Characteristics of Land Surface Parameters of the Underlying Surface of Gobi Photovoltaic Power Station

  • Yanyan ZHAO ,
  • Jiang YING ,
  • Zhenchao LI ,
  • Xiaoqing GAO ,
  • Jiaxi YANG ,
  • Yong LUO
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  • 1. Key Laboratory of Land Surface Process and Climate Change in Cold and Arid Regions,Northwest Institute of Eco-Environment and Resources,Chinese Academy of Sciences,Lanzhou 730000,Gansu,China
    2. University of Chinese Academy of Sciences,Beijing 100049,China
    3. Institute of Urban Meteorology,CMA,Beijing 100089,China
    4. Department of Earth System Science,Tsinghua University,Beijing 100084,China

Received date: 2021-12-21

  Revised date: 2022-04-20

  Online published: 2022-09-08

Cite this article

Yanyan ZHAO , Jiang YING , Zhenchao LI , Xiaoqing GAO , Jiaxi YANG , Yong LUO . Characteristics of Land Surface Parameters of the Underlying Surface of Gobi Photovoltaic Power Station[J]. Plateau Meteorology, 2022 , 41(4) : 988 -995 . DOI: 10.7522/j.issn.1000-0534.2022.00043

References

null
Aman M M Solangi K H Hossain M S, et al, 2015.A review of Safety, Health and Environmental (SHE) issues of solar energy system[J].Renewable & Sustainable Energy Reviews, 41: 1190-1204.
null
Dickinson R E1995.Land processes in climate models[J].Remote Sensing of Environment51(1): 27-38.
null
Garratt J R1994.The atmospheric boundary layer[M].Cambridge: Cambridge University Press.
null
Hu A Levis S Meehl G, et al, 2016.Impact of solar panels on global climate[J].Nature Climate Change, 6: 290-294.
null
Ian S Amanda H L1992.The influence of pre‐existing soil moisture content on Australian winter climate[J].International Journal of Climatology12(1): 33-54.
null
Julia W Rowntree P R1977.The effect of soil moisture on circulation and rainfall in a tropical model[J].Quarterly Journal of the Royal Meteorological Society, 103: 435.
null
Kustas W P Brutsaert W1986.Wind profile constants in a neutral atmospheric boundary layer over complex terrain[J].Boundary‐Layer Meteorology34(1/2): 35-54.
null
Masson V Bonhomme M Salagnac J, et al, 2014.Solar panels reduce both global warming and urban heat island[J].Frontiers in Environmental Science, 2: 14.
null
Millstein D Menon S2011.Regional climate consequences of large‐scale cool roof and photovoltaic array deployment[J].Environmental Research Letters6(3): 034001.
null
Owusu P A Asumadu‐Sarkodie S Dubey S2016.A review of renewable energy sources, sustainability issues and climate change mitigation[J].Cogent Engineering3(1): 1167990.
null
Scherba A Sailor D J Rosenstiel T N, et al, 2011.Modeling impacts of roof reflectivity, integrated photovoltaic panels and green roof systems on sensible heat flux into the urban environment[J].Building & Environment46(12): 2542-2551.
null
Simmonds I Lynch A H1992.The influence of pre‐existing soil moisture content on Australian winter climate[J].International Journal of Climatology12(1): 33-54.
null
Tian W Wang Y Xie Y, et al, 2007.Effect of building integrated photovoltaics on microclimate of urban canopy layer[J].Building & Environment42(5): 1891-1901.
null
Walker J Rowntree P R1977.The effect of soil moisture on circulation and rainfall in a tropical model[J].Quarterly Journal of the Royal Meteorological Society, 103: 435.
null
Zhang Q Huang R H Tian H2003.A parameterization scheme of surface turbulent momentum and sensible heat over the gobi underlying surface[J].Advances in Atmospheric Sciences20(1): 111-118.
null
Zhang Q Huang R H2004.Parameters of land‐surfaceprocesses for Gobi in north-west China[J].Boundary-layer Meteorology, 110: 471-478.
null
奥银焕, 吕世华, 韩博, 等, 2013.巴丹吉林沙漠夏季近地层微气象特征分析[J].高原气象32 (6): 1682-1691.DOI: 10.7522/j.issn.1000-0534.2012.00158 .
null
陈家宜, 王介民, 光田宁, 1993.一种确定地表粗糙度的独立方法[J].大气科学17(1): 21-26.
null
杜宜臻, 李韧, 吴通华, 等, 2015.土壤热导率的研究现状及其进展[J].冰川冻土37(4): 1067-1074.
null
何玉斐, 张宏升, 刘明星, 等, 2009.戈壁下垫面空气动力学参数确定的再研究[J].北京大学学报: 自然科学版, 3: 439-443.
null
胡隐樵, 奇跃进, 杨选利, 1990.河西戈壁(化音)小气候和热量平衡特征的初步分析[J].高原气象29(2): 113-119.
null
李培都, 高晓清, 2021.光伏电站对生态环境气候的影响综述[J].高原气象40(3): 702-710.DOI: 10.7522/j.issn.1000-0534. 2020.00020 .
null
李韧, 赵林, 丁永建, 等, 2010.青藏高原北部活动层土壤热力特性的研究[J].地球物理学报53(5): 1060-1072.
null
李振朝, 杨佳希, 郑志远, 等, 2016.两种气候区土壤热状况对比研究[C]//第33届中国气象学会年会S4干旱气象灾害监测预测及其影响与对策, 168.
null
苏有琦, 张宇, 宋敏红, 等, 2020.基于实测土壤属性CLM 4.5对青藏高原高寒草甸模拟性能的评估[J].高原气象39(6): 1295-1308.DOI: 10.7522/j.issn.1000-0534.2019.000136 .
null
孙俊, 胡泽勇, 陈学龙, 等, 2012.黑河中上游不同下垫面动量总体输送系数和地表粗糙度对比分析[J].高原气象31(4): 920-926.
null
孙明霞, 2016.五家渠市空气质量的影响因素及预测研究[D].石河子: 石河子大学.
null
王慧, 胡泽勇, 谷良雷, 等, 2007.黑河下游鼎新戈壁近地层能量输送及微气象特征[J].高原气象26(5): 938-945.
null
王龙欢, 谢正辉, 贾炳浩, 等, 2021.陆面过程模式研究进展——以CAS‐LSM为例[J].高原气象40(6): 1347-1363.DOI: 10. 7522/j.issn.1000-0534.2021.zk016 .
null
王胜, 张强, 张鸿, 2008.稀疏植被地表反照率及土壤热传导率特征研究[J].中国沙漠28(15): 119-124.
null
张文煜, 白庆梅, 张秀珍, 等, 2008.渤海南岸空气动力学粗糙度和动量通量特征[J].兰州大学学报(自科版)44(4): 62-65.
null
赵晓松, 关德新, 吴家兵, 等, 2004.长白山阔叶红松林的零平面位移和粗糙度[J].生态学杂志23(5): 84-88.
null
赵延岩, 应江, 李振朝, 等, 2022.戈壁光伏电站气象要素特征[J].高原气象41(4): 977-987.DOI: 10. 7522/j.issn.1000-0534. 2022.00073 .
null
郑新倩, 杨帆, 李超凡, 等, 2019.巴丹吉林沙漠北缘拐子湖流沙下垫面近地层湍流强度和陆面过程特征[J].中国沙漠39(4): 103-112.
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