and Courtney Schmidt, Senior Director of Energy

In our commitment to aiding renewable energy clients in achieving their goals, we acknowledge the pivotal role that prospecting plays. Effective prospecting empowers them to make strategic and well-informed business choices.

Traditionally, prospecting involved laborious manual data entry, which consumed time and carried the risk of human error. By adopting GIS and ESRI’s spatial analytics and mapping software, we can revolutionize the prospecting process for our renewable energy clients. GIS is a powerful technology that enables the collection, analysis, and visualization of geospatial data. It empowers us to manage diverse layers of data encompassing the natural environment, built and planned environment, competitor activity, queue positions, and more – all within a unified system that enriches our prospecting insights.

Collaboratively, our GIS team works alongside clients and other internal teams at Atwell to identify specific prospecting needs and define the target area of interest. Leveraging GIS, we undertake a comprehensive analysis of numerous constraints to pinpoint the optimal location for our client’s renewable energy project. Our objective is to equip our clients with an understanding of where they should direct their efforts, anticipating potential obstacles and challenges proactively rather than being forced into reactive adjustments down the road.

By integrating GIS into our prospecting process, we streamline the decision-making journey, ensuring that our clients start the development cycle with a strategic advantage. This technology-driven approach empowers renewable energy companies to position themselves for success, ultimately advancing their sustainable initiatives and driving meaningful impact in the industry.

The benefits of using GIS for renewable energy prospecting

We’ve identified seven key benefits to employing GIS to enhance your company’s prospecting endeavors:

 

  1. Resource assessment: GIS assists in evaluating the renewable energy potential of specific areas. For solar energy, GIS analyzes solar radiation levels, considering factors like sun position, shading, and atmospheric conditions. In the case of wind energy, GIS assesses wind speed and direction data to pinpoint suitable wind farm locations. This information directs companies toward areas with the highest energy potential.

 

  1. Site selection: After identifying potential areas, GIS aids in site selection by factoring in diverse elements such as environmental constraints, land use, proximity to infrastructure (e.g., transmission lines, substations), market pricing conditions, queue data, and regulatory considerations. Through overlaying and analyzing different layers, GIS facilitates the identification of optimal project sites while minimizing impacts and project development risks.

 

  1. Land use analysis: GIS provides detailed land use and land cover data, crucial for comprehending the impact of renewable energy projects on the existing environment. This data helps identify areas aligning with a company’s project objectives and adhering to local regulations.

 

  1. Grid integration: GIS facilitates the analysis of existing power grid infrastructure, identifying potential interconnection points and assessing capacity for integrating renewable energy sources into the grid. This information is pivotal for gauging technical and economic feasibility.

A dark GIS map with green digital circles and points marking various locations. Each circle, representing data from the prospecting process, contains numerical values and varies in size. The background showcases city streets and geographical features, ideal for renewable energy companies strategizing site selections. A dark GIS map with green digital circles and points marking various locations. Each circle, representing data from the prospecting process, contains numerical values and varies in size. The background showcases city streets and geographical features, ideal for renewable energy companies strategizing site selections.

  1. Visualizations and communication: Utilizing GIS, we create visually compelling maps and 3D models, simplifying the communication of intricate information to stakeholders, investors, and local communities.

 

  1. Risk mitigation: GIS identifies potential risks linked with renewable energy projects, such as natural hazards, proximity to critical infrastructure, or environmental sensitivities. By considering these factors during prospecting, we assist clients in reducing project risks.

 

  1. Long-term planning: Through the analysis of historical data and trends, GIS identifies areas consistently displaying renewable energy potential over time. This insight aids in strategic decision-making, ensuring sustainable growth.

 

Assisting our clients in achieving their goals

Our team at Atwell has harnessed GIS and ESRI to prospect entire states and ISO territories for viable locations for battery storage, utility, and community-scale solar and wind projects. Using proprietary modeling, the GIS team efficiently identifies feasible buildable areas, a process taking significantly less time than conventional reviews. Upon completion, ArcGIS incorporates project-specific data and constraint layers, prioritizing points of interconnection and areas of interest.

