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基于多结构因素的气-液旋流分离器结构优化设计OA北大核心CSTPCD

Structure optimization design of gas-liquid cyclone separator based on multiple structural factors

中文摘要英文摘要

气-液旋流分离器内部流场复杂,结构尺寸等因素对其分离效率影响较大。针对排气管直径、插入深度、偏置角度、偏置距离以及增设底流口防返混锥5个结构因素进行正交试验设计,利用Fluent软件对16组有代表性的水平组合模型进行数值模拟,用极差法找出各因素优化水平组合以及各因素对分离效率和压降的主次影响顺序,最后通过综合平衡法找到最优组合,并分析了优选结构下液滴粒径和入口速度对分离效率的影响。

Gas-liquid cyclone separator has complex internal flow field,its separating performance is greatly affected by structural factors.In this paper,five structural factors were considered to carry out the orthogo-nal test design,including the exhaust pipe diameter,inserting depth,angle offset and offset distance and adding underflow anti back mixing cone.Through 1 6 groups of representative level combination model,nu-merical simulation was conducted using Fluent software.Moreover,the extremum difference analysis meth-od was applied to find the factor combination mode and the influence sequence of each factor on separation efficiency and pressure drop.Finally,through the comprehensive balance method,the optimal factor combi-nation mode was obtained and the effects of droplet size and inlet gas velocity on the separation efficiency were analyzed.

洪文鹏;孙赫蔓;李磊

东北电力大学能源与动力工程学院,吉林 吉林 132012东北电力大学能源与动力工程学院,吉林 吉林 132012华能营口热电有限责任公司,辽宁 营口 115000

能源科技

气-液旋流分离器分离效率压降正交试验排气管结构优化

gas-liquid cyclone separatorseparation efficiencypressure droporthogonal testexhaust pipestructure optimization

《热力发电》 2016 (3)

41-47,53,8

10.3969/j.issn.1002-3364.2016.03.041

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