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Impacts of equipment off-design characteristics on the optimal design and operation of combined cooling, heating and power systems

机译:设备废旧特性对混合冷却,加热和电力系统的最优设计和操作的影响

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The design and operation of combined cooling, heating and power (CCHP) systems are complicated due to the fluctuating demands that the system faces. Many mathematical models for the design and/or operation of CCHP systems have been developed to obtain better performances of such systems. Most of these models adopt a constant efficiency assumption, while others take equipment off-design characteristics into account. In this paper, we present two mathematical models for the optimal design and operation of CCHP systems with the target of minimizing the total annual cost. For comparison purposes, one model is formulated to represent the performance of a CCHP system running at design conditions, i.e., with constant energy efficiency. In the other model, both the design and off-design characteristics of all key equipments in a CCHP system are considered. These two models were applied to different CCHP systems. Comparative studies of overall costs and operation schedules of different CCHP systems were performed to examine the impacts of equipment off-design characteristics on the optimal design and operation of CCHP systems. Results show that introduction of thermal storage facilities, connection to power grid and a well designed operation strategy can diminish the negative impacts of adopting the constant efficiency assumption.
机译:由于系统面孔的波动,所需的混合冷却,加热和功率(CCHP)系统的设计和操作变得复杂。已经开发了许多用于CCHP系统的设计和/或操作的数学模型以获得这种系统的更好性能。大多数这些模型采用恒定的效率假设,而其他型号则考虑到设备的偏离设计特征。在本文中,我们为CCHP系统的最佳设计和操作提供了两种数学模型,其目标最小化了总年度成本。为了比较目的,配制一种模型以表示在设计条件下运行的CCHP系统的性能,即,具有恒定能效。在其他模型中,考虑了CCHP系统中所有关键设备的设计和偏移设计特性。这两种模型应用于不同的CCHP系统。对不同CCHP系统的总成本和运行时间表的比较研究进行了对不同CCHP系统的影响,以检查设备废除设计特征对CCHP系统的最佳设计和操作的影响。结果表明,热存储设施的引入,电网连接和精心设计的操作策略可以减少采用恒定效率假设的负面影响。

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