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首页> 外文期刊>Ecological Modelling >MODELLING PLANT AND SOIL WATER DYNAMICS IN SEMI-ARID ECOSYSTEMS WITH LIMITED SITE DATA
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MODELLING PLANT AND SOIL WATER DYNAMICS IN SEMI-ARID ECOSYSTEMS WITH LIMITED SITE DATA

机译:利用有限站点数据模拟半干旱生态系统中的植物和土壤水动力学

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摘要

The processes and mechanisms involved in the soil moisture balance of semi-arid ecosystems are discussed. A model of water dynamics (WATDYN) is developed for estimating plant available soil moisture (PAM) on particular sites. Potentially the model could be applied anywhere in the savanna regions of the world, using a minimum of readily available site data and standard weather records. It calculates water distribution in the soil profile and models water uptake using a modified Penman-Monteith equation involving separate calculations of soil evaporation and transpirational loss from each soil layer. Default data are provided where site data are unavailable. Vegetation is modelled only to account for radiation interception and for resistances to transpiration and evaporation. Growth is calculated on the basis of transpiration efficiency (adjusted for temperature, vapour pressure deficit, soil fertility and the time of the year) and death as a function of temperature, vapour pressure deficit, water stress and the amount of green biomass. Dead biomass is reduced as a function of soil moisture, temperature and the amount of litter. Maximum leaf biomass of woody plants is considered to be constant from year to year. [References: 36]
机译:讨论了半干旱生态系统土壤水分平衡的过程和机理。开发了水动力学模型(WATDYN),用于估算特定地点的植物有效土壤水分(PAM)。使用最少的现成站点数据和标准天气记录,该模型可能会应用于世界稀树草原地区的任何地方。它计算土壤剖面中的水分分布,并使用改良的Penman-Monteith方程对水分吸收进行建模,该方程涉及分别计算每个土壤层的土壤蒸发和蒸腾作用损失。在站点数据不可用的地方提供默认数据。仅对植被建模以考虑辐射拦截以及对蒸腾和蒸发的抵抗。根据蒸腾效率(根据温度,蒸气压亏空,土壤肥力和一年中的时间进行调整)和死亡作为温度,蒸气压亏空,水分胁迫和绿色生物量的函数来计算生长量。死生物量随土壤水分,温度和垫料量的变化而减少。木本植物的最大叶片生物量每年被认为是恒定的。 [参考:36]

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