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Energy and environmental implications of advanced chiller system under climate change

机译:气候变化下先进冷水机构的能源与环境影响

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Full variable speed chiller systems are believed to have better energy performance in the long run compared with conventional chiller systems with constant speed control and yet their application is still limited.This paper elaborates on their energy performance and environmental impacts in terms of water consumption,carbon emissions and plume emissions under climate change.Hourly weather data under climate change scenarios in 2020,2050 and 2080 were generated by using the program CCWorldWeatherGen,based on a typical meteorological year weather file for Hong Kong.The building simulation program EnergyPlus was used to model a hotel with an all-variable speed chiller system or a conventional system.Part load performance data from a chiller manufacturer were used to verify the modelling equations of the advanced chiller system.Results show that the full variable speed system can help maintain a higher coefficient of performance of chillers even under the warmer future climate,reducing carbon emissions by 24.0 – 32.4%and water consumption by 5.4 – 11.7%from 2080 to the typical meteorological year.The optimal speed control for the condenser water pumps and cooling tower fans helps lower the condenser water temperatures,reducing the chance of plume emissions.Such a comprehensive analysis on the environmental performance of advanced chiller systems is hardly found from previous studies.
机译:全变速冷却系统被认为与恒速控制和常规冷却系统相比,具有从长远来看,更好的节能性能但他们的应用程序仍然limited.This阐述了自己的节能性能和环境影响的水耗,碳方面通过使用程序CCWorldWeatherGen的基础上,为香港Kong.The建筑模拟程序EnergyPlus的典型气象年气象文件生成在2020,2050和2080在气候change.Hourly气象数据排放量和排放羽下的气候变化情景是用来模型一个全变速冷却器系统或从冷却器制造商的传统system.Part负载性能数据的宾馆被用来验证先进冷却器system.Results的建模方程表明,完整的变速系统可以帮助保持较高的系数即使下未来偏暖的气候冷水机组的性能,降低汽车盂兰盆排放24.0 - 32.4%和水的消耗由5.4 - 11.7%从2080到用于冷凝器水的典型气象year.The最佳速度控制泵和冷却塔风扇有助于降低冷凝器水温度,减少羽流的排放的机会。先进的冷却系统的环保性能如此全面的分析,难以从以往的研究发现。

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