Article Contents
LETTER   Open Access     Cite

Microclimatic impacts of wind farm: Reduced diurnal temperature range

More Information
  • Corresponding author: donghaiwu@scbg.ac.cn
  • 加载中
  • [1] Zhou L., Tian Y., Baidya Roy S., et al. (2012) Impacts of wind farms on land surface temperature. Nat. Clim. Chang. 2:539-543. DOI: 10.1038/nclimate1505

    View in Article Google Scholar

    [2] Tang W., Xu S., Zhou X., et al. (2023) Meeting China’s electricity demand with renewable energy over Tibetan Plateau. Sci. Bull. 68:39-42. DOI:10.1016/j.scib.2022.12.012

    View in Article Google Scholar

    [3] Chen H., Ju P., Zhu Q., et al. (2022) Carbon and nitrogen cycling on the Qinghai–Tibetan Plateau. Nat. Rev. Earth. Environ. 3:701-716. DOI:10.1038/s43017-022-00344-2

    View in Article Google Scholar

    [4] Wu D., Liu D., Wang T., et al. (2021) Carbon turnover times shape topsoil carbon difference between Tibetan Plateau and Arctic tundra. Sci. Bull. 66:1698-1704. DOI:10.1016/j.scib.2021.04.019

    View in Article Google Scholar

    [5] Liu N., Zhao X., Zhang X., et al. (2023) Remotely sensed evidence of the divergent climate impacts of wind farms on croplands and grasslands. Sci. Total. Environ. 905:167203. DOI:10.1016/j.scitotenv.2023.167203

    View in Article Google Scholar

    [6] Wu S. and Archer CL. (2021) Near-ground effects of wind turbines: Observations and physical mechanisms. Mon. Weather. Rev. 149:879-898. DOI:10.1175/MWR-D-20-0186.1

    View in Article Google Scholar

    [7] Baidya Roy S. and Traiteur J. (2010) Impacts of wind farms on surface air temperatures. Proc. Natl. Acad. Sci. USA 107:17899-17904. DOI:10.1073/pnas.1000493107

    View in Article Google Scholar

    [8] Xia G., Zhou L., Minder JR., et al. (2019) Simulating impacts of real-world wind farms on land surface temperature using the WRF model: Physical mechanisms. Clim. Dynam. 53:1723-1739. DOI:10.1007/s00382-019-04725-0

    View in Article Google Scholar

    [9] Li Y., Kalnay E., Motesharrei S., et al. (2018) Climate model shows large-scale wind and solar farms in the Sahara increase rain and vegetation. Science 361:1019-1022. DOI:10.1126/science.aar5629

    View in Article Google Scholar

    [10] Miller L. and Keith D. (2018) Climatic impacts of wind power. Joule 2:2618-2632. DOI:10.1016/j.joule.2018.09.009

    View in Article Google Scholar

  • Cite this article:

    Liu N., Zhou Y., Peng H., et al. (2026). Microclimatic impacts of wind farm: Reduced diurnal temperature range. The Innovation Geoscience 4:100211. https://doi.org/10.59717/j.xinn-geo.2026.100211
    Liu N., Zhou Y., Peng H., et al. (2026). Microclimatic impacts of wind farm: Reduced diurnal temperature range. The Innovation Geoscience 4:100211. https://doi.org/10.59717/j.xinn-geo.2026.100211

Welcome!

To request copyright permission to republish or share portions of our works, please visit Copyright Clearance Center's (CCC) Marketplace website at marketplace.copyright.com.

Figures(1)    

Share

  • Share the QR code with wechat scanning code to friends and circle of friends.

Article Metrics

Article views(1179) PDF downloads(1155)

Relative Articles

Cited by

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint