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1)  heat exchanger with curve-ROD baffle
波形折流杆换热器
1.
An industrial investigation of heat exchanger with curve-ROD baffle was carried into execution.
波形折流杆换热器的传热性能和壳程流体阻力性能进行了工业实验研究,管程流体为工业热醋酸,壳程流体采用循环冷却水。
2)  diamond rodbaffle heat exchanger
菱形折流杆换热器
1.
Study of heat transfer in diamond rodbaffle heat exchanger;
菱形折流杆换热器传热研究
3)  Rod-Baffle Heat Exchanger
折流杆换热器
1.
Computer Aided Concept Design Method of the Rod-Baffle Heat Exchangers;
折流杆换热器的计算机辅助概念设计方法
2.
A new numerical simulation method for rod-baffle heat exchanger;
折流杆换热器数值模拟新方法
4)  Baffle Rod Heat Exchanger
折流杆换热器
1.
A brief account is given of the use for the first time of a baffle rod heat exchanger on the low pressure heater of a thermal power plant.
简述了折流杆换热器在火力发电厂低压加热器上的应用 ,其优点表现在传热效果好 ,流体阻力小 ,换热器抗腐蚀性、抗冲击性、抗振性增强。
5)  RODbaffle heat exchanger
折流杆换热器
1.
The paper introduces the type of RODbaffle used in the falling film evaporator in distilling tower of turpentine, puts forward the heat transfer maths model, and makes a detail analysis of the structure of RODbaffle heat exchanger.
列出其传热的数学模型 ,较为详细地分析了折流杆换热器的结构。
2.
Development,structure and specific characteristics of Rodbaffle heat exchanger are introduced briefly.
简要介绍了折流杆换热器的研究进展、结构特征和特性。
3.
In this paper, the prospect for applications of thin tubesheet of RODbaffle heat exchangers is expounded.
阐述薄管板在折流杆换热器中的应用前景,并利用应力分析设计方法,研究薄管板的应力分布及应力评定。
6)  rod baffle heat exchanger
折流杆换热器
1.
Feasibility study of rod baffle heat exchanger with inner annular distributor;
内导流筒折流杆换热器可行性研究
2.
The Application of Rod Baffle Heat Exchanger in Nuclear Power Plant
折流杆换热器在核电站中的应用
3.
The shell side of the rod baffle heat exchanger is so complicated that the flow field and enhanced heat transfer mechanism of the shell side cannot be commentated by the theoretical method.
折流杆换热器壳程结构复杂,用理论方法难以获得壳程流体流动和强化传热机理。
补充资料:折流杆式换热器
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性质:属新型管壳式换热器的一种。克服了传统管壳式换热器因装有折流板而存在的流体多向折流后流动阻力大,流动中易形成“死滞区”,很容易造成管子间的流体诱导振动的问题。具体结构中图所示,在换热器的壳程内,沿管束的垂直方向,按定距设置4个金属环圈(又称折流圈),圈上焊有多根杆条(又称折流杆),杆的直径等于管子间的间隙量,把管子从多方向夹持。折流圈都固定在支承杆上,组成整组折流杆结构。由于采用折流杆以代替传统的折流板,其显著的优点是:在相同传热量的条件下,流体流过管束时,把横向流动基本上变成了轴向流动,消除了原有的传热“死滞区”,其压力降大大地减小,且不易结垢,特别是可十分有效地消除诱发振动。已广泛地应用于石油化工生产上。

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