首页> 外文期刊>Energy and Buildings >High efficiency 'low-lift' vapour-compression chiller for high-temperature cooling applications in non-residential buildings in hot-humid climates
【24h】

High efficiency 'low-lift' vapour-compression chiller for high-temperature cooling applications in non-residential buildings in hot-humid climates

机译:高效的“低扬程”蒸气压缩式冷水机,用于在潮湿天气中的非住宅建筑中进行高温冷却

获取原文
获取原文并翻译 | 示例
           

摘要

Over the last decade, building engineers have begun implementing sensible-latent de-coupled air-conditioning systems in non-residential buildings in hot-humid climates. Typically, a de-coupled system consists of a dedicated outdoor air sub-system for ventilation and high-temperature radiant cooling sub-system for space cooling. This approach has lowered cooling energy demands and fan energy consumption in buildings. However, the complete energy saving potential of de-coupled systems, specifically high-temperature space cooling sub-systems, can only be realized by using low-lift chillers that supply chilled water which matches the high-temperature radiant cooling application.This paper discusses the results of a retro-installation of a prototype modular low-lift chiller to provide high-temperature chilled water (at 17 degrees C) to the radiant cooling units. The paper presents temperature and cooling load profiles, control methodology and energy efficiency improvements of the low-lift cooling system. The paper also further discusses the influence of various parameters on the performance of the chiller. Despite having a cooling capacity of only 20 kW, the modular low-lift chiller is consistently able to achieve a Coefficient of Performance (COP) of 8. By operating at a low-lift (20 K) compared to a high-lift (29 K), the sensible cooling electrical consumption (at the chiller) is reduced by 23% despite being compared to a high-lift low-temperature chiller with 100 x higher cooling capacity. When normalized for cooling capacities, this reduction is between 29-30%. The project is the first known installation of low-lift cooling for building comfort control in hot-humid climates, and first reported publication of low-lift cooling in a real-life scenario - i.e., non-laboratory conditions or modelling exercise. (C) 2019 Elsevier B.V. All rights reserved.
机译:在过去的十年中,建筑工程师已开始在湿热气候下的非住宅建筑中采用显隐性去耦空调系统。通常,解耦系统由用于通风的专用室外空气子系统和用于空间冷却的高温辐射冷却子系统组成。这种方法降低了建筑物的冷却能量需求和风扇能耗。但是,只有通过使用提供与高温辐射制冷应用相匹配的冷冻水的低扬程制冷机,才能实现去耦系统(尤其是高温空间制冷子系统)的全部节能潜力。重新安装了模块化低扬程制冷机原型的结果,该制冷机向辐射冷却单元提供高温冷冻水(17摄氏度)。本文介绍了低升程冷却系统的温度和冷却负荷曲线,控制方法和能效改进。本文还进一步讨论了各种参数对冷却器性能的影响。尽管制冷量仅为20 kW,但模块化低扬程冷水机始终能够实现8的性能系数(COP)。与高扬程(29)相比,低扬程(20 K)运行K),尽管与具有100倍高冷却能力的高扬程低温冷却器相比,(冷却器)的显着冷却电耗却降低了23%。当对冷却能力进行标准化时,此降低幅度为29-30%。该项目是第一个已知的用于在湿热气候中控制建筑物舒适性的低升力冷却装置,并且是第一个报道的在实际场景中(即非实验室条件或建模练习)的低升力冷却装置。 (C)2019 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号