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Effect of drainage layer on oil distribution and separation performance of fiber-bed coalescer

机译:排水层对纤维床配水分配和分离性能的影响

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摘要

The effect of drainage layer on the pressure drop evolution, oil distribution and separation performance was investigated experimentally. The results showed that there existed obvious oil film on the rear face of wettable layer to cause a sharp jump in pressure drop. The interface between wettable coalescing media and non-wettable drainage layer could facilitate the drainage of coalesced oil and ameliorate the oil distribution density near the interface to improve the droplet capture probability. And because of the drainage function of the interface, the saturation of this kind of bed was lower. Oil distribution density in wettable drainage layer was relatively more uniform than that in the front coalescing layer, while in the bed only consisting of non-wettable media there existed a sparse zone of oil distribution in the lower half of the bed and this may be one reason for the low separation efficiency of non-wettable bed. A fiber bed with the arrangement of non-wettable drainage layer following behind wettable coalescing layer had the best overall separation performance.
机译:实验研究了排水层对压降演化,油分布和分离性能的影响。结果表明,可湿性层后面存在明显的油膜,导致压降急剧下降。可润湿的聚结介质和不湿排水层之间的界面可以促进聚结油的排水,并改善界面附近的油分布密度,以提高液滴捕获概率。并且由于界面的排水功能,这种床的饱和度较低。可湿性排水层中的油分布密度比前部聚结层中的均匀性相对较为均匀,而在床中仅由不可润湿的介质组成,因此在床的下半部分中存在稀疏的油分布区域,这可能是一个不湿床的低分离效率的原因。纤维床,具有后面的可湿性聚结层后面的不湿排水层的布置具有最佳的整体分离性能。

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