One project involved 850 potential points of interconnection (POIs) within a state, which we were able to reduce to 63 POIs. ESRI technology accelerates the initial process, allowing focused constraint evaluation that might otherwise surface later, thus eliminating non-viable data. Our program and development managers then engage Atwell’s subject matter experts to assess the viability for the top-ranked POIs. Data stored in ESRI is shared with the client, fostering collaboration and swift progression to the land secure phase.

Overall, GIS streamlines the prospecting process for renewable energy firms, offering spatial insights, data-driven decisions, and visualizations that contextualize potential project locations. By harnessing GIS, companies optimize the efficiency and efficacy of their renewable energy projects, leading to time and cost savings.

About the Author

Courtney Schmidt

Vice President

Courtney has managed and provided technical expertise to programmatic efforts across the country for over 22 years. She has passion and experience in building teams across geographies and disciplines, siting facilities, and managing development and operations activities for clients.

About the Author

Lauren Federsel

Associate Director

Lauren Federsel is a Geographic Information Systems (GIS) Professional with over 25 years of geospatial experience. She has multiple levels of experience in GIS Management which includes long-term geospatial visioning and strategic planning to keep companies on the forefront of digital technologies.

5 considerations for developers trying to connect to an energy grid in high demand

By: Jason Utton, Vice President of Energy – Power

The state of the renewable industry from an economic perspective with the Inflation Reduction Act (IRA) has never been better. But, the explosion in renewable energy projects is overwhelming the system for connecting new projects to the grid.

Plugging a wind or solar project into the grid (a.k.a. interconnection) is one of the most difficult parts of the renewable energy development process. Unlike many things in the development cycle, interconnection is largely not directly dependent upon a developer’s actions. There are countless variables that are out of the developer’s control, but must be considered in the development process. Adding to an already stressed set of circumstances is the complicated nature of the grid in today’s clean energy race.

What might seem like a risky project can be transformed into a well-executed and wise investment by adding a few considerations, and the right Power firm, in the beginning. Here are five components to consider when connecting to the grid:

  1. Complete a site assessment on the front end

Transmission analysis and preliminary injection analysis must be done on the front end so that there is a baseline understanding of any potential site from a transmission perspective. Before you even begin thinking about connecting to the grid, you should be considering the transmission options. Figure out the best places to inject the power (the best place is the most cost-effective) because strong financials are ultimately needed to complete a project. If it’s not economically viable, it will never be built. It’s also important to understand that electric customers don’t pay extra for extra capacity for a future developer to use.

  1. Determine the right size needed

Some people think of the grid as a bunch of open spaces, like connection points on a long extension cord, but that’s not accurate. The U.S. grid is not like a lot of surge suppressors with empty slots across the country that developers can simply plug their project into. The grid is made up of many cords that are already in use with very few open spaces to connect to for free. The current cords must be cut, then a substation, or a 3-breaker ring bus, is needed to allow the power to flow onto the grid. And there are network upgrades that are needed throughout the entire system (sometimes many miles away from the project) that need to be improved to allow for the added energy. This is why it’s imperative to understand what voltage is available and if there is any available capacity being unutilized. Trying to interconnect a 100 MW project into a system that only has 50 MW of capacity will add costs to the project.

  1. Use the right technology

Now that the IRA has made wind energy more cost competitive, a developer must consider different technology options and choose the best fit for their site. This can be for economic reasons but also for commercial reasons. Wind predominantly generates electricity at night, whereas solar generates during the day. A developer must place technology appropriately. In addition to picking the best technology for a particular site, storage is now a viable option in the majority of sites across the country because of the multiple uses case storage provides. If storage is added, where will it be placed? Battery storage opens the door to countless other opportunities, and Atwell can assist clients in determining what technology will be best suited for their site.

