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Integrating emerging and existing renewable energy technologies into a community-scale microgrid in an energy-water nexus for resilience improvement

机译:将新兴和现有的可再生能源技术集成到一个能源 - 水Nexus中的社区规模的微电网中,以进行弹性改善

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Rapid urbanization around the world, especially in developing countries, has resulted in a dramatic increase in the need for energy and water resources. This global trend calls for a sustainable shift in energy supplies for urban areas that can deliver robust, economic, environmental, and social benefits. This paper presents a novel planning strategy, along with an integrated system design of microgrids (MGs), to help realize sustainable energy supply patterns in a decentralized manner for improving community resilience and environmental sustainability. The exploration started with the screening of emerging and existing renewable energy technologies that can be integrated and deployed in a community-scale MG. Seamless integration of energy and water technology hubs was examined to develop a sustainable system design of MG in an energy-water nexus within the community under study. Then, a multi-objective programming model was formulated for decision analysis by systematically considering the cost, greenhouse gas (GHG) emissions, and water consumption of the MG. In comparison with existing utility grids, the multi-objective decision analysis helps find a suite of tradeoffs among three economic and environmental indicators, i.e., cost, GHG emissions, and water consumption. Case studies show that the proposed system design of the MG for the urban community can cut more than 75.5% GHG and 75.6% water consumption, compared to the benchmark in a centralized utility system. Case studies also show that this planning strategy can harmonize environmental, economic, and social benefits, making the traditional wide-area synchronous grid greener, cheaper, and more reliable. It is indicative that the system design of MG in an energy water nexus will improve the reliability of energy supplies and strengthen community resilience, thereby increasing overall economic benefits in the long run.
机译:世界各地的快速城市化,特别是在发展中国家,导致能源和水资源需要急剧增加。这一全球趋势呼吁可持续转变能源供应,可以提供强大,经济,环境和社会效益。本文提出了一种新颖的规划战略,以及微电网(MGS)的集成系统设计,以帮助实现可持续的能源供应模式,以改善社区恢复力和环境可持续性。勘探开始筛选出现和现有的可再生能源技术,可以集成和部署在社区规模的MG中。检查了能源和水技术中心的无缝集成,在研究中开发了在研究中的社区中的能量水Nexus中的可持续系统设计。然后,通过系统地考虑成本,温室气体(GHG)排放和MG的耗水量来配制多目标编程模型。与现有的实用电网相比,多目标决策分析有助于在三个经济和环境指标中找到一套权衡,即成本,温室气体排放和耗水量。案例研究表明,与城市社区的MG的建议系统设计与集中式公用事业系统中的基准相比,城市社区的MG的系统设计可以减少超过75.5%的温室气体和75.6%。案例研究还表明,该规划战略可以协调环境,经济和社会效益,使传统的广域同步栅格更环保,更便宜,更可靠。它表明,在能量水中的Mg系统设计将提高能源供应的可靠性和加强群落的抵御能力,从而延长延长的整体经济效益。

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