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1)  tube of heat exchanger
换热器列管
1.
A method for quick finding out the leaking tube of heat exchanger in sulfuric acid conversion section is presented in this paper.
针对换热器列管泄漏查找困难的问题,提出了一次性快速查找的方法。
2)  tubular heat exchanger
列管换热器
1.
The analysis of the vibration performance of the large-sized tubular heat exchanger by using the finite element method is presented in the paper.
应用有限单元法分析了大型列管换热器的振动特性,用振型叠加法计算了换热器壳程卡门涡流的动力响应;为大型换热器的可靠性分析、安全运行、延长使用寿命提供了理论依据,并对其延寿运行提出了行之有效的措施。
2.
This paper points out that in calculating heat transfer of tubular heat exchangers, which are designed for heat cxchangc of high temperature gases, radiative heat transfer should be taken into considcration.
针对用于高温气体换热的列管换热器的设计,提出在传热计算中应考虑热辐射问题。
3.
Considering that the application life of heat pipe exchanger is too short in sulfuric acid conversion,combining the causes analysis by demolition and disintegration,this paper adopts the tubular heat exchanger instead of original exchanger,improves the sulfuric acid conversion working condition.
并通过改用列管换热器,使硫酸转化换热工况得到改善。
3)  tubular heat exchanger
列管式换热器
1.
The paper uses design method of structured software and the principle of modulation,integrates the process design principle and method of tubular heat exchanger.
本文利用结构化软件设计方法及程序模块化原理,结合列管式换热器设计的原理和方法,以Microsoft Visual Basic6。
2.
Focused on the low heat transfer efficiency of shell and tube heat exchanger,the tubular heat exchangers as the most typical heat exchangers are taken as the study object.
为解决管壳式换热器传热效率低下的问题,以最典型的列管式换热器为研究对象,建立换热管内置转子组合式强化传热装置的三维模型,模拟换热管内流场、温度场、压力场以及换热过程,得到管内流体的流动规律和传热性能的计算结果。
4)  Shell and Tube Heat Exchanger
列管式换热器
1.
A computeraided typeselection design program of the shell and tube heat exchanger was developed and the complex computational problem in the designing of the shell and tube heat exchanger was resolved by this program.
开发了列管式换热器计算机辅助选型设计程序。
5)  heat exchanging pipe
换热列管
6)  fixed tube sheet heat exchanger
固定管板式(列管)换热器
补充资料:列管换热器
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性质:又称列管换热器。热交换器的一种。主要由换热管、壳体、管板、折流板等部件组成。管子以一定的排列形式固定在管板上,成为管束。小于600mm直径的壳体可直接采用钢管;大直径的壳体则用钢板卷焊而成。管板固定在壳体端部。折流板的作用是引导流体以错流方式流过管束。并可调节板间距以获得最适宜的流速。管壳式换热器有单管程和多管程。也可以把若干个单壳程换热器串联起来组成多管程换热器。管壳式换热器几乎可以满足绝大多数工业部门的需要。

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