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Scenarios of Solar Energy Use on the a€?Roof of the Worlda€?: Potentials and Environmental Benefits

机译:“世界屋脊”上太阳能的使用情景:潜力和环境效益

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Peripheral mountain areas in developing countries are often characterized by energy poverty but also by high solar energy potential. The Eastern Pamirs of Tajikistan are a prime example of this situation, with their lack of energy infrastructure, remoteness, pressure on local natural resources, and high incident radiation amounts. An integrative assessment of the potential for photovoltaic power generation is lacking for this region, as well as for many other mountain environments. We assessed the natural potential, feasibility, and likely effects of increased photovoltaic electricity generation, using climate data, biomass data, a spatial radiation model, and fieldwork- and literature-based scenarios of energy requirements and financial conditions. Results indicated that using a photovoltaic power plant to generate enough energy for boiling water is feasible in the study area within reasonable cost limits. This could significantly alleviate energy poverty, increase carbon sequestration by up to 1500 t/y, and reduce the loss of dwarf shrub stands by up to 2000 ha/y. Our results illustrate that the integrative approach presented in this article can be applied straightforwardly when some climatic measurements and field observations are available and that photovoltaic energy is an important renewable-energy resource for the sustainable development of peripheral high-mountain communities.
机译:发展中国家的外围山区通常以能源贫困为特征,但太阳能潜力很高。塔吉克斯坦东部帕米尔高原就是这种情况的一个典型例子,它们缺乏能源基础设施,偏僻,对当地自然资源的压力以及高入射辐射量。该地区以及许多其他山区环境都缺乏对光伏发电潜力的综合评估。我们使用气候数据,生物量数据,空间辐射模型以及基于实地调查和文献的能源需求和财务状况情景,评估了光伏发电量增加的自然潜力,可行性和可能的​​影响。结果表明,在合理的成本范围内,使用光伏电站为沸水产生足够的能量是可行的。这可以显着减轻能源匮乏,将碳固存提高至1500吨/年,并减少高达2000公顷的矮灌木林的损失。我们的结果表明,当可获得一些气候测量结果和现场观察结果时,本文中介绍的综合方法可以直接应用,并且光伏能源是外围高山区社区可持续发展的重要可再生能源。

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