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Energy simulation of sustainable air-cooled chiller system for commercial buildings under climate change

机译:气候变化下商业建筑可持续风冷式冷水机系统的能量模拟

摘要

Air-cooled chiller systems are commonly used to provide cooling energy in commercial buildings but with considerable electricity consumption. This study demonstrates how to operate the systems with sustainable performance under climate change by applying optimal condenser fan speed control coupled with mist pre-cooling of air entering the condensers. The simulation of system performance was carried out by using EnergyPlus together with an experimentally verified chiller model capable of analyzing advanced control strategies. Weather data under three climate change scenarios in 2020, 2050 and 2080 were considered in evaluating the cooling demand and hourly electricity consumption of an air-cooled chiller system serving an office building. It is found that optimal condenser fan speed control coupled with mist pre-cooling of air-cooled condensers can help maintain a higher coefficient of performance under the warmer future climate, reducing the annual electricity consumption by 16.96-18.58% in the reference weather year and 2080. The ways to implement the sustainable control have been discussed.
机译:风冷式冷却器系统通常用于在商业建筑中提供冷却能量,但耗电量却很大。这项研究演示了如何通过应用最佳冷凝器风扇速度控制以及进入冷凝器的空气的雾气预冷却,来在气候变化下以可持续的性能运行系统。系统性能的仿真是通过使用EnergyPlus以及经过实验验证的能够分析高级控制策略的冷却器模型来进行的。在评估为办公楼服务的风冷式制冷机系统的制冷需求和每小时用电量时,考虑了2020年,2050年和2080年三种气候变化情景下的天气数据。结果发现,最佳的冷凝器风扇速度控制与风冷冷凝器的雾气预冷却相结合,可以在未来较暖的气候下帮助保持较高的性能系数,从而在参考天气年度内将年度电力消耗减少16.96-18.58%。 2080.已经讨论了实施可持续控制的方法。

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