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首页> 外文期刊>Journal of Cleaner Production >Energy-water nexus planning of regional electric power system within an inexact optimization model in Tangshan City, China
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Energy-water nexus planning of regional electric power system within an inexact optimization model in Tangshan City, China

机译:中国唐山市不准确优化模型中区域电力系统的能量水线规划

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摘要

Under the increasingly serious energy and water resources crisis, the correlation between two resources has become more and more close. Promoting the sustainable development of energy and water resources has been an inevitable choice for regional energy system planning. In this study, a hybrid interval two-stage fuzzy credibility constrained programming (ITFCP) model is developed for supporting energy-water nexus system management. ITFCP can explicitly address system uncertainties presented as probability distributions, fuzzy sets, and intervals, as well as dual dynamics through the concept of solutions with interval membership function. The method could provide effective linkages between predefined policies and economic penalties as well as system economy and risk. Then, ITFCP is applied to electric power system management under considering energy-water nexus in Tangshan City, which is a typical resource-based, high pollution, and water-deficient region in China. Multiple scenarios of different credibility levels about water availability are designed. Results disclosed that coal-fired power and imported electricity would play primary role in meeting tremendous electricity demand under the current situation. Results also revealed that the total water consumption control would be an effective way to accelerate electric power structural adjustment, protect energy and water resources as well as improve atmospheric environment. These findings are valuable for decision makers to gain in-depth analysis for more reasonable and applicable development patterns within a complex energy-water system. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在越来越严重的能源和水资源危机,两个资源之间的相关性越来越接近。促进能源和水资源的可持续发展是区域能源系统规划的必然选择。在该研究中,开发了一种混合间隔两级模糊可信受限(ITFCP)模型用于支持能量 - 水Nexus系统管理。 ITFCP可以明确地解决呈现为概率分布,模糊集和间隔的系统不确定性,以及通过具有间隔隶属函数的解决方案的概念和双动力学。该方法可以提供预定义政策和经济处罚以及系统经济和风险之间的有效联系。然后,ITFCP应用于考虑唐山市的能量水Nexus的电力系统管理,这是中国的典型资源,高污染和缺水区。设计了关于水可用性的不同可信度水平的多种情况。结果披露,燃煤电力和进口电力将在当前情况下满足巨大电力需求方面发挥着主要作用。结果还显示,总水消耗控制将是加速电力结构调整,保护能源和水资源以及改善大气环境的有效方法。这些调查结果对于决策者来说是有价值的,以便在复杂的能量水系统中深入了解更合理和适用的开发模式。 (c)2020 elestvier有限公司保留所有权利。

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