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1)  heat transfer augmentation
换热强化
2)  heat transfer enhancement
换热强化
1.
Natural convection heat transfer enhancement by gradient magnetic field;
梯度磁场作用下自然对流换热强化
2.
This paper analyzes the convective heat transfer enhancement mechanism of latent functionally thermal fluid.
本文分析了潜热型功能热流体强化换热的物理机制,并基于等效比热模型,对等热流条件下圆管内该类流体层流流动换热强化的各因素进行了敏感性分析。
3.
Experimental results show that the structured surface tubes increase the average heat transfer coefficients three to ten times than the same case of the smooth tubes in the low heat flux regions and have a very effective heat transfer enhancements.
发现在低热负荷条件下,加工管束的平均换热系数比光滑管提高了3~10倍,具有显著的换热强化作用。
3)  enhanced heat transfer
换热强化
1.
Experimental results denote that compact tube array has a good enhanced heat transfer performance under low heat flux and small pitch of tubes.
确认了在低热负荷条件下能够实现沸腾换热,并具有很好的换热强化效果,同时对紧凑式排列管束沸腾、套管内有限空间沸腾和降膜式强制对流进行比较。
4)  Enhanced Heat Transfer
强化换热
1.
An Experimental Study on the Enhanced Heat Transfer of the Plane Plates in the Rectangle Longitudinal Vortex Generators;
矩形纵向涡发生器平板强化换热的实验研究
2.
This paper presented influence of factor on film cooling,enhanced heat transfer in tunnel and heat pipe cooling,how to apply and development for these technologies.
详细地阐述了对气膜冷却、内部强化换热以及热管冷却等的影响因素,目前的应用状况以及发展前景。
3.
The experimental results show that the compact in-line tube bundles have a significant enhanced heat transfer than those of the common tube bundles, and there is an optimum tube spacing that provides a most enhanced heat transfe.
在低压条件下对水平光滑顺排管束的小空间内沸腾强化换热特性进行了实验研究,确认了管距、管位置和运行压力对强化换热性能的影响。
5)  heat transfer enhancement
强化换热
1.
Experimental study in natural convection heat transfer enhancement;
竖直平板自然对流强化换热的实验
2.
Numerical investigation on mechansim of heat transfer enhancement with fields synergism theory for dimpled surface;
丁胞结构强化换热机理的场协同分析
3.
Study of heat transfer enhancement in horizontal rectangular channel with staggered holed baffles;
水平矩形通道内开孔折流板强化换热的实验研究
6)  enhancing heat transfer
强化换热
1.
A new method of enhancing heat transfer in grinding contact zone with jet impinging is presented on the basis of analysis on the mechanism of workpiece burn in creep feed grinding.
实验结果表明,射流冲击强化换热技术确是提高弧区换热效率的有效方法,且射流速度越高,换热效果越好。
2.
Experimental results show that the technology of enhancing heat transfer through jet impinging is valid to raise the effici.
实验结果表明,射流冲击强化换热技术确是提高弧区换热效率的有效方法,将在解决难加工材料磨削烧伤方面具有广阔的应用前
补充资料:蓄热式换热
分子式:
CAS号:

性质:工业中的换热方式之一。利用固体填充物贮蓄热量以达到换热目的。当气体通过时,根据气体的温度高于或低于填充物的温度,可将热量传给填充物或从填充物吸取热量。常用于冶金工业,也用于化学工业等。例如炼钢平炉和煤气炉常用来预热空气等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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