1) shell side
壳程
1.
Research on the enhancement of heat transfer by helical ribbon in the shell side;
壳程螺旋扭片强化传热研究
2.
The mechanism of strengthened heat transfer technique of heat exchanger and application conditions through both tube side and shell side are presented,and the merits and shortcomings are analyzed.
从换热器的管程和壳程2方面介绍了管壳式换热器强化传热技术的传热机理及其应用范围,进一步分析了各种强化传热技术的优缺点。
3.
The results show the distance of rod baffle is a little influence for the average angle field in the shell side of heat exchanger.
对折流杆换热器在壳程不同结构参数和不同工况下的平均角度场进行了数值计算,结果表明:折流栅间距对平均角度场的影响较小、折流栅有效流通面积即折流栅的最大流通面积与壳程截面积之比对平均角度场影响较大。
2) shell-side
壳程
1.
The effect of packing density on shell-side mass transfer performance of hollow fiber membrane module;
装填分率对中空纤维膜组件壳程传质性能的影响
2.
Numerical simulation of shell-side flow in hollow fiber membrane modules;
中空纤维膜组件壳程流动的数值模拟
3.
The analysis of shell-side fluid flowing is quite important to shell-side construction design of shell-and-tube exchangers.
管壳式换热器壳程流体的流动分析对壳程的结构设计至关重要,根据Tinker发表的壳程流体流动模型及其它相关资料,提出了在壳程折流板、管孔与换热管间隙、挡板以及挡管等结构设计中应注意的问题。
3) shell
[英][ʃel] [美][ʃɛl]
壳程
1.
Evaluation methods to heat transfer enhancement performance in shell of shell and tube heat exchanger;
管壳式换热器壳程强化传热评价方法分析
2.
The heat of convection and conduction in tube and shell are coupled with grid connect in numerical simulation.
在分析纵流式换热器结构特点的基础上,对纵流式换热器进行了数值模拟,采用网格连接方法将纵流式换热器管程、壳程中的对流换热与导热2种传热方式进行了耦合。
3.
The text set out from the shell-and-tube heat exchangers,as well as the structure of the heat transfer process,an analysis of shell-and-tube heat exchangers the main way of heat,for heat exchanger shell of the structure optimization,introduced in recent years,shell-and-tube heat exchangers shell-resistance reduction and efficiency technology and related use.
从列管式换热器的结构以及传热过程出发,分析了列管式换热器主要传热的途径,针对换热器壳程结构的优化,介绍了近年来列管式换热器壳程减阻与增效技术的进展及相关使用情况。
4) shell side performance
壳程性能
5) cleaning in shell-side
壳程清洗
6) shell fluid flow
壳程流动
1.
Numerical simulation of shell fluid flow for helical baffle heat exchanger;
在对螺旋折流板管壳式换热器结构和操作条件进行简化的基础上,采用计算流体动力学分析方法建立数学模型,并利用CFD分析软件FLUENT模拟换热器壳程流动特性,得到了换热器壳程流场分布的直观信息。
补充资料:壳程
分子式:
CAS号:
性质:是指流体沿换热器的壳体、管束和挡板之间的空隙自左至右(或自右至左)所流经的距离。
CAS号:
性质:是指流体沿换热器的壳体、管束和挡板之间的空隙自左至右(或自右至左)所流经的距离。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条