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A model to consider the spatial variability of rainfall partitioning within deciduous canopy. I. Model description

机译:考虑落叶冠层内降雨分配空间变异性的模型。一,型号说明

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摘要

In this first paper of two, a numerical simulation model capable of simulating the spatial variability of rainfall partitioning within a canopy is presented. The second paper details how the model is parameterized, and some testing of its capabilities.The first stage of the model is to derive the mature canopy structure. This is achieved through simplified individual tree structures and a random placement routine based on a modified Poisson distribution. Following this the spatial discretization for throughfall is attained as a series of layers of triangles with a tree trunk at every apex. The number of layers is derived from the leaf area index through a modified Poisson distribution. Seasonal variation in the deciduous canopy is simulated through a time vector routine. The rainfall partitioning section of the model is based upon the Rutter model which has been modified to each individual triangle layer. The main feature of this model is that it offers a method of simulating rainfall partitioning at a scale that is a function of the size of the elementary physical components (tree and leaf scale). This can be used to investigate soil moisture variations under a canopy, or to study the variations within the forest hydrological processes themselves. © 1997 John Wiley & Sons, Ltd.
机译:在这两篇论文的第一篇中,提出了一种能够模拟冠层内降雨分配的空间变异性的数值模拟模型。第二篇论文详细介绍了如何对模型进行参数化以及对其功能的一些测试。模型的第一阶段是得出成熟的树冠结构。这是通过简化的单个树结构和基于修改后的Poisson分布的随机放置例程来实现的。此后,通过一系列三角形的层(每个顶点处都有一个树干)实现了穿透的空间离散化。通过修改的泊松分布从叶面积指数中得出层数。通过时间矢量例程来模拟落叶冠层的季节性变化。该模型的降雨分区部分基于Rutter模型,该模型已修改为每个单独的三角形层。该模型的主要特点是它提供了一种模拟降雨分配的方法,该方法是基本物理成分(树木和树叶的尺度)大小的函数。这可用于调查冠层下的土壤水分变化,或研究森林水文过程本身的变化。 ©1997 John Wiley&Sons,Ltd.

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