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Life cycle economic and environmental assessment for establishing the optimal implementation strategy of rooftop photovoltaic system in military facility

机译:建立军事设施屋顶光伏系统最佳实施策略的生命周期经济和环境评估

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The Ministry of National Defense (South Korea) promotes its Defense Green Growth policy to reduce greenhouse gas emissions. Based on this background, this study aimed to conduct the life cycle economic and environmental assessment for establishing the optimal implementation strategy for rooftop photovoltaic system in military facility. Considering three factors (i.e., the orientation of the gable roof, the installation area of the PV system, and the slope of the installed panel), 12 implementation scenarios of PV system were established. The detailed results by prototype are summarized in terms of the two perspectives (i.e., the absolute and relative investment values): (i) Prototype 1 (south-north): P1-S/N (opt.) in terms of the NPV25 (net present value at year 25) and P1-S (opt.) in terms of the SIR25 (savings-to-investment ratio at year 25); (ii) Prototype 2 (southeast-northwest): P2-SE/NW (opt.) in terms of the NPV25 and P2-SE (ext.) in terms of the SIR25; and (iii) Prototype 3 (east-west): P3-E/W (ext.) in terms of the NPV25 and P3-E (opt.) in terms of the SIR25. The results of this study can help decision-makers to determine the optimal strategy for implementing rooftop PV systems on the gable roof of military facilities through life cycle economic and environmental assessment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:国防部(韩国)推行其国防绿色增长政策,以减少温室气体排放。在此背景下,本研究旨在进行生命周期经济和环境评估,以建立军事设施屋顶光伏系统的最佳实施策略。考虑到三个因素(即山墙屋顶的方向,光伏系统的安装区域和安装面板的坡度),建立了12种光伏系统的实现方案。从两个角度(即绝对和相对投资价值)总结了原型的详细结果:(i)原型1(南北):P1-S / N(可选),NPV25(第25年的净现值)和按照SIR25(第25年的储蓄与投资比率)表示P1-S(优化); (ii)原型2(东南-西南):就NPV25而言为P2-SE / NW(可选),就SIR25而言为P2-SE(扩展); (iii)原型3(东西方):就NPV25而言为P3-E / W(扩展),而就SIR25而言为P3-E(优化)。这项研究的结果可以帮助决策者通过生命周期经济和环境评估,确定在军事设施的山墙屋顶上实施屋顶光伏系统的最佳策略。 (C)2015 Elsevier Ltd.保留所有权利。

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