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Influencing Factors on Thermal Performance of Countflow Cooling Tower

机译:逆流冷却塔热性能的影响因素

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Cooling towers are commonly used to dissipate heat from heat sources to heat sink (ambient environment).Their applications are typically in Heating Ventilation and Air Conditioning (HVAC) systems.They normally consume around ten percent of the whole system energy,at that time,their operation has significant effect on the energy consumption of related other subsystems.This paper presents a countflow cooling tower model which can emulate the parameters' variation accurately during cooling towers' operation.Wet-bulb temperature of ambient air,airflow rate and cooling water flow rate are important factors influencing thermal performance,therefore,in this paper the variations of thermal performance corresponding to the different parameters' variations are calculated and analyzed.Especially,the impact of cooling water flow rate and airflow rate on heat rejection rate is key to minimize energy consumption.The conclusion shows the sum of energy consumption from the pump and fan corresponding to cooling water flow rate and airflow rate exists the minimum (optimal operating point) when wet-bulb temperature of ambient air is a fixed value.When the ambient wet-bulb temperature changes,the optimal operating point of cooling towers will change accordingly,which is helpful to minimize energy consumption and realize the efficient operation of HVAC system.
机译:冷却塔通常用于将热量从热源散发到散热器(周围环境)。它们的应用通常用于加热通风和空调(HVAC)系统中,它们通常消耗整个系统能量的大约百分之十,它们的运行对其他相关子系统的能耗有重大影响。本文提出了一种计数流冷却塔模型,该模型可以精确地模拟冷却塔运行期间参数的变化。环境空气的湿球温度,风量和冷却水流量速率是影响热性能的重要因素,因此,本文对不同参数的变化所对应的热性能的变化进行了计算和分析。特别是冷却水流量和空气流量对排热率的影响是最小化的关键。结论显示了对应于t的泵和风扇的能耗总和o当周围空气的湿球温度为固定值时,冷却水的流量和空气流量存在最小值(最佳工作点)。当周围湿球的温度变化时,冷却塔的最佳工作点将随之变化,从而有助于最小化能耗并实现HVAC系统的高效运行。

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