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Hydrological water balance modelling for assessing productivity and irrigation planning

机译:水文水平衡建模,用于评估生产率和灌溉计划

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The physically based distributed modelling system, MIKE SHE, is used to simulate the hydrological water balance of Belura watershed with the objective of developing the irrigation plan and assessing productivity. The existing cropping system was replaced with the cropping system planned using qualitative land evaluation i.e. land capability and suitability classification for soils of the watershed. The hydrological water balance was simulated using calibrated model for Belura watershed. The actual yield of the sorghum, cotton and pigeonpea from watershed area was estimated by Food and Agriculture Organisation (FAO) model, using simulated hydrological water balance. Yield of sorghum, cotton and pigeonpea is estimated to be 32, 48 and 55% of the potential yield at downstream side and 28, 41 and 46% at upstream side, respectively. Considering the water requirement to obtain potential yields, these crops suffered soil moisture deficit of 61, 68 and 151mm at upstream; and 57, 65 and 157mm at downstream sides of the watershed, respectively. If irrigation is provided as and when water content in the root zone goes below allowable limit at different crop growth stages using hydrological water balance, it is possible to obtain sustainable crop yields. The overall results illustrate the applicability of MIKE SHE comprehensive hydrological modelling system for the management of water resources for sustainable agricultural productivity in a watershed.
机译:物理基础的分布式建模系统,迈克辛,用于模拟Belura流域的水文水平,目的是开发灌溉计划并评估生产率。使用定性土地评估计划的裁剪系统取代了现有的种植系统,即分水岭土壤的土地能力和适用性分类。利用Belura流域的校准模型模拟水文水平。来自流域地区的高粱,棉花和鸽皮的实际产量由食品和农业组织(粮农组织)模型估计,采用模拟水文水平。高粱,棉花和鸽皮的产量估计为32,48和55%,分别在上游侧的下游侧和28,41和46%的潜在产量。考虑到潜在产量的水需求,这些作物在上游患有61,68和151mm的土壤湿度缺损;分别在流域下游侧面57,65和157mm。如果提供灌溉作为根部区域的水含量低于不同作物生长阶段的允许极限使用水文水平,则可以获得可持续的作物产量。总体结果说明了Mike She综合水文建模系统的适用性,为流域进行了可持续农业生产力的水资源管理。

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