Land-Based Wind Plant Balance-of-System Cost Drivers and Sensitivities

Land-Based Wind Plant Balance-of-System Cost Drivers and Sensitivities
Title Land-Based Wind Plant Balance-of-System Cost Drivers and Sensitivities PDF eBook
Author
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Pages 0
Release 2014
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ISBN

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With Balance of System (BOS) costs contributing up to 30% of the installed capital cost, it is fundamental to understand the BOS costs for wind projects as well as potential cost trends for larger turbines. NREL developed a BOS model using project cost estimates developed by industry partners. Aspects of BOS covered include engineering and permitting, foundations for various wind turbines, transportation, civil work, and electrical arrays. The data introduce new scaling relationships for each BOS component to estimate cost as a function of turbine parameters and size, project parameters and size, and geographic characteristics. Based on the new BOS model, an analysis to understand the non-turbine wind plant costs associated with turbine sizes ranging from 1-6 MW and wind plant sizes ranging from 100-1000 MW has been conducted. This analysis establishes a more robust baseline cost estimate, identifies the largest cost components of wind project BOS, and explores the sensitivity of the capital investment cost and the levelized cost of energy to permutations in each BOS cost element. This presentation shows results from the model that illustrate the potential impact of turbine size and project size on the cost of energy from US wind plants.

Land-based wind plant balance-of-system cost drivers and sensitivities

Land-based wind plant balance-of-system cost drivers and sensitivities
Title Land-based wind plant balance-of-system cost drivers and sensitivities PDF eBook
Author C. Moné
Publisher
Pages 1
Release 2014
Genre Wind power
ISBN

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Land-Based Wind Plant Balance-of-System Cost Drivers and Sensitivities (Poster).

Land-Based Wind Plant Balance-of-System Cost Drivers and Sensitivities (Poster).
Title Land-Based Wind Plant Balance-of-System Cost Drivers and Sensitivities (Poster). PDF eBook
Author
Publisher
Pages 1
Release 2014
Genre
ISBN

Download Land-Based Wind Plant Balance-of-System Cost Drivers and Sensitivities (Poster). Book in PDF, Epub and Kindle

With Balance of System (BOS) costs contributing up to 30% of the installed capital cost, it is fundamental to understand the BOS costs for wind projects as well as potential cost trends for larger turbines. NREL developed a BOS model using project cost estimates developed by industry partners. Aspects of BOS covered include engineering and permitting, foundations for various wind turbines, transportation, civil work, and electrical arrays. The data introduce new scaling relationships for each BOS component to estimate cost as a function of turbine parameters and size, project parameters and size, and geographic characteristics. Based on the new BOS model, an analysis to understand the non‐turbine wind plant costs associated with turbine sizes ranging from 1-6 MW and wind plant sizes ranging from 100-1000 MW has been conducted. This analysis establishes a more robust baseline cost estimate, identifies the largest cost components of wind project BOS, and explores the sensitivity of the capital investment cost and the levelized cost of energy to permutations in each BOS cost element. This presentation shows results from the model that illustrate the potential impact of turbine size and project size on the cost of energy from US wind plants.

NREL's Balance-of-System Cost Model for Land-Based Wind

NREL's Balance-of-System Cost Model for Land-Based Wind
Title NREL's Balance-of-System Cost Model for Land-Based Wind PDF eBook
Author
Publisher
Pages 0
Release 2019
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ISBN

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NREL's Land-based Balance of System Systems Engineering (LandBOSSE) model is a tool for modeling the balance of system (BOS) costs of land-based wind plants. BOS costs currently account for approximately 30% of the capital expenditures needed to install a land-based wind plant and include all costs associated with installing a wind plant, such as permitting, labor, material, and equipment costs associated with site preparation, foundation construction, electrical infrastructure, and tower installation. NREL developed LandBOSSE after identifying a need for a hybrid of process-based and empirically derived model that can provide flexibility for assessing wind plant BOS costs at a system level. NREL's prior BOS models have relied on empirical fits of legacy industry data, which limit their predictive ability. LandBOSSE, however, was designed to help users explore tradeoffs between innovative design scenarios while balancing the level of detail and speed required for model execution. The model was developed using a hybrid of process-based and empirically derived methods to create a modular model design that will allow for updates as wind energy technology evolves. The goal of LandBOSSE is to allow researchers, analysts, wind power developers, government agencies, and the public to explore how BOS may vary for different wind plant designs. This report summarizes the approach, methods, and equations used to develop LandBOSSE Version 2.1 (hereafter referred to as LandBOSSE 2.1). Future versions of the model may incorporate additional process-based capabilities or modify calculations within the code. Please refer to the GitHub repository at https://github.com/WISDEM/LandBOSSE for the most up-to-date version of the software documentation and code.

U.S. Balance-of-station Cost Drivers and Sensitivities :.

U.S. Balance-of-station Cost Drivers and Sensitivities :.
Title U.S. Balance-of-station Cost Drivers and Sensitivities :. PDF eBook
Author Ben Maples
Publisher
Pages
Release 2012
Genre
ISBN

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Offshore Wind Plant Balance-of-Station Cost Drivers and Sensitivities (Poster)

Offshore Wind Plant Balance-of-Station Cost Drivers and Sensitivities (Poster)
Title Offshore Wind Plant Balance-of-Station Cost Drivers and Sensitivities (Poster) PDF eBook
Author
Publisher
Pages 0
Release 2012
Genre
ISBN

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With Balance of System (BOS) costs contributing up to 70% of the installed capital cost, it is fundamental to understanding the BOS costs for offshore wind projects as well as potential cost trends for larger offshore turbines. NREL developed a BOS model using project cost estimates developed by GL Garrad Hassan. Aspects of BOS covered include engineering and permitting, ports and staging,transportation and installation, vessels, foundations, and electrical. The data introduce new scaling relationships for each BOS component to estimate cost as a function of turbine parameters and size, project parameters and size, and soil type. Based on the new BOS model, an analysis to understand the non-turbine costs associated with offshore turbine sizes ranging from 3 MW to 6 MW andoffshore wind plant sizes ranging from 100 MW to 1000 MW has been conducted. This analysis establishes a more robust baseline cost estimate, identifies the largest cost components of offshore wind project BOS, and explores the sensitivity of the levelized cost of energy to permutations in each BOS cost element. This presentation shows results from the model that illustrates the potential impactof turbine size and project size on the cost of energy from US offshore wind plants.

Modeling Balance-of-System Costs for Land-Based Wind Plants

Modeling Balance-of-System Costs for Land-Based Wind Plants
Title Modeling Balance-of-System Costs for Land-Based Wind Plants PDF eBook
Author
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Pages 0
Release 2020
Genre
ISBN

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The National Renewable Energy Laboratory developed the Land-based BOS Systems Engineering (LandBOSSE) model to provide researchers, analysts, wind power developers, government agencies, and the public with a flexible tool that can be used to estimate the BOS costs associated with wind power plant construction. This fact sheet provides an overview of the model.