  1. Keep your eye on the long-term landscape

Regardless of site, it is going to take at least two years to develop a project, and some projects will never get to the end of the road. Don‘t fall into the mistake of looking at a project today but failing to consider what may happen tomorrow – Look at the interconnection queues across the country! You must take into account the energy projects that are currently in line, waiting to be studied and connected to the grid. Then, you must be prepared if they connect first and understand how that will impact your project. Understanding what it takes to pick the right site and the competitive landscape is critical to success.

  1. Assume you’re not the only one interested

You must be very attuned to the competition, especially following the passage of the IRA. If you find a strong wind resource, or a good solar site, odds are you’re not the first one to find that area, and you may not be the only one there now. Situational awareness leads to situational dominance – you must know what the competition is doing. How far along is their project? What is the likelihood that their project is built? And, if you think their project is going to get built, how will that impact your project?

If this sounds like a lot to consider, we get it. There are a lot of factors at play before your project even enters the arena, and while the IRA makes renewables more cost competitive, it adds to the complications in the development space. Fortunately, we have the resources to conduct the studies, determine the right project size and technology needed for your project, and help you create a game plan to understand where the grid could be in the years to come.

We help clients run studies, do analyses, evaluate options, and make the best decisions. Depending on who our clients think their final customer is, we can assess different parts of the country and determine whether it’s wind, solar, or battery storage that’s needed. We also have the expertise to help our clients navigate the regulations set forth by the various Independent System Operators (ISOs). Rest assured, when you partner with Atwell, you’re partnering with industry experts who can and want to help you succeed.

It’s a stressful time for connecting to the grid, but it’s an exciting time, and the Atwell team can take the stress off your shoulders so you can keep your eyes on the landscape ahead.

About the Author

Jason Utton

Senior Vice President

Senior Vice President of Atwell’s Power Group, Jason Utton has been developing renewable energy projects for more than 17 years, with experience in wind, solar, and battery storage projects across the country. He currently provides large scale investment and development clients with business goal setting, renewable portfolio optimization, and capital deployment strategies.

GIS is more than a map – it’s a strategic tool to connect data and drive decision

When contemplating GIS, it evokes thoughts of maps and data points, perhaps even the dashboards observed during the height of the COVID pandemic. However, it is crucial to recognize that GIS extends far beyond mere cartography. It is a comprehensive geographic information system that encompasses the creation, management, analysis, and mapping of diverse datasets.

Acting as the linchpin of everyday data utilization, GIS consolidates information into a centralized repository, facilitating remote accessibility and real-time interpretation during the data collection process. Thus, GIS transcends the conventional notion of being solely a mapping tool.

Connecting the dots through GIS

“GIS means connection. GIS connects data by leveraging the spatial component of information, allowing for the integration, analysis, and visualization of diverse datasets to gain insights into geographic patterns and relationships,” said Lauren Federsel, Associate Director of the GIS team at Atwell. “At Atwell, our projects rely on data, and we use GIS to collect and manage the data so we can interpret it and keep our clients informed in real-time.

“GIS gives us the ability to manage multiple layers of data collection from both the natural environment – such as water courses, water bodies, wetlands, and species – to the built environment – such as buildings, roads, solar, wind, transmission – and more, within the same system. We can leverage whatever combination of data gathered from the field, mined online, or other product data and display it all on top of each other to help inform decisions.”

Our team of GIS experts provides both internal support to our teams and external support directly to our clients. Whether we’re supporting our land development, natural resources, or our environmental clients, our GIS team is working to ensure their data reflects the most up-to-date and accurate numbers to minimize risk and maximize opportunities for our clients.

“We work together with internal teams at Atwell and the client to identify the project needs and the area of interest – be it an acre, a mile, or multi-state,” said Federsel. “We then use GIS to analyze a multitude of constraints to determine the best location for the client to do their work. Our goal is to help our clients understand where they should work by anticipating roadblocks, rather than reacting and adjusting down the road.”

