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A Monthly-Step Water Balance Model to Evaluate the Hydrological Effects of Climate Change on a Regional Scale for Irrigation Design

机译:月度水量平衡模型,用于评估灌溉设计区域规模上的气候变化水文影响

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Current and ongoing changes in the climate are typified by a rise in global temperatures. Climate change can have a dramatic impact on the water cycle. The aim of this paper was to develop a model based on Thornthwaite-type monthly water balance estimations. The main goals were to calibrate the model parameters using a remote sensing-based evapotranspiration dataset. The calibrated model was used for projection on the basis of four climate model datasets (remo, dmihirham5, smhirca.bcm, knmiracmo2). The four main projection periods were 1980-2010, 2010-2040, 2040-2070, and 2070-2100. The advantage of this model is its robust structure. It can be applied if temperature and precipitation time series are available. The key parameter is the water storage capacity of the soil (SOILMAX), which can be calibrated using the actual evapotranspiration data available. If the physical properties of the soil are known, the maximal rooting depth is also projectable. The model can be primarily used at the catchment level or for areas without additional amounts of water from below. For testing the model, a mixed parcel of land that is used as a cornfield near Mosonmagyaróvár and a small, forest-covered catchment near Sopron were successfully used as the datasets. Furthermore, we determined the water stress with the calculation of the relative extractable water (REW), soil water deficit (SWD), and the water stress index (IS).
机译:气候的当前和持续变化以全球温度升高为代表。气候变化可能对水循环产生巨大影响。本文的目的是建立一个基于索恩斯韦特式月水平衡估算的模型。主要目标是使用基于遥感的蒸散数据集校准模型参数。在四个气候模型数据集(remo,dmihirham5,smhirca.bcm,knmiracmo2)的基础上,使用校准后的模型进行投影。四个主要的预测期是1980-2010、2010-2040、2040-2070和2070-2100。该模型的优点是其坚固的结构。如果温度和降水时间序列可用,则可以应用。关键参数是土壤的储水量(SOILMAX),可以使用可用的实际蒸散数据进行校准。如果已知土壤的物理性质,则最大生根深度也是可预测的。该模型可主要用于集水区或没有下面额外水量的区域。为了测试模型,成功地使用了一块混合土地作为数据集,该土地用作Mosonmagyaróvár附近的玉米田,并覆盖了Sopron附近的一个小森林覆盖的集水区。此外,我们通过计算相对抽取水(REW),土壤水分亏缺(SWD)和水分胁迫指数(IS)来确定水分胁迫。

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