null | Agency I E, 2011.China wind energy development roadmap 2050[R].IEA Technology Roadmaps. |
null | Armstrong A, Burton R R, Lee S E, et al, 2016.Ground-level climate at a peatland wind farm in Scotland is affected by wind turbine operation[J]. Environmental Research Letters, 11(4): 044024(8pp).DOI: 10.1088/1748-9326/11/4/044024 . |
null | Armstrong A, Waldron S, Whitaker J, et al, 2014.Wind farm and solar park effects on plant-soil carbon cycling: uncertain impacts of changes in ground-level microclimate[J]. Global Change Biology, 20(6): 1699-1706.DOI: 10.1111/gcb.12437 . |
null | Chang R, Zhu R, Guo P, 2016.A case study of land-surface-temperature impact from large-scale deployment of wind farms in China from Guazhou[J]. Remote Sensing, 8(10): 790.DOI: 10.3390/rs8100790 . |
null | Estoque R C, Murayama Y, Myint S W, 2017.Effects of landscape composition and pattern on land surface temperature: an urban heat island study in the megacities of Southeast Asia[J]. Science of the Total Environment, 577(15): 349-359.DOI: 10.1016/j.scitotenv.2016.10.195 . |
null | Harris R, Zhou L M, Xia G, 2014.Satellite observations of wind farm impacts on nocturnal land surface temperature in Iowa[J]. Remote Sensing, 6(12): 12234-12246.DOI: 10.3390/ rs61212234 . |
null | Keith D W, Decarolis J F, Denkenberger D C, et al, 2004.The influence of large-scale wind power on global climate [J].Proceedings of the National Academy of Sciences of the United States of America, 101(46): 16115-16120. |
null | Knippertz P, Ulbrich U, Speth P J C R, 2000.Changing cyclones and surface wind speeds over the North Atlantic and Europe in a transient GHG experiment[J]. Climate Research, 15(2): 109-122.DOI: 10.3354/cr015109 . |
null | Lauren S, Zhou L M, Somnath R, et al, 2015.Observed thermal impacts of wind farms over northern Illinois[J]. Sensors, 15(7): 14981-15005.DOI: 10.3390/s150714981 . |
null | Lee J, Qiao L M, Zhao F, 2019.Global wind report 2018[R].Global Wind Energy Council (GWEC). |
null | Lewis P, Barnsley M J, 1994.Influence of the sky radiance distribution on various formulations of the earth surface albedo [C]// Proceedings of the 6th International Symposium on Physical Measurements and Signatures in Remote Sensing.France: ISPRS, 707-715. |
null | Roy S B, 2011.Simulating impacts of wind farms on local hydrometeorology[J]. Journal of Wind Engineering and Industrial Aerodynamics, 99(4): 491-498.DOI: 10.1016/j.jweia.2010.12.013 . |
null | Roy S B, Pacala S W, Walko R L, 2004.Can large wind farms affect local meteorology[J]. Journal of Geophysical Research, 109(D19): 101-107.DOI: 10.1029/2004JD004763 , 2004. |
null | Roy S B, Traiteur J J, 2010.Impacts of wind farms on surface air temperatures[J]. Proceedings of the National Academy of Sciences, 107(42): 17899-17904.DOI: 10.1073/pnas.1000493107 . |
null | Simmonds I, Keay K, 2002.Surface fluxes of momentum and mechanical energy over the North Pacific and North Atlantic Oceans[J]. Meteorology & Atmospheric Physics, 80(1-4), 1-18.DOI: 10.1007/s007030200009 . |
null | Slawsky L M, Zhou L M, Roy S B, et al, 2015.Observed thermal impacts of wind farms over northern Illinois[J]. Sensors, 15(7): 14981-15005.DOI: 10.3390/s150714981 . |
null | Walsh-Thomas J M, Cervone G, Agouris P, et al, 2012.Further evidence of impacts of large-scale wind farms on land surface temperature[J]. Renewable and Sustainable Energy Reviews, 16(8): 6432-6437.DOI: 10.1016/j.rser.2012.07.004 |
null | Wang Q, Luo K, Wu C L, et al, 2019.Impact of substantial wind farms on the local and regional atmospheric boundary layer: case study of Zhangbei wind power base in China[J]. Energy, 183(C): 1136-1149.DOI: 10.1016/j.energy.2019.07.026 . |
null | Xia G, Zhou L M, Freedman J M, et al, 2016.A case study of effects of atmospheric boundary layer turbulence, wind speed, and stability on wind farm induced temperature changes using observations from a field campaign[J]. Climate Dynamics, 46(7-8): 2179-2196.DOI: 10.1007/s00382-015-2696-9 . |
null | Yang J B, Liu Q Y, Li X, et al, 2017.Overview of wind power in China status and future[J]. Sustainability, 9(8): 1454-1466.DOI: 10.3390/su9081454 . |
null | Zhou L M, Tian Y H, Chen H S, et al, 2013.Effects of topography on assessing wind farm impacts using MODIS data[J]. Earth Interactions, 17(13): 1-18.DOI: 10.1175/2012EI000510.1 . |
null | Zhou L M, Tian Y H, Roy S B, et al, 2012a.Impacts of wind farms on land surface temperature[J]. Nature Climate Change, 2(7): 539-543.DOI: 10.1038/NCLIMATE1505 . |
null | Zhou L M, Tian Y H, Roy S B, et al, 2012b.Diurnal and seasonal variations of wind farm impacts on land surface temperature over western Texas[J]. Climate Dynamics, 41(2): 307-326.DOI: 10.1007/s00382-012-1485-y . |
null | |
null | |
null | |
null | 刘磊, 高晓清, 陈伯龙, 等, 2012.大规模风电场建成后对风能资源影响的研究[J].高原气象, 31(4), 1139-1144. |
null | |
null | 王立钊, 郑学昌, 孙林, 等, 2014.利用Landsat TM数据和地面观测数据验证GLASS反照率产品[J].遥感学报, 18(3): 547-558. |
null | 夏馨, 余晔, 董龙翔, 等, 2021.风电场建设前后近地面湍流强度变化特征[J/OL].高原气象. |
null | 徐荣会, 2014.干旱区风电场对局地微气象环境的影响研究[D].呼和浩特: 内蒙古农业大学. |
null | 徐建华, 2006.计量地理学[M].北京: 高等教育出版社, 117-121. |
null | 张雪婷, 李金鑫, 陈正洪, 等, 2019.我国大别山区风电场群对局地气候影响研究初探——以湖北大悟为例[J].气象科技进展.9(2): 56-61. |
null | |
null | 魏宝成.2019.北方农牧交错带土地覆被变化对地表温度的反馈作用研究[D].兰州: 兰州大学. |
null | |
null | |
null | 张晨炜, 何建军, 赖欣, 等, 2022.精细化下垫面对海南地区气象场模拟的影响[J/OL].高原气象. |
null | |