Real-time data collection

As our GIS team has grown and evolved, so has our ability to automate back-end processes that keep our clients in touch with real-time layers (data points). The models our team has created take much of the human error out of the process, as the systems and deliverables our clients have access to are constantly incorporating new layers that reflect all completed work. Ultimately, our client only needs an internet connection to access real-time information.

The best part? When any of Atwell’s team is in the field collecting data, all that is needed to access and enter data is a phone or tablet.

“If our client has land agents going out in the field, they don’t need a map. They don’t need infrastructure. They just need a set of questions that they’re asking owners in a mobile version of a form – like a clipboard, but the clipboard is mobile,” said Federsel. “Then imagine all the information the field agent is collecting in that clipboard is automatically populated to a database that’s online and can be accessed in real-time by any project manager, developer, or whomever. Each time the field agent hits submit, I can go review that data while working in the office.”

 

Customized dashboards for clients

Atwell’s GIS team leverages ESRI ArcGIS Dashboards to develop dynamic and real-time visualizations that effectively communicate geospatial data to our clients. These interactive dashboards provide a comprehensive view of location-based analytics, presenting instinctive and interactive data visualizations on a single screen. By combining charts, maps, tables, and graphs, they offer a cohesive and engaging display of information.

The configurability of these dashboards allows them to adapt to different map content and interact with various elements such as widgets and indicators. Users can actively engage with the data, filtering it based on attributes or geographic areas to focus on specific subsets of information and analyze trends and patterns. Atwell’s GIS team ensures that the appearance and branding of the dashboards align with the visual identity of both Atwell and our clients. Custom themes, colors, and styles are applied to create a consistent and professional look.

Furthermore, dashboards can include charts that cross-filter the map, facilitating trend visualization and enhancing the conveyed information. They seamlessly integrate with other components of Atwell’s ArcGIS platform, enabling the GIS team to connect them with ArcGIS Online or ArcGIS Enterprise. This integration allows the dashboards to leverage data from diverse sources, including ArcGIS maps, layers, and geospatial analysis tools.

Overall, these interactive dashboards serve as a powerful medium for presenting up-to-date data visualizations and showcasing spatial-based analytics in an intuitive and seamlessly interactive manner. By harnessing the capabilities of ArcGIS Dashboards, Atwell’s GIS team empowers clients to make informed decisions, monitor status in real-time, and gain valuable insights into their projects.

The future is real-time

“GIS bridges all of our different teams here at Atwell,” Federsel said. “We offer our clients the latest and greatest data to avoid working in an incorrect data set. You don’t have to be a GIS person. You don’t have to know anything about GIS. We can build engaging web-based solutions with a user-friendly interface where clients can engage and provide feedback while they focus on moving the project forward.”

Our team at Atwell views GIS as a strategic tool for connecting data, enabling real-time insights, and supporting decision-making. By leveraging GIS capabilities, we offer clients the latest data, user-friendly applications, and seamless integration to drive project progress and success.

 

How our Environmental team advanced an infrastructure replacement project in an area with multiple endangered species

 

The American Society of Civil Engineers has a D rating for Michigan’s energy infrastructure. Since 2021, consumers have been experiencing outages during storms due to aging infrastructure. In fact, according to a report written in 2015 by the U.S. Department of Energy, over 70% of America’s transmission lines are over 25 years old. If these don’t get rebuilt or repaired in the coming years, it will only cost more money, and the demand will rapidly outpace the ability to replace them.

The process of replacing current infrastructure requires diligent foresight and planning as the permitting process itself can take up to 10 years. Recently, however, our Environmental team obtained a unique-to-Michigan permit that can help companies complete projects in a timely and cost-efficient way.

