Journal of Arid Meteorology ›› 2012, Vol. 30 ›› Issue (1): 8-14.

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Simulation of the Total Solar Radiation Distribution#br# over Rugged Terrains in Ningxia

WANG Cong1,LI Mengjie1,SHAN Xinlan2,ZHANG Zhi2   

  1.  1. School of Remote Sensing,Nanjing University of Information Science and Technology,
    Nanjing 210044,China; 2. Ningxia Meteorological Information Center,Yinchuan 750002,ChinaAbstract
  • Revised:2012-02-27 Online:2012-02-29 Published:2012-03-30

宁夏起伏地形下太阳总辐射分布式模拟

王璁1李梦洁1单新兰2张智2#br#   

  1. 南京信息工程大学遥感学院,江苏南京210044; 2. 宁夏气象信息中心,宁夏银川750002
  • 作者简介: 王璁( 1985 - ) 女,南京信息工程大学,硕士研究生,主要从事GIS 在气象中的应用.
  • 基金资助:

    国家自然科学基金项目“复杂地形下月平均气温分布式模型研究”( 41175077) ,黔科合重大专项“贵州‘两高’沿线特色农业气候精细化区划与气象灾害防控”( [2011]6003 号) 及江苏省普通高校研究生科研创新计划项目“基于GIS 的太阳能资源评估系统”( CX10B_300Z) 共同资助

Abstract:

The remote sensing data were introduced into the distributed model and at the same time,the influence of the slope,direction of the slope and effect of terrain covering each other on total solar radiation in Ningxia were considered synthetically,and based on digital elevation model (DEM) data,and the astronomical radiation over rugged terrain in Ningxia as the primary data,the total radiation distributed simulation was carried on in this paper. According to the fitting results of several models to different component of solar radiation using the data from 1960 to 2000 in Ningxia,the regional optimization model was finally choosed to calculate the direct radiation, scattering radiation,reflection radiation and total radiation with the resolution of 100 m × 100 m combining with the remote sensing data integration of 2001 sunshine percentage data in Ningxia,and its temporal and spatial distributions were analyzed. The results show that the difference of surface configuration in Ningxia led to total radiation distribution in Ningxia was: summer > spring > autumn > winter,and the total radiation of sunny slope was obvious higher than that in nightside,and when the slope was steeper,the influence of slope direction on total radiation was more significant.

Key words: total radiation, rugged terrain, distributed model

摘要:

 在分布式模型中引入遥感数据的同时,综合考虑坡度、坡向和地形相互遮蔽作用对起伏地形下天文辐射的影响,从而基于数字高程模型( DEM) 数据,实现了宁夏以起伏地形下天文辐射为起始数据的太阳总辐射分布式模拟。利用1960 ~ 2000 年数据拟合总辐射各量不同模式的结果,最终选用区域分月模型,结合宁夏2001 年遥感数据集成日照百分率资料,计算100 m × 100 m 分辨率下太阳直接辐射、散射辐射、反射辐射和总辐射,并分析其时空分布特征。计算结果显示: 宁夏地区地表形态差异导致的总辐射分布状况整体变化规律为: 夏季> 春季> 秋季> 冬季; 从坡向上看,向阳山坡太阳总辐射量明显高于背阴坡; 从坡度上看,坡度越大太阳总辐射受坡向影响越显著。

关键词: 太阳总辐射, 起伏地形, 分布式模拟

CLC Number: