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Study and Simulation of Combined Cooling Heating and Power System in an Industrial Park

机译:工业园区综合冷却加热和电力系统的研究与仿真

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In view of the large demand of energy in the industrial park and the collection of multiple loads such as cooling, heating and power, although the energy supply method of traditional industrial parks can ensure the stability of the park’s energy supply, it cannot achieve more reasonable and effective use of energy. This paper applied the risk-return model in the condition value at risk to the power purchase and sale decision of industrial parks, and obtained the comprehensive electricity price for the electricity market. According to the industrial park’s load curve, a mathematical model of the Combined Cooling, Heating and Power system was established. The improved particle swarm algorithm was adopted to solve the comprehensive electricity price fluctuations and energy price uncertainty. Through the simulation and analysis, the park equipment capacity configuration was optimized, the simulation accuracy was improved, and the environmental protection, economy and efficiency of the cooling, heating and power cogeneration system was verified. The simulation of energy utilization efficiency with or without energy storage devices showed that the configuration of energy storage in industrial parks can effectively reduce energy waste and improve the stable operation of industrial parks.
机译:鉴于工业园区的能源需求大,虽然传统工业园区的能源供应方法可以保证公园能源供应的稳定性,但虽然传统工业园区的能源供应,但鉴于冷却,加热和电力等多重载荷。有效地利用能量。本文将风险回报模型应用于工业园区电力购买和销售决策的风险,并获得了电力市场的全面电价。根据工业园的负载曲线,建立了组合冷却,加热和电力系统的数学模型。采用改进的粒子群算法来解决全面的电力价格波动和能源价格不确定性。通过仿真和分析,公园设备容量配置得到了优化,仿真精度得到改善,验证了冷却,加热和电力发电系统的环保,经济和效率。有或没有能量存储设备的能量利用效率的模拟表明,工业园区的能量储存的配置可以有效地降低能量浪费,提高工业园区的稳定运行。

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