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CHP Optimized Selection Methodology for a Multi-Carrier Energy System

机译:多载波能源系统的热电联产优化选择方法

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摘要

Today, the interest on distributed generation has been increasing, especially due to technical development on generation systems that meet environmental and energy policy concerns. One of the most important distributed energy technologies is Combined Heat and Power (CHP). CHP is small and self-contained electric generation plan that can provide power for household applications, commercial or industrial facilities and hence its applications are overtly increasing. It can reduce power loss and enhance service reliability in distribution systems. One of the influential factors for the users is the purchasing cost of CHP which is largely dependent on its type, capacity and efficiency. Therefore among all exciting of the commercial CHP technologies certain economic choices are to be taken into account. Cost-Benefit analysis is one of the famous approaches aiming at maximization of benefit-to-cost ratio.The proposed method in this paper determine the optimized size of CHP for users by considering an integrated view of electricity and natural gas network based on the novel concept of energy hubs. The benefits of CHP placement equipped with a heat storage device described in this paper include power cost saving, power loss reduction, reliability enhancement and environmental considerations At last to confirm the proposed method the best size of CHP is determined for a hotel as a case study.
机译:如今,对分布式发电的兴趣一直在增长,特别是由于满足环境和能源政策问题的发电系统的技术发展。热电联产(CHP)是最重要的分布式能源技术之一。 CHP是一种小型且独立的发电计划,可以为家庭应用,商业或工业设施提供电力,因此其应用正在明显增加。它可以减少功率损耗并提高配电系统中的服务可靠性。对用户有影响的因素之一是热电联产的购买成本,它在很大程度上取决于其类型,容量和效率。因此,在所有令人兴奋的商业CHP技术中,必须考虑某些经济选择。成本效益分析是旨在实现成本收益比最大化的著名方法之一。本文提出的方法通过考虑基于新型的电力和天然气网络的综合观点,为用户确定热电联产的最佳规模。能源枢纽的概念。本文所述的配备蓄热装置的热电联产的好处包括节省电力成本,减少功率损耗,提高可靠性和环境方面的考虑。最后,作为案例研究,确定建议的方法是为酒店确定最佳的热电联产规模。

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