首页> 外文期刊>Experimental Heat Transfer >ELECTRO-FLOCCULATION MECHANISM OF PHYSICAL WATER TREATMENT FOR THE MITIGATION OF MINERAL FOULING IN HEAT EXCHANGERS
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ELECTRO-FLOCCULATION MECHANISM OF PHYSICAL WATER TREATMENT FOR THE MITIGATION OF MINERAL FOULING IN HEAT EXCHANGERS

机译:物理水处理消除换热器矿物絮凝的电絮凝机理。

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The objective of the present study was to investigate the mechanism of a physical water treatment (PWT) technology used to mitigate mineral fouling in a heat exchanger. The PWT method tested utilized a solenoid coil to produce induced electric fields in a feed pipe prior to the heat exchanger. Fouling experiments were conducted using well water circulated through a laboratory cooling tower over 270 h with no blowdown, and fouling resistances were determined over time. Compared with the fouling resistance for the baseline case, those obtained with the PWT technology showed high efficacy for maintaining a low fouling resistance value. Samples of circulating well water were collected and analyzed using a laser particle counter over time. After 4 days of operation, the total number of particles was approximately 1 million per cc for the untreated case, whereas the case with PWT produced 3.5 million per cc. The present data on the particle counting provide empirical support for the bulk-precipitation hypothesis for the mechanism of PWT generally and electro-flocculation mechanism for solenoid coil techniques in particular.
机译:本研究的目的是研究用于减轻热交换器中矿物结垢的物理水处理(PWT)技术的机理。测试的PWT方法利用电磁线圈在热交换器之前的进料管中产生感应电场。使用在实验室冷却塔中循环的井水进行了超过270小时的结垢实验,没有排污,并随时间确定了结垢阻力。与基线情况下的防污性相比,用PWT技术获得的那些在保持低防污性值方面显示出很高的功效。收集循环井水样品,并随时间使用激光粒子计数器进行分析。运转4天后,未经处理的情况下,每立方厘米的颗粒总数约为100万,而带有PWT的情况下,每立方厘米的颗粒产量为350万。目前有关颗粒计数的数据为一般PWT机理的块体沉淀假说,尤其是电磁线圈技术的电絮凝机理提供了经验支持。

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