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FOULING MITIGATION IN A HEAT EXCHANGER: HIGH CYCLES OF CONCENTRATION FOR A COOLING-TOWER APPLICATION

机译:换热器中的烟气缓解:冷却塔应用中的高浓度循环

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The purpose of the present study is to investigate the effect of a physical water treatment (PWT) technology on fouling mitigation in a simulated cooling tower operating at high cycles of concentration. Hard water was produced by evaporating pure water in a circulating open cooling tower, where dissolved calcium carbonate ions became concentrated with time. Heat transfer tests were conducted in a rectangular channel by varying the cycle of concentration (COC) from 5 to 10, and fouling resistances were measured over 270 hrs for each case with and without the PWT treatment. Another test was conducted with no blowdown case with and without the PWT treatment. The fouling resistance at 5 cycles with the PWT treatment was about 70% less than that in the case without the PWT treatment at the end of 270-hr tests. Even at 10 cycles, the PWT treatment reduced the fouling resistance by 60% from the value for the no treatment case. Thus, one can conclude that the PWT technology can help circulating cooling-tower water at relatively high COC for significant freshwater conservation, while keeping fouling resistances below industry standards.
机译:本研究的目的是研究物理水处理(PWT)技术对在高浓度循环下运行的模拟冷却塔中结垢缓解的影响。硬水是通过在循环的开放式冷却塔中蒸发纯水而产生的,其中溶解的碳酸钙离子随时间浓缩。通过将浓度(COC)的周期从5更改为10,在矩形通道中进行了传热测试,在有和没有PWT处理的情况下,均在270小时内测量了耐污垢性。进行了另一项测试,无论是否有PWT处理,都没有排污情况。在270小时试验结束时,使用PWT处理的5个循环的耐污垢性比未使用PWT处理的情况低约70%。甚至在10个循环时,PWT处理也将防污性与无处理情况下的值相比降低了60%。因此,可以得出结论,PWT技术可以帮助在较高的COC下循环冷却塔水,从而显着节约淡水,同时保持耐污垢性低于行业标准。

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