论文

青海省地表净辐射通量的遥感估算方法及时空特征分析

  • 余晓雨 ,
  • 贾绍凤 ,
  • 朱文彬
展开
  • 1. 中国科学院地理科学与资源研究所/陆地水循环及地表过程院重点实验室,北京 100101
    2. 中国科学院大学,北京 100049

余晓雨(1997 -), 女, 河南商丘人, 硕士研究生, 主要从事遥感水文研究. E-mail:

收稿日期: 2021-01-12

  修回日期: 2021-04-28

  网络出版日期: 2022-09-08

基金资助

青海省重大科技专项(2019-SF-A4); 青海省基础研究计划项目(2020-ZJ-715); 国家自然科学基金项目(42071032); 青海三江源生态保护和建设二期工程科研和推广项目(2018-S-3); 中国科学院青年创新促进会资助项目(2020056)

Estimation of Land Surface Net Radiation Flux based on Remote Sensing and Analysis of its Spatial-temporal Characteristics in Qinghai Province

  • Xiaoyu YU ,
  • Shaofeng JIA ,
  • Wenbin ZHU
Expand
  • 1. Key Laboratory of Water Cycle and Related Land Surface Processes,Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences,Beijing 100101,China
    2. University of Chinese Academy of Sciences,Beijing 100049,China

Received date: 2021-01-12

  Revised date: 2021-04-28

  Online published: 2022-09-08

本文引用格式

余晓雨 , 贾绍凤 , 朱文彬 . 青海省地表净辐射通量的遥感估算方法及时空特征分析[J]. 高原气象, 2022 , 41(4) : 921 -933 . DOI: 10.7522/j.issn.1000-0534.2021.00033

