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Optimal design of heating and cooling pipeline networks for residential distributed energy resource systems

机译:住宅分布能源系统加热和冷却管道网络的最佳设计

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This paper presents a mixed integer linear programming model for the optimal design of a distributed energy resource (DER) system that meets electricity, heating, cooling and domestic hot water demands of a neighbourhood. The objective is the optimal selection of the system components among different technologies, as well as the optimal design of the heat pipeline network to allow heat exchange between different nodes in the neighbourhood. More specifically, this work focuses on the design, interaction and operation of the pipeline network, assuming the operation and maintenance costs. Furthermore, thermal and cold storage, transfer of thermal energy, and pipelines for transfer of cold and hot water to meet domestic hot water demands are additions to previously published models. The application of the final model is investigated for a case-study of a neighbourhood of five houses located in the UK. The scalability of the model is tested by also applying the model to a neighbourhood of ten and twenty houses, respectively. Enabling exchange of thermal power between the neighbours, including for storage pur -poses, and using separate hot and cold pipeline networks reduces the cost and the environmental impact of the resulting DER. (c) 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种混合整数线性编程模型,可实现符合电力,加热,冷却和国内热水需求的分布式能源资源(DER)系统的最佳设计。该目的是不同技术之间的系统组件的最佳选择,以及热水管网的最佳设计,以允许附近的不同节点之间的热交换。更具体地,这项工作侧重于管道网络的设计,交互和操作,假设操作和维护成本。此外,热电储存,热能转移和用于转移冷热水的管道,以满足国内热水需求,是先前公布的模型。对最终模型的应用进行了调查,以便在英国的五个房屋附近进行案例研究。通过将模型应用于十个和二十个房屋的邻域来测试模型的可扩展性。能够在邻居之间进行热功率,包括储存PUR-PUSE,并使用单独的热水管道网络降低了成本和所得DER对环境的影响。 (c)2021 elestvier有限公司保留所有权利。

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