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Part load performance of air-cooled centrifugal chillers with variable speed condenser fan control

机译:变速冷凝器风扇控制的风冷离心式制冷机的部分负荷性能

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Air-cooled centrifugal chillers are commonly used in commercial buildings but their performance analysis is lacking. This paper investigates the part load performance of the chillers via a thermodynamic model. The model was validated using a wide range of operating data from an existing chiller with specific settings of outdoor temperature and condensing pressure in controlling the condensing temperature. The validated model was developed specifically to ascertain the maximum coefficient of performance of chiller (COP) together with the strategy for optimizing the condensing temperature under various operating conditions. It is found that the highest COP occurs at a part load ratio (PLR) of 0.71-0.84, depending on the outdoor temperature and the control of condensing temperature, rather than at full load. Yet the chillers operating at such part load conditions will cause extra energy used for the early staging of chilled water pumps. To minimize the overall chiller plant energy consumption, it is still preferable to implement chiller sequencing based on the full load condition than on the aforementioned PLRs. The results of this paper present criteria for implementing low-energy strategies for operating air-cooled chillers satisfying a given building cooling load profile.
机译:风冷离心式制冷机通常用于商业建筑,但缺乏性能分析。本文通过热力学模型研究了冷水机的部分负荷性能。该模型已使用来自现有冷水机组的各种运行数据进行了验证,并具有室外温度和冷凝压力在控制冷凝温度方面的特定设置。专门开发了经过验证的模型,以确定冷却器(COP)的最大性能系数,以及在各种工况下优化冷凝温度的策略。发现最高COP发生在部分负载比(PLR)为0.71-0.84时,这取决于室外温度和冷凝温度的控制,而不是在满负载时。然而,在这样的部分负荷条件下运行的冷却器将导致额外的能量用于冷却水泵的早期升级。为了最大程度地减少整个冷水机组的能源消耗,与在上述PLR上相比,仍然优选基于满负荷条件实施冷水机组排序。本文的结果提出了在满足给定建筑物制冷负荷要求的情况下,对运行中的风冷式制冷机实施低能耗策略的标准。

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