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Improved condenser design and condenser-fan operation for air-cooled chillers

机译:改进的冷凝器设计和风冷式冷风机的冷凝器风扇操作

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Air-cooled chillers traditionally operate under head pressure control via staging constant-speed condenser fans. This causes a significant drop in their coefficient of performance (COP) at part load or low outdoor temperatures. This paper describes how the COP of these chillers can be improved by a new condenser design, using evaporative pre-coolers and variable-speed fans. A thermodynamic model for an air-cooled screw-chiller was developed, within which the condenser component considers empirical equations showing the effectiveness of an evaporative pre-cooler in lowering the outdoor temperature in the heat-rejection process. The condenser component also contains an algorithm to determine the number and speed of the condenser fans staged at any given set point of condensing temperature. It is found that the chiller's COP can be maximized by adjusting the set point based on any given chiller load and wet-bulb temperature of the outdoor air. A 5.6-113.4% increase in chiller COP can be achieved from the new condenser design and condenser fan operation. This provides important insights into how to develop more energy-efficient air-cooled chillers.
机译:传统上,风冷式冷却器通过分段恒速冷凝器风扇在头压控制下运行。这会导致它们在部分负荷或室外低温下的性能系数(COP)大大下降。本文介绍了如何通过使用蒸发式预冷器和变速风扇的新型冷凝器设计来提高这些冷水机组的COP。建立了一个风冷式螺旋冷却器的热力学模型,在该模型中,冷凝器组件考虑了经验方程式,该方程式表明了蒸发式预冷器在降低排热过程中降低室外温度方面的有效性。冷凝器组件还包含一种算法,用于确定在任何给定的冷凝温度设定点处分级的冷凝器风扇的数量和速度。发现通过基于任何给定的冷水机组负荷和室外空气的湿球温度来调节设定点,可以使冷水机组的COP最大化。通过新的冷凝器设计和冷凝器风扇操作,可将冷水机组COP提高5.6-113.4%。这为如何开发更节能的风冷式冷水机提供了重要的见识。

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