首页> 外文会议>第21届国际摄影测量与遥感大会(ISPRS 2008)论文集 >THE SIMULATION STUDY ON LAND SURFACE ENERGY BUDGET OVER CHINA AREA BASED ON LIS-NOAH LAND SURFACE MODEL
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THE SIMULATION STUDY ON LAND SURFACE ENERGY BUDGET OVER CHINA AREA BASED ON LIS-NOAH LAND SURFACE MODEL

机译:基于Lis-Noah土地表面模型的中国区域土地能源预算模拟研究

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The availability of time series of water and land surface energy budgets over China area is essential for understanding the environmental system and potential climate change in this area. However, consistent observations of the land surface state variables are routinely unavailable. In the absence of long-term observations of the components of the water and land surface energy budgets, modeling can provide consistent fields of land surface fluxes and states. We simulated the components of surface energy balance (SEB) equation using Land Information System (LIS) for time period of 2002.11-2003.12. Residual analyses of SEB indicate that the distribution of residuals show some spatial and temporal characteristics. The temporal characteristics of residual distribution suggest that LIS can simulate energy flux better in spring and summer than in other time. The spatial characteristics indicate that LIS can simulate energy flux better in places with relative low latitude or low altitude than in places with either higher latitude or higher altitude. This kind of temporal and special distribution pattern probably related to the parameterization of snow albedo. The results of comparison between simulated and MODIS land surface temperature(LST) indicate that mostly difference between two LST are within ±5K. The scatter plots and standard deviation suggests that the simulated LST of night_view_time is 2-3K accurate than that of day_view_time.
机译:中国地区水和土地表面能量预算的时间序列可用性对于了解该地区的环境系统和潜在的气候变化至关重要。但是,通常无法获得对陆地表面状态变量的一致观察。在没有长期观察到水和土地表面能量收支预算的情况下,建模可以提供一致的土地表面通量和状态场。我们使用土地信息系统(LIS)模拟了2002.11-2003.12期间的表面能平衡(SEB)方程的组成部分。 SEB的残差分析表明残差的分布表现出一些时空特征。剩余分布的时间特征表明,LIS在春季和夏季比在其他时间能更好地模拟能量通量。空间特征表明,LIS在纬度或海拔较低的地方比在纬度或海拔较高的地方能更好地模拟能量通量。这种时间和特殊的分布模式可能与雪反照率的参数化有关。模拟和MODIS陆面温度(LST)的比较结果表明,两个LST之间的大部分差异在±5K以内。散点图和标准偏差表明,night_view_time的模拟LST比day_view_time的模拟LST精确2-3K。

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