4.4 Article

Two Corrections for Turbulent Kinetic Energy Generated by Wind Farms in the WRF Model

Journal

MONTHLY WEATHER REVIEW
Volume 148, Issue 12, Pages 4823-4835

Publisher

AMER METEOROLOGICAL SOC
DOI: 10.1175/MWR-D-20-0097.1

Keywords

Large-eddy simulations; Mesoscale models; Model evaluation/performance; Numerical analysis/modeling; Parameterization; Subgrid-scale processes

Funding

  1. U.S. Bureau of Ocean Energy Management [0040420490]
  2. U.S. National Science Foundation's Division of Atmospheric and Geospace Sciences [1564565]
  3. National Science Foundation
  4. Directorate For Geosciences
  5. Div Atmospheric & Geospace Sciences [1564565] Funding Source: National Science Foundation

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As wind farms grow in number and size worldwide, it is important that their potential impacts on the environment are studied and understood. The Fitch parameterization implemented in the Weather Research and Forecasting (WRF) Model since version 3.3 is a widely used tool today to study such impacts. We identified two important issues related to the way the added turbulent kinetic energy (TKE) generated by a wind farm is treated in the WRF Model with the Fitch parameterization. The first issue is a simple bug in the WRF code, and the second issue is the excessive value of a coefficient, called C-TKE, that relates TKE to the turbine electromechanical losses. These two issues directly affect the way that a wind farm wake evolves, and they impact properties like near-surface temperature and wind speed at the wind farm as well as behind it in the wake. We provide a bug fix and a revised value of C-TKE that is one-quarter of the original value. This 0.25 correction factor is empirical; future studies should examine its dependence on parameters such as atmospheric stability, grid resolution, and wind farm layout. We present the results obtained with the Fitch parameterization in the WRF Model for a single turbine with and without the bug fix and the corrected C-TKE and compare them with high-fidelity large-eddy simulations. These two issues have not been discovered before because they interact with one another in such a way that their combined effect is a somewhat realistic vertical TKE profile at the wind farm and a realistic wind speed deficit in the wake. All WRF simulations that used the Fitch wind farm parameterization are affected, and their conclusions may need to be revisited.

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