循环冷却水CO2传质系数理论计算与实验测定
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中央高校基本科研业务费专项资金资助项目(208-275641)


Numerical calculation and experimental study of mass transfer coefficient of CO2 in circulating water system
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    摘要:

    为实现对循环水运行工况的在线连续监控,实时预测循环冷却水pH值动态变化,以循环冷却水为研究对象,对循环冷却水准动态系统pH值进行数学建模,在此基础上,计算了循环冷却水系统中CO2气体在空气相与水相中的传质系数KG,并通过循环水动态模拟装置对模型进行了试验验证。结果表明:循环冷却水与空气中CO2充分接触后,可达气液两相碳酸盐平衡,其pH值测定值与理论值的最大误差仅为0.04;循环水准动态pH值变化与数学模型能较好吻合,根据模型计算出的CO2在一定的温度与喷淋流量下,A·KG为定值。当温度固定为40 ℃时,10 5·A·KG=0.023 6Q-0.02。

    Abstract:

    To moniter the operation condition of circulating water system and realize real-time prediction of the pH variation of circulating cooling water, a mathematic model of pH variation tendency is set up and the mass transfer coefficientof gaseous CO2 is calculated. Then the validity of the model is verified by quasi-dynamic simulation experiment. Results illustrate that circulating water can achieve the gas-liquid equilibrium state after it fully contacts with gaseous CO2 in atmosphere, and the maximum error limit between the theoretical and the measured pH value is only 0.04. The pH variation tendency of quasi-dynamic system is in line with the predicting mathematic model and the A·KG is a constant when temperature(T)and spray flow(Q)are fixed. 10 5·A·KG=0.023 6Q-0.02 gives the relationship between A·KG and Q, when T is 40 ℃.

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叶春松,周为,张弦,张会琴,杨帆,阳红.循环冷却水CO2传质系数理论计算与实验测定[J].重庆大学学报,2013,36(7):16-20.

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  • 在线发布日期: 2013-07-19
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