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The optimal design and operation strategy of renewable energy-CCHP coupled system applied in five building objects

机译:五个建筑对象中可再生能源-CCHP耦合系统的优化设计和运行策略

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摘要

Combined cooling, heating, and power (CCHP) is an economic and eco-friendly technology to mitigate energy issues with remarkable energy efficiency improvement. This study formulates a mixed integer nonlinear programming (MINLP) model for a combined CCHP system coupled with renewable energy, i.e. RCCHP system, which is applied in five different buildings to evaluate the economic and environmental performance under two optimization modes. Net present value (NPV), internal rate of return (IRR) and dynamic payback period (DPP) are introduced as economic indexes, while CO2 emission reduction rate (CER) is considered as the environmental indicator to determine the optimal combination, capacity, and operation strategies for energy technologies. Results indicate that a combination of electricity purchased at valley period during night with power generated by the combined heating and power (CHP) unit coupled with wind turbine in peak period during daytime is cost-optimal which also enables higher energy efficiency. Meanwhile, the feed-in tariff as well as the uncoordinated electrical and thermal loads both show a significant impact on real-time operation strategies. Compared with the reference separate production (SP) system, the combined system shows better performance when applied to shopping mall under both optimization modes, e.g., with NPV up to 67.65 and 46.61 million RMB, IRR up to 20.70% and 25.10%, and the minimum DPP is 5.49 and 4.82 years under NPV and IRR maximization, respectively. (C) 2019 Elsevier Ltd. All rights reserved.
机译:冷热电联产(CCHP)是一种经济环保的技术,可通过显着提高能源效率来缓解能源问题。本研究针对结合可再生能源的CCHP系统,即RCCHP系统制定了混合整数非线性规划(MINLP)模型,该模型被应用于五座不同的建筑中,以评估两种优化模式下的经济和环境绩效。引入净现值(NPV),内部收益率(IRR)和动态投资回收期(DPP)作为经济指标,而将CO2减排率(CER)视为确定最佳组合,容量和成本的环境指标。能源技术的运营策略。结果表明,在夜间的谷底时段购买的电力与白天在高峰时段由热电联产(CHP)单元与风力涡轮机结合产生的电力的组合是成本最优的,这还可以实现更高的能源效率。同时,上网电价以及不协调的电气和热负荷都对实时操作策略产生了重大影响。与参考单独生产(SP)系统相比,组合系统在两种优化模式下应用于购物中心时均具有更好的性能,例如,净现值分别为67.65和4661万元,内部收益率分别为20.70%和25.10%,在NPV和IRR最大化的情况下,最低DPP分别为5.49年和4.82年。 (C)2019 Elsevier Ltd.保留所有权利。

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