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首页> 外文期刊>Computational Water, Energy, and Environmental Engineering >Investigation of the Relationship among Water and Crop Production under Bounded Irrigation Conditions
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Investigation of the Relationship among Water and Crop Production under Bounded Irrigation Conditions

机译:界限灌水条件下水与作物产量关系的调查

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摘要

Water scarcity is relative and variable concept that can occur at any level of supply and demand. It is also a social construct, which is linked to the intervention in the water cycle and changes over time as a result of natural hydrological change. It is more severe when water acts as a backbone in economic policies, planning and management methods. Water scarcity can be expected to increase with most forms of economic development, but, if properly identified, many of its causes can be expected and avoided or mitigated. However, the limited irrigation management is considered a very important issue in the agricultural scope. Therefore, in this study , the relationship between water, crop production, photosynthesis, crop transpiration, crop growth, crop yields and water use efficiency have been discussed under limited irrigation conditions. However, the crops have some ability to adapt and resist against limited irrigation. Hence, under high temperate conditions, this is a shortage of water and photosynthesis is decreased with a pore (stoma) restraining. At the same time , the evapotranspiration reaches to the utmost value and the water use efficiency rises because of optimal monitoring of leaf pore (stoma). Therefore, the modality which is the reduction of the risks and improving industrial control in incomplete irrigation are the chief constraints of providing irrigation water in the future, which leads to increased crop production and ultimately providing a provision of food security.
机译:水资源短缺是相对和可变的概念,可在任何供需水平处发生。它也是一个社会结构,它与水循环中的干预相关联,而是由于天然水文变化而随着时间的变化。当水作为经济政策,规划和管理方法中的骨干时,它更为严重。随着大多数形式的经济发展,可以预期水资源稀缺增加,但如果正确识别,可以预期和避免或减轻其许多原因。然而,有限的灌溉管理被认为是农业范围的一个非常重要的问题。因此,在有限的灌溉条件下讨论了在该研究中,在有限的灌溉条件下讨论了水,作物生产,光合作用,作物蒸腾,作物生长,作物产量和水利用效率之间的关系。然而,作物具有一些能够适应和抵抗有限灌溉。因此,在高水气条件下,这是水的短缺,光合作用用孔(造口)抑制而降低。同时,蒸散蒸腾达到最大的值,因为叶片孔隙(造口)的最佳监测,水使用效率升高。因此,在不完全灌溉中降低风险和改善工业控制的态势是在未来提供灌溉用水的主要限制,这导致作物生产增加,最终提供粮食安全。

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