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Methods for developing time‐series climate surfaces to drive topographically distributed energy‐ and water‐balance models

机译:开发时序气候面的方法,以驱动地形分布的能量和水平衡模型

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摘要

Topographically distributed energy- and water-balance models can accurately simulate both the development and melting of a seasonal snowcover in the mountain basins. To do this they require time-series climate surfaces of air temperature, humidity, wind speed, precipitation, and solar and thermal radiation. If data are available, these parameters can be adequately estimated at time steps of one to three hours. Unfortunately, climate monitoring in mountain basins is very limited, and the full range of elevations and exposures that affect climate conditions, snow deposition, and melt is seldom sampled. Detailed time-series climate surfaces have been successfully developed using limited data and relatively simple methods. We present a synopsis of the tools and methods used to combine limited data with simple corrections for the topographic controls to generate high temporal resolution time-series images of these climate parameters. Methods used include simulations, elevational gradients, and detrended kriging. The generated climate surfaces are evaluated at points and spatially to determine if they are reasonable approximations of actual conditions. Recommendations are made for the addition of critical parameters and measurement sites into routine monitoring systems in mountain basins. Copyright © 1999 John Wiley & Sons, Ltd.
机译:地形分布的能量和水平衡模型可以准确地模拟山区季节性积雪的形成和融化。为此,它们需要空气温度,湿度,风速,降水以及太阳辐射和热辐射的时间序列气候表面。如果有数据可用,则可以在一到三个小时的时间步长内充分估计这些参数。不幸的是,山区的气候监测非常有限,很少采样影响气候条件,积雪和融化的全部海拔和暴露情况。使用有限的数据和相对简单的方法已成功开发了详细的时序气候面。我们提供了用于将有限的数据与地形控制的简单校正相结合的工具和方法的提要,以生成这些气候参数的高分辨率时间序列图像。使用的方法包括模拟,海拔梯度和去趋势克里金法。在点和空间上评估生成的气候表面,以确定它们是否是实际条件的合理近似值。建议在山区常规监测系统中增加关键参数和测量点。版权所有©1999 John Wiley&Sons,Ltd.

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