首站-论文投稿智能助手
典型文献
Effects of the outlet pressure on two-phase slug flow distribution uniformity in a multi-branch microchannel
文献摘要:
The two-phase flow maldistribution phenomenon in microchannels with multi-parallel branches is inevitable in almost all common conditions,and not only affects the performance of the facility but also increases the risk of system instability.In order to better understand the distribution mechanism and to explore a potential strategy to improve uniformity,the pressure evolutions under different split modes in a microchannel with multi-parallel branches,were analyzed numerically.The results show that the fluctuations of transient pressure exhibit similar trends at various split modes,but the time-averaged pressure drops in the branches are very different.This may be related to the maldistribution of mass flow.Thus,the outlet pressures of the branches are numerically changed to explore the relationship between differential pressure and flow distribution.From this study,the flow distribution is seen to display a strong sensitivity to the branch differential pressure.By changing the pressure conditions,the gas flow of the middle branch can be effectively prevented from the main channel,and the flow type in this branch turns from gas-liquid to a single liquid phase.When the differential pressure of the first branch channel changes,the maldistribution phenomenon of the model can be mitigated to a certain extent.Based on this,by adjusting the differential pressures of the second branch,the maldistribution phenomenon can be further mitigated,and the normalized standard deviation(NSTD)decreases from 0.52 to approximately 0.26.The results and conclusions are useful in understanding the two-phase flow distribution mechanism and for seeking optimizing strategies.
文献关键词:
作者姓名:
Peng-fei ZHANG;Xiang-guo XU;Yong-jun HUA;Yu-qi HUANG
作者机构:
Department of Energy Engineering,Zhejiang University,Hangzhou 310027,China;Center for Balance Architecture,Zhejiang University,Hangzhou 310027,China
引用格式:
[1]Peng-fei ZHANG;Xiang-guo XU;Yong-jun HUA;Yu-qi HUANG-.Effects of the outlet pressure on two-phase slug flow distribution uniformity in a multi-branch microchannel)[J].浙江大学学报(英文版)(A辑:应用物理和工程),2022(01):68-82
A类:
maldistribution,NSTD
B类:
Effects,outlet,two,phase,slug,flow,uniformity,multi,phenomenon,microchannels,parallel,branches,inevitable,almost,common,conditions,not,only,affects,performance,facility,also,increases,risk,system,instability,In,order,better,mechanism,explore,potential,strategy,improve,evolutions,split,modes,were,analyzed,numerically,results,show,that,fluctuations,transient,exhibit,similar,trends,various,averaged,drops,are,very,This,may,related,mass,Thus,pressures,changed,relationship,between,differential,From,this,study,seen,display,strong,sensitivity,By,changing,gas,middle,can,effectively,prevented,from,main,type,turns,liquid,single,When,first,changes,model,mitigated,certain,extent,Based,by,adjusting,second,further,normalized,standard,deviation,decreases,approximately,conclusions,useful,understanding,seeking,optimizing,strategies
AB值:
0.463288
相似文献
Dynamic analysis of heat extraction rate by supercritical carbon dioxide in fractured rock mass based on a thermal-hydraulic-mechanics coupled model
Chunguang Wang;Xingkai Shi;Wei Zhang;Derek Elsworth;Guanglei Cui;Shuqing Liu;Hongxu Wang;Weiqiang Song;Songtao Hu;Peng Zheng-College of Energy and Mining Engineering,Shandong University of Science and Technology,Qingdao 266590,China;New-energy Development Center of Sinopec Shengli Oilfield,Dongying 257001,China;Energy and Mineral Engineering and G3 Center,Penn State University,University Park,PA 16802,USA;Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines,Northeastern University,Shenyang 110004,China;Shandong Provincial Geo-Mineral Engineering Co.,Ltd,Jinan 250013,China;Qingdao Wofu New Energy Science and Technology Co.,Ltd,Qingdao 266010,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。