Atwell was hired to provide environmental consulting services for a proposed 70-mile transmission line rebuild extending from Riggsville, Michigan to Port Calcite, Michigan, and to Rockport, Michigan. After decades of weather, erosion, and disturbances in surrounding areas, the transmission line in place had worn away, leaving much to be desired. Thus, it was time to look at what lay beneath and replace the entire 70 miles of transmission line.

 

“When we replace transmission lines or lay new lines entirely, there are a lot of factors to consider that many may not realize,” said Bourke Thomas, Atwell’s Vice President of Environmental Services. “Our Environmental team was brought on to conduct field surveys to analyze any potential endangered species that may be impacted and protect current habitats. If a project crosses through critical habitat for an endangered species, the complexity of a project dramatically increases as does the cost of the permitting application process.”

Atwell got to work surveying the projected rebuild site for any signs of wildlife or plant species that may be threatened or endangered. Over the span of just a few weeks, Atwell team members walked the full 70 miles of transmission line to understand the potential impacts surrounding plant life and wildlife. In the process of doing so, the team made a discovery that could have had massively detrimental effects to the projected timeline of the restoration. While conducting a field survey, four federally endangered species were found: an Eastern Massasauga rattle snake, the Hines Emerald Dragon Fly, a Hungerford’s crawling water beetle, and the dwarf lake iris.

Upon discovery, Atwell moved quickly to set up a thorough investigation into how these species lived, when they were most active, and when they were dormant or hibernating. “If the construction processes were to begin when the species are active, you risk harming a much greater number than if building commences while they are dormant,” said Thomas.

The next phase in the project was crucial for the safety of the species as well as the timeline of the project. To obtain a permit to proceed with the project and reduce as much impact to the endangered species habitats, Atwell had to work with the U.S. EPA, U.S. Corps of Engineers, U.S. Fish & Wildlife Service (USFWS), and Michigan Department of Environment, Great Lakes, and Energy.

The survey data collected was compiled into a detailed report for the USFWS. It was this report that helped Atwell get a permit through a Small Federal Handle. This specific permitting process is rarely used in Michigan but was granted to the team due to exceptional and thorough reporting. The report was so well written, Atwell was approved to begin breaking ground earlier than anticipated.

Atwell played a major role in surveying, analyzing, and collecting data on the endangered species that ultimately resulted in lower costs and a shorter timeline for our client. The team’s thorough research helped ensure a safe project all while saving the client time and hundreds of thousands of dollars.

 

Celebrating National Surveyor’s Week: An interview with Vice President Drew Celovsky

In honor of National Surveyor’s Week, we asked Vice President Drew Celovsky about his career in surveying and what challenges the field is facing today.

  • What makes surveying a unique career?

Since the beginning of history and with written documentation dating back many centuries, there has always been a need for boundary lines to be established for infrastructure to be built. Land has been fought over, sold, claimed, or purchased throughout history, and the need for boundary lines remains essential in the development of nations, communities, and countries that exist today. This makes surveying one of the oldest professions.

When we take a glance at the founding and settlement of the United States of America – led by recognized surveyors such as George Washington, Abraham Lincoln, Benjamin Banneker, Daniel Boone, Meriwether Lewis, and William Clark to name a few – surveyors today are often challenged with dedicated research and retracement of the steps of the original surveys established hundreds of years ago.

  • What is the typical day of a surveyor?

As every project is unique in nature, the day-to-day operations of a surveyor certainly change depending on the tasks at hand. Starting with the office, a surveyor can find that they may be researching and plotting vesting deed information, resolving boundary lines for drafting of legal plats from data collected in the field, project management, data processing, and more.

In the field, surveyors can find themselves performing tasks such as coordinating geometry calculations, searching for, and collecting precise electronic data of boundary corners, topography, construction staking, and as-built existing features/infrastructure. These precise electronic devices utilized by the field surveyor can include but are not limited to the following equipment:

  1. Conventional and Robotic Total Stations
  2. GPS (Global Positioning Systems)
  3. UAV (Unmanned Aerial Vehicle)
  4. 3D Laser Scanning

 

  • Why did you choose to be a surveyor?

