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A Study on verification of changes in performance of a water-cooled VRF system with control change based on measuring data

机译:基于测量数据的控制变化对水冷VRF系统性能变化的验证研究

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A variable refrigerant flow (VRF) system is convenient to install and manage as well as the operability via occupants is superior compared to a chiller system. Thus, the use of the VRF system has increased in East Asia and Europe in recent years. In particular, a water-cooled VRF system can solve a space problem of installation for outdoor units in existing air-cooled systems. Thus, it can be applicable to large-sized buildings. However, most cooling tower operations are done with the same setup regardless of the changes in outdoor conditions during the operating period, which is a conservative method for a water-cooled mode. The present study aims to improve the performance of outdoor units in the VRF by reducing the temperature of cooling water to a lower temperature than the existing setup value and verify this through actual measurements. To do this, a new algorithm for a cooling tower operation was developed and applied to a six-week operation during the summer to analyze the effect of the change in setup value. The result showed that power consumption of the cooling tower system and VRF outdoor unit was reduced by 24% and 5.9%, respectively due to the new setup and the coefficient of performance (COP) of the outdoor unit and system was improved by 7.3% and 12.7%, respectively thereby reducing an operation cost by 11%. (C) 2017 Elsevier B.V. All rights reserved.
机译:与制冷机系统相比,可变制冷剂流量(VRF)系统安装和管理方便,并且通过乘员的可操作性优越。因此,近年来,在东亚和欧洲,VRF系统的使用有所增加。特别地,水冷的VRF系统可以解决现有的风冷系统中室外单元安装的空间问题。因此,它可以适用于大型建筑物。但是,大多数冷却塔的运行均以相同的设置进行,而不管运行期间室外条件的变化如何,这是水冷模式的保守方法。本研究旨在通过将冷却水的温度降低到比现有设置值低的温度来改善VRF中的室外机性能,并通过实际测量进行验证。为此,开发了一种用于冷却塔运行的新算法,并将其应用于夏季的六周运行中,以分析设置值变化的影响。结果表明,由于采用了新的设置,冷却塔系统和VRF室外机的功耗分别降低了24%和5.9%,室外机和系统的性能系数(COP)提高了7.3%和分别降低了12.7%,从而将运营成本降低了11%。 (C)2017 Elsevier B.V.保留所有权利。

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