@misc{b06157349d88455685d71ce3057b1e4d,
title = "Modeling Wind in Agrivoltaics and its Impact on Eddy Covariance Flux Measurements",
abstract = "Silicon Ranch is conducting a research study at their 138MW Bancroft Station agrivoltaics site, the largest agrivoltaics research array in the US, in which they are using an eddy covariance flux tower to measure the carbon budget. They are interested in finding out if the presence of the panels changes the effectiveness of these measurements. To investigate this topic, NLR performed numerical simulations of wind through the agrivoltaic array to identify under what environmental conditions (wind speed, wind direction, temperatures) and panel tilt angles the mean wind speeds at the measurement heights are significantly altered by the presence of the solar panels. NLR adapted and used the PVade simulation tool [1] to model wind in Silicon Ranch's agrivoltaic array and found that at the height of the flux tower (6m), the wind speed measured is not significantly altered by the presence of solar panels. The percent difference is less than 4\% and is generally greatest during daytime conditions at higher wind speeds and perpendicular wind direction. Closer to the ground, the flow is significantly altered (wind speeds are reduced) by the presence of solar panels and the percent difference increases in strong winds. The work confirmed that eddy covariance flux towers can be used within the context of a solar array field.",
keywords = "agrivoltaics, atmospheric boundary layer, computational fluid dynamics",
author = "Brooke Stanislawski and Ethan Young and \{de Vries\}, Nick",
year = "2026",
doi = "10.66816/po2677779",
language = "American English",
series = "Presented at the 2026 PVPMC Workshop, 12-14 May 2026 Albuquerque, New Mexico",
publisher = "National Laboratory of the Rockies (NLR)",
address = "United States",
type = "Other",
}