I come from a family of surveyors, so it is safe to say I was born into it. Additionally, my passion for Texas history and the extensive research and boundary retracement of the original Texas patent surveys and Spanish Land Grants as the Republic of Texas made its transition into the State of Texas in 1846. One thing that was quite rewarding for me was finding these original corners and witness trees before being destroyed in many cases by urban development.

  • What challenges does the surveying field face today?

Resources. In my opinion, one of the biggest challenges the field faces today is the lack of surveying graduates. There are not enough to meet the needs across the nation. Another challenge is the rate at which technology continues to advance. Understanding this technology, the respective mentoring and training vs. ROI associated with it are imperative, to say the least.

  • What separates an Atwell surveyor from others?

Atwell is and continues to be one of the industry leaders. An Atwell surveyor is well-rounded and able to quickly adapt to any tasks that may come their way. Many of the Atwell field surveyors are local across our numerous offices while more than 70 crews are mobile across the nation. This blend of unique and diversified surveyors along with their advanced knowledge of the latest technologies and their ability to execute and deliver warrants separation.

Preparing for the Inflation Reduction Act of 2022: Five key development drivers to understand before planning your next move in renewable energy

The Inflation Reduction Act of 2022 was just signed into law. If you’re in the renewable energy industry, here’s what you need to prioritize to get ahead of the competition

By Jason Utton

The Inflation Reduction Act of 2022 – the single largest investment in renewable energy – was signed into law on August 16, 2022. This once-in-a-generation energy transition law expands both the time horizon and value of tax credits for clean energy technologies. It will remain in place for at least the next decade, providing certainty to developers and manufacturers who have faced regular incentive lapses over the previous two to three decades. In all, the law will help more than triple the clean power production in the country, adding up to an additional 550 gigawatts of electricity from wind, solar and other clean power technologies, according to analysis from the American Clean Power Association.

The initial bill caught everyone (myself included) by surprise. I’ve never seen anything as comprehensive in reducing the cost of renewable energy, and I’ve been in the industry for more than 14 years, spending the majority of those years developing clean energy projects across the country. This law sends a clear message to the world that the U.S. is taking a leadership position in ensuring energy security, increasing energy innovation, and reducing annual carbon emissions 75% from 2022 levels.

Many companies are trying to understand how they’re impacted and how best to leverage it in their favor.  Speed to market is critical and having a thought-out strategic approach will help identify and prioritize actions when it comes to smartly investing time and dollars. Based on my experience, clients need to clearly understand five key drivers to develop successful renewable energy projects – the best location, the right technology, a “right-sized” project or program pipeline, the best spot to interconnect the project (in the right Interconnection Queue), and the necessary permits needed to complete development. This law is expected to lower wind and solar project costs (LCOEs) 10%-50%, especially in areas that have previously lagged, and the umbrella covering the five (5) key drivers is ensuring your project is cost competitive enough to win a long-term power contract.

Location is everything

Where you decide to develop starts you down a path and you need to understand the best technology and optimal size for a given area. The new law gives solar projects the option to claim the Production Tax Credit (PTC) in lieu of the Investment Tax Credit (ITC). If you develop in a location that has a strong capacity factor, it may be more economic to claim PTC in lieu of ITC (SPP, CAISO, ERCOT).  Developers need to do the economic calculation on which is better to utilize. If your company is looking to expand into a new geography, you may be unsure about the pitfalls that are prevalent in certain areas. States have different permitting rules and requirements. It’s extremely helpful to understand a new environment and where you should focus your attention.

