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Experimental study on performance of a de-foulant hydrocyclone with different reflux devices for sewage source heat pump

机译:污水源热泵不同流回流器件脱墨水力旋流性能的实验研究

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摘要

A de-foulant hydrocyclone (DFH) with different reflex devices was proposed to enhance the decontamination performance of DFH used in sewage source heat pump. In this study, the effects of the reflux angle and blowdown-pipe shape of the reflux device on the decontamination performance were experimentally investigated for domestic sewage and water with general-purpose polystyrene particles (GPPS). Results indicated that, the growth of the reflux angle increased the separation efficiency (for foulant, from 64% to 75%; for GPPS, from 72% to 88%) whereas reduced the energy consumption (for foulant, from 28 kPa to 23 kPa; for GPPS, from 22 kPa to 10 kPa). However, their changes were suppressed by the back pressure at the underflow orifice, which was proportional to the reflux angle. As a result, the optimum reflux angle of the DFH with a diverging blowdown-pipe is 90 degrees in the sewage source heat pump. In addition, whether the blowdown-pipe was diverging or isodiametric, the increase in the reflux angle could reduce the effect of the inlet-flow-rate fluctuation on the separation performance. We hope that this study will provide a basis for the design and manufacture of the reflux device, which is a critical component of the de-foulant hydrocyclones.
机译:提出了一种具有不同反射器件的脱墨氢胞素(DFH),以增强污水源热泵中使用的DFH的去污性能。在这项研究中,通过通用聚苯乙烯颗粒(GPP)的国内污水和水进行实验研究了回流装置对废物污染性能的回流角和排污管形状的影响。结果表明,回流角的生长增加了分离效率(污垢,从64%到75%;对于GPP,从72%到88%,而减少了能耗(对于污垢,28kPa到23 kPa ;对于GPP,从22 KPA到10 KPA)。然而,它们的变化由下溢孔口的背压抑制,其与回流角成比例。结果,DFH在污水源热泵中具有发散排气管的DFH的最佳回流角度是90度。此外,无论是排污管是否发散或异常,回流角的增加都可以降低入口流速波动对分离性能的影响。我们希望本研究能够为回流装置的设计和制造提供基础,这是污染氢旋流器的关键组成部分。

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