为救济和难民营情况设计紧急能源模块:乍得-苏丹边境难民营案例研究

S. Salehin, Huaicheng Zhang, Tomas Larriba Martinez, G. Papakokkinos, Govinda Upadhyay, E. Bowler, J.M.N. van Kasteren
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引用次数: 18

摘要

每年都有成千上万的人因为人为或自然灾害而流离失所,被迫住在难民营或救济营。这些人往往缺乏基本需求,如干净的水,照明,冷却等,很多时候这些营地存在超过7-8年。本文旨在构想一种应急能源模块(EEM),该模块提供满足基本需求的电能,可以以自给自足、自成一体和高度机动的方式作为应急响应部署,以长期支持难民或难民营和援助人员的能源需求。作为一个案例研究,对乍得-苏丹边界附近的一个难民营进行了调查。作为初步研究,确定了营地的电力需求。此外,根据关键的设计标准,研究和评估了当地可用的能源资源,并选择了满足需求的技术。多晶太阳能光伏板、微型风力涡轮机、沼气聚乙烯沼气池和柴油发电机被选为利用选定能源的技术。采用HOMER软件对能源系统进行优化和技术经济分析。然后,从操作的角度分析所选的解决方案。
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Designing of an Emergency Energy Module for relief and refugee camp situations: Case study for a refugee camp in Chad-Sudan border
Each year thousands of people get displaced and are forced to live in refugee camps or relief camps because of man-made or natural disasters. These people often lack basic needs such as clean water, lighting, cooling, etc. and many times these camps exist for more than 7–8 years. This paper aims at conceptualizing an Emergency Energy Module (EEM) which provides electrical energy to satisfy the basic needs and that can be deployed as an emergency response in a self-sufficient, self-contained, and highly mobile fashion, to support the energy demand of a refugee or a relief camp and the aid workers for long term. As a case study, a refugee camp near Chad-Sudan border has been investigated. As a preliminary study, electrical demand was determined for the camp. Further, locally available energy resources were studied and assessed based on key design criteria and the technologies were selected to meet the demand. Polycrystalline Solar PV panels, micro wind turbine and biogas polyethylene digester and diesel generator were chosen as the technology to harness selected energy resources. HOMER Software has been used for optimization and techno-economic analysis of the energy system. The selected solution has been, then, analyzed from an operational point of view.
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