The type of technology you choose matters

Wind, solar, battery storage, hybrid, carbon capture, hydrogen – how do you choose the right type of technology? Stand-alone renewable energy facilities like solar and wind are intermittent; their output is based on weather and time of day. If you are targeting a customer who needs on-peak power, they will be interested in a solar project. If technology doesn’t matter and they just want a renewable resource, then it’s a pure economic decision – and depending on location and capacity factor, it may be better to go with a wind project. With the new stand-alone battery storage ITC coming from this law, it may make sense to add a battery to a solar or wind project. Consider all the pros and cons as you decide which technology best suits your company’s goals.

Right size your pipeline

Challenges occur throughout every project’s development life cycle and right sizing your renewable energy pipeline is key. If you are targeting two projects, it makes sense to prospect and begin developing on more. Fatal flaws can pop up throughout development from many different areas. A project can fail from not signing an anchor landowner, receiving an interconnection study that exceeds your financial thresholds, or not receiving an environmental permit. If you don’t have backups in place, you run the risk of not meeting your goals and falling months behind the competition. A good consultant can help you develop a right-sized pipeline or help you add to your existing pipeline based on what you currently have and where you want to go.

The Interconnection Queue is about to explode

The Generator Interconnection Queue is a list of every generation project currently proposed to gain access to the grid. Each grid operator controls its own queue and has a unique set of rules on how projects are studied and how long it takes to complete the study process (some take years to complete). It’s safe to say the rush to secure interconnection rights for renewable energy projects is about to significantly expand throughout the country. Many of the interconnection queues are already overloaded and delays continue to grow. Unfortunately, the new law did not directly address this challenge – so it’s essential to be prepared and act fast.

Understand the cost competitive umbrella

At the end of the day, every renewable energy project must be cost competitive to get built. Most projects compete for long-term power contracts when potential customers issue RFPs, and it’s a very competitive process. Customers (utilities, municipalities, commercial & industrial) expect affordable projects that meet their needs before they execute long-term contracts (5 years – 30 years). Cost competitiveness begins when you create a development budget and lives throughout the entire development lifecycle. Cost is impacted from every aspect of development: the financial structure offered to landowners, how much financial impact do community imposed set-backs have on the energy resource, how much will it cost to interconnect onto the grid (network upgrade costs), and the type of supply chain contract you have from major equipment manufacturers (less than Tier 1 suppliers may impact borrowing capability). If you haven’t been focused on every economic driver, you may not realize that your project is out of the money and won’t be selected in a future RFP.

The future of renewable energy developments

This law is super positive for all thing’s energy transition. The ambiguity we’ve all grown accustom to surrounding renewable energy tax credits is finally removed for at least the next decade. This exciting law creates an opportunity that renewable developers can’t ignore, but with so many new incentives and different ways to go, it can be difficult to know where to begin. As the development landscape gets more crowded, finding the right advisor helps you create a strategic approach and get an advantage over the competition.

 

Jason Utton – Vice President, Power & Energy

Throughout his career, Jason has been on the leading edge of wind energy, solar energy, and battery storage projects across the country. As a Vice President in Atwell’s Power & Energy division, Jason provides sustainable solutions for evolving energy companies. With over 14 years of experience in developing renewable energy projects, he helps clients grow their businesses while navigating the shifts in energy policy.

About the Author

Jason Utton

Senior Vice President

Senior Vice President of Atwell’s Power Group, Jason Utton has been developing renewable energy projects for more than 17 years, with experience in wind, solar, and battery storage projects across the country. He currently provides large scale investment and development clients with business goal setting, renewable portfolio optimization, and capital deployment strategies.

Atwell’s Lakewood Office Promotes Katrina Stewart to Project Manager

 

Atwell, LLC is pleased to promote Katrina Stewart to Project Manager in our Power and Energy group. Based in Atwell’s Lakewood, Colorado office, Katrina will be responsible for managing the civil design project team and guiding the team’s deliverables, maintaining project budgets and schedules, providing quality control, and promoting and expanding Atwell’s Power and Energy operations.

