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Thermal stress in SiC element used in heat exchanger
作者姓名:李贺松  梅炽
作者单位:School of Energy and Power Engineering, Central South University, Changsha 410083 China
摘    要:1INTRODUCTION Thick walledpipesexperiencinginternalheat flowhavefoundwideapplicationsinindustry,in cludingheatexchanger,furnace,heatpipes,etc.Thethermalstressesinthepipewallareveryim portanttoassessthesizeandmaterialpropertyof thepipe.Somemetallurgicalfurnacesneedalayer offreezingbathforprotectinginnerliningagainst erosionofmeltingbath1,2].BecauseSiChashigh thermalconductivity,itisusedasinnerliningofmetallurgicalfurnaces,butalotofenergylossisa wasteofresources.Therearethelargethermal gr…

关 键 词:换热元件  碳化硅  热压力  有限元  数值模拟
文章编号:1005-9784(2005)06-0709-05
收稿时间:2005-04-24
修稿时间:2005-06-12

Thermal stress in SiC element used in heat exchanger
Li He-song,and Mei Chi.Thermal stress in SiC element used in heat exchanger[J].Journal of Central South University of Technology,2005,12(6):709-713.
Authors:Li He-song  and Mei Chi
Affiliation:(1) School of Energy and Power Engineering, Central South University, 410083 Changsha, China
Abstract:An especial snake SiC pipe was designed for collecting losing heat from furnaces. The three-dimensions thermal, fluid and thermal stress coupled field of heat exchanger was analyzed by using the commercial engineering computer package ANSYS. The structural and operational parameters of heat exchanger, the junction between standpipe and snake pipe, the diameter of snake pipe, ratio of thickness to diameter of pipe, velocity of inlet air were optimized for thermal stress. The computed results show that the large thermal stress exits in the SiC, and the stand pipe should be ellipse for the least thermal stress; the optimal ratio of thickness to diameter of pipe is 6, the velocity of inlet air is 25 m/s. The most thermal stress is in inverse proportion to diameter of pipe and velocity of inlet air.
Keywords:finite element method  simulation  heat exchanger element  thermal stress
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