参考文献

null
Allen R G Pereira L S Raes D, et al, 1998.Crop evapotranspiration[M].FAO Irrigation and drainage paper 56, Rome.
null
Bisht G Bras R L2010.Estimation of net radiation from the MODIS data under all sky conditions: Southern Great Plains case study[J].Remote Sensing of Environment114(7): 1522-1534.
null
Bisht G Venturini V Islam S, et al, 2005.Estimation of the net radiation using MODIS (moderate resolution imaging spectroradiometer) data for clear sky days[J].Remote Sensing of Environment97(1), 52-67.
null
Diak G Mecikalski J Anderson M, et al, 2004.Estimating land surface energy budgets from space: Review and current efforts at the University of Wisconsin-Madison and USDA-ARS[J].Bulletin of the American Meteorological Society85(1), 65-78.
null
Forman B A Margulis S A2007.Estimates of total downwelling surface radiation using a high-resolution GOES-based cloud product along with MODIS and AIRS products[J].American Geophysical Union88(52), Abstract H31A–0134.
null
Jiang B Liang S L Ma H, et al, 2016.GLASS daytime all-wave net radiation product: algorithm development and preliminary validation[J].Remote Sensing 8(3): 222.
null
Jiang L Islam S2001.Estimation of surface evaporation map over southern Great Plains using remote sensing data[J].Water Resources Research37(2): 329-340.
null
Liang S L2003.Quantitative remote sensing of land surface[M].New Jersey: Wiley Interscience.
null
Liu B Jordan R C1960.The Interrelationship and characteristic distribution of direct, diffuse and total solar radiation[J].Solar Energy4(3): 1-19.
null
Lucht W Schaaf C B Strahler A H2000.An algorithm for the retrieval of albedo from space using semiempirical BRDF models[J].IEEE Transactions on Geoscience and Remote Sensing38(2), 977-998.
null
Prata A J1996.A new long-wave formula for estimating downward clear sky radiation at the surface[J].Quarterly Journal of the Royal Meteorological Society122(533): 1127-1151.
null
Rogers R R Yau M K1989.A short course in cloud physics[M].Third Edition: Butterworth Heinemann.
null
Senay G B2018.Satellite Psychrometric Formulation of the Operational Simplified Surface Energy Balance (SSEBop) Model for Quantifying and Mapping Evapotranspiration[J].Applied Engineering in Agriculture34 (3): 555-566.
null
Tang B H Li Z L2008.Estimation of instantaneous net surface longwave radiation from MODIS cloud-free data[J].Remote Sensing of Environment112(9): 3482-3492.
null
Venturini V Islam S Rodriguez L2008.Estimation of evaporative fraction and evapotranspiration from MODIS products using a complementary based model[J].Remote Sensing of Environment112(1): 132-141.
null
Wang K C Liang S L2008.An improved method for estimating global evapotranspiration based on satellite determination of surface net radiation, vegetation index, temperature, and soil moisture[C]// IEEE International Geoscience & Remote Sensing Symposium.IEEE, 712-727.
null
Wang T X Shi J C Yu Y C, et al, 2018.Cloudy-sky land surface longwave downward radiation (LWDR) estimation by integrating MODIS and AIRS/AMSU measurements[J].Remote Sensing Environment, 205: 100-111.
null
Wang W H Liang S L2009.Estimation of high-spatial resolution clear sky longwave downward and net radiation over land surfaces from MODIS data[J].Remote Sensing of Environment, 113: 745-754.
null
Zhu W B Lv A F Jia S F, et al, 2017.Retrievals of all-weather daytime air temperature from MODIS products[J].Remote Sensing of Environment, 189: 152-163.
null
Zillman J W1972.A study of some aspects of the radiation and heat budgets of the southern hemisphere oceans[D].Canberra, Australia: University of Melbourne.
null
陈征, 胡德勇, 蒋卫国, 等, 2016.基于GLASS数据估算中国陆表净辐射及其空间分布分析[J].地理研究35(1): 25-36.
null
崔耀平, 刘纪远, 胡云峰, 等, 2012.城市不同下垫面辐射平衡的模拟分析[J].科学通报57(6): 465-473.
null
代子俊, 赵霞, 李冠稳, 等, 2018.2000 -2015年青海省植被覆盖的时空变化特征[J].西北农林科技大学学报(自然科学版)46(7): 54-65.
null
高扬子, 何洪林, 张黎, 等, 2013.近50年中国地表净辐射的时空变化特征分析[J].地球信息科学学报15(1): 1-10.
null
胡列群, 李帅, 郑焙文, 2015.新疆区域大气透明度影响因子分析[J].干旱区研究32(2): 297-303.
null
胡媛媛, 仲雷, 马耀明, 等, 2018.青藏高原典型下垫面地表能量通量的模型估算与验证[J].高原气象37(6): 1499-1510.DOI: 10.7522/j.issn.1000-0534.2018.00045 .
null
蒋兴文, 李跃清, 2010.青藏高原地表辐射的气候特征[J].资源科学32(10): 1932-1942.
null
李黎, 吕世华, 范广洲, 2019.夏季青藏高原地表能量变化对高原低涡生成的影响分析[J].高原气象38(6): 1172-1180.DOI: 10.7522/j.issn.1000-0534.2018.00154 .
null
刘雪梅, 高小红, 马元仓, 2017.2002 -2015年青海省不同气候区植被覆盖时空变化[J].干旱区研究34(6): 1345-1352.
null
刘允芬, 李家永, 2000.亚热带红壤丘陵区水稻田净全辐射初探[J].生态农业研究8(1): 5-9.
null
马昊翔, 陈长成, 宋英强, 等, 2018.青海省近10年草地植被覆盖动态变化及其驱动因素分析[J].水土保持研究25(6): 137-145.
null
马千惠, 齐木荣, 杨清华, 等, 2020.鄂陵湖周边草地生长期地表能量平衡观测分析[J].高原气象39(6): 1207-1218.DOI: 10. 7522/j.issn.1000-0534.2019.00132 .
null
任雪塬, 张强, 岳平, 等, 2021.中国北方四类典型下垫面能量分配特征及其环境影响因子研究[J].高原气象40(1): 109-122.DOI: 10.7522/j.issn.1000-0534.2020.00008 .
null
童成立, 张文菊, 汤阳, 等, 2005.逐日太阳辐射的模拟计算[J].中国农业气象26(3): 165-169.
null
王可丽, 1996.青藏高原地区云对地表净辐射的影响[J].高原气象15(3): 269-275.
null
王丽娟, 郭铌, 左洪超, 等, 2015.基于MODIS产品估算黄土高原半干旱区的净辐射通量[J].高原气象34(5): 1270-1278.DOI: 10.7522/j.issn.1000-0534.2014.00096 .
null
王灵芝, 李茂善, 吕钊, 等, 2021.藏东南峡谷地区不同下垫面地表通量变化特征及其与降水的关系[J].高原气象40(1): 1-13.DOI: 10.7522/j.issn.1000-0534.2020.00107 .
null
王婷, 李照国, 吕世华, 等, 2019.青藏高原积雪对陆面过程热量输送的影响研究[J].高原气象38(5): 920-934.DOI: 10.7522/j.issn.1000-0534.2019.00026 .
null
位晶, 段克勤, 辛蕊, 2020.青藏高原地区云出现概率及其辐射强迫变化特征[J].冰川冻土42(2): 368-377.
null
翁笃鸣, 高歌, 2001.利用卫星资料试作青藏高原地表净辐射场的气候反演[J].气象科学21(2): 162-168.DOI: 10.3969/j.issn. 1009-0827.2001.02.005 .
null
叶笃正, 高由喜, 1979.青藏高原气象学[M].北京: 科学出版社.
null
叶晶, 刘辉志, 李万彪, 等, 2010.利用MODIS数据直接估算晴空区干旱与半干旱地表净辐射通量[J].北京大学学报(自然科学版)46(6): 942-950.
null
应王敏, 刘晓洁, 房世峰, 等, 2020.基于机器学习的日尺度短波净辐射气候资源遥感反演研究[J].资源科学42(10): 1998-2009.
null
张海宏, 姜海梅, 陈奇, 等, 2020.积雪覆盖对高寒草甸土壤温湿及地表能量收支的影响[J].高原气象39(4): 740-749.DOI: 10.7522/j.issn.1000-0534.2019.00072 .
null
赵丽芳, 沈占锋, 李春明, 等, 2019.地表净辐射通量观测、 模拟和同化的研究进展[J].遥感学报23(1): 24-36.
文章导航

/