With a strong background in the Power and Energy industry, Katrina has over 12 years of experience in project management, transmission line creation, construction field engineering, and substation design, with four of those years being at Atwell. Katrina’s areas of expertise include project management, field engineering, issue resolution, construction, and materials testing (soils, asphalt and concrete, and hilti DX). She has worked on projects nationwide from the El Algodon Alto Substation in Texas to the Blue Harvest Solar Plant in Ohio. She earned her Bachelor of Science degree in Civil Engineering at Michigan Technological University and has her engineering in training (EIT) certification.

“Katrina is an accomplished leader with extensive experience in power engineering, generation, transmission and distribution engineering, and construction support and inspection,” said Vice President Daniel Farmer. “She has been an incredible asset to the power and energy team the past four years and will be a great leader to the team.”

Atwell’s Cleveland Office Hires Courtney Schmidt as Director

 

Atwell, LLC is pleased to announce that Courtney Schmidt has joined the firm as Director, Power and Energy. Based in Atwell’s Independence office, she will support the company’s power and energy group by leading business development efforts and client relationships, managing projects, guiding her team’s deliverables, providing quality control, and maintaining budgets and schedules for projects throughout the region.

With a wealth of experience, including experience in creating profitable, business-changing growth strategies, Schmidt has been instrumental in startup initiatives. She has designed inaugural strategy; guided growth; communicated mission, created and motivated teams, as well as translated technology potential into effective business value to close the gap between vision and reality.

Schmidt specializes in the development of business in new markets and expanding core services to meet the market’s evolving needs. She monitors industry trends and initiatives while recognizing how they affect strategy and growth potential. She identifies synergies, reflects on policy technology and economic forces affecting the market, and collaborates with clients on how to best anticipate and address their needs. Schmidt joins Atwell from a wireless technology consulting company, where she spent more than 22 years. Over her tenure there, Courtney led corporate operations throughout the country. Schmidt earned a Juris Doctorate from Cleveland State University, Cleveland-Marshall College of Law, and a bachelor’s degree in Economics from Wittenberg University.

“Courtney’s decades of experience with navigating transition and growth will be a valuable asset as Atwell continues to expand its power and energy group nationwide,” said Atwell Vice President Matt Bissett. “We look forward to seeing her further develop our staff and provide our customers with innovative solutions.”

Atwell’s Southfield Office Hires Andrew DeWitt as Team Leader

 

Atwell is pleased to welcome Andrew DeWitt to its team as a Team Leader in the environmental practice. Based in Atwell’s Southfield, Michigan office, Andrew will be responsible for managing renewable energy project teams, guiding team deliverables, and client relationship management and development across renewable energy markets nationwide. Andrew will play a key role in overseeing Atwell’s environmental programs and initiatives for clients developing and pursuing solar and wind energy assets. In doing so, Andrew will provide strategic advice and risk-management support.

Prior to joining Atwell, DeWitt was a senior project manager at Environmental Resources Management based in west Michigan. He specializes in managing multi-disciplinary teams on large-scale and complex projects for clients across a range of industries, including power and energy, oil and gas, mining, and telecommunications. He has notable success managing major capital projects that required challenging permitting and National Environmental Policy Act (NEPA) compliance, and he has managed NEPA projects under the direction of almost ten different lead federal agencies across the United States and its territories. In addition, Andrew has managed due diligence, brownfield redevelopment, and remediation projects throughout the Midwest. DeWitt holds a bachelor of science degree in Geology (Biology minor) from Grand Valley State University and a Master of Science in Geospatial Sciences in Geology and Geography from Missouri State University.

“Andrew’s permitting experience in the power and renewable energy industry will be put to good use for our clients and staff,” said Atwell Vice President Christopher Rutledge. “His ability to manage large capital projects as well as his ability to navigate the permitting process through federal, state and local regulatory agencies, make him an excellent addition to our team.”