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首页> 外文期刊>Journal of Hydrology >Optimization model for the allocation of water resources based on the maximization of employment in the agriculture and industry sectors
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Optimization model for the allocation of water resources based on the maximization of employment in the agriculture and industry sectors

机译:基于农业和工业部门就业最大化的水资源分配优化模型

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摘要

In many discussions, work force is mentioned as the most important factor of production. Principally, work force is a factor which can compensate for the physical and material limitations and shortcomings of other factors to a large extent which can help increase the production level. On the other hand, employment is considered as an effective factor in social issues. The goal of the present research is the allocation of water resources so as to maximize the number of jobs created in the industry and agriculture sectors. An objective that has attracted the attention of policy makers involved in water supply and distribution is the maximization of the interests of beneficiaries and consumers in case of certain policies adopted. The present model applies the particle swarm optimization (PSO) algorithm in order to determine the optimum amount of water allocated to each water-demanding sector, area under cultivation, agricultural production, employment in the agriculture sector, industrial production and employment in the industry sector. Based on the results obtained from this research, by optimally allocating water resources in the central desert region of Iran, 1096 jobs can be created in the industry and agriculture sectors, which constitutes an improvement of about 13% relative to the previous situation (non optimal water utilization). It is also worth mentioning that by optimizing the employment factor as a social parameter, the other areas such as the economic sector are influenced as well. For example, in this investigation, the resulting economic benefits (incomes) have improved from 73 billion Rials at baseline employment figures to 112 billion Rials in the case of optimized employment condition. Therefore, it is necessary to change the inter-sector and intra-sector water allocation models in this region, because this change not only leads to more jobs in this area, but also causes an improvement in the region's economic conditions. (C) 2015 Elsevier B.V. All rights reserved.
机译:在许多讨论中,劳动力是最重要的生产要素。原则上,劳动力是可以在很大程度上弥补物理和材料限制以及其他因素的缺点的因素,这可以有助于提高生产水平。另一方面,就业被认为是社会问题的有效因素。本研究的目的是分配水资源,以使工业和农业部门创造的就业机会最大化。引起供水和分配决策者注意的目标是,在采取某些政策的情况下,最大限度地提高受益人和消费者的利益。本模型应用粒子群优化(PSO)算法来确定分配给每个需水部门,耕种面积,农业生产,农业部门就业,工业生产和工业部门就业的最优水量。根据这项研究获得的结果,通过在伊朗中部沙漠地区最佳地分配水资源,可以在工业和农​​业部门创造1096个工作岗位,相对于以前的情况,这大约增加了13%(非最优)用水)。还值得一提的是,通过优化就业因素作为一种社会参数,其他领域,例如经济部门也受到了影响。例如,在这项调查中,由此产生的经济效益(收入)从基准就业人数的730亿里亚尔提高到优化就业条件下的1,120亿里亚尔。因此,有必要改变该地区的部门间和部门内水分配模型,因为这种变化不仅会导致该地区更多的工作机会,而且还会改善该地区的经济状况。 (C)2015 Elsevier B.V.保留所有权利。

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