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1)  looped pulsating heat pipe
环路型脉动热管
1.
The model of operational mechanism is established to describe the steady state self-excited circulation flow of looped pulsating heat pipe (PHP).
建立了环路型脉动热管稳态自激循环流动运行机制的物理模型和数学模型。
2)  loop pulsating heat pipe
回路脉动热管
1.
Steady state circulation flow analysis of loop pulsating heat pipe;
回路脉动热管运行稳定性分析
3)  Active Loop Heat Pipe (ALHP)
主动式环路热管
4)  Loop heat pipe
环路热管
1.
Steady state modeling of loop heat pipes and operating characteristics analysis;
环路热管稳态建模及运行特性分析
2.
Experimental investigation on temperature oscillation of loop heat pipes;
环路热管温度波动现象的实验分析
3.
State-of-the-art of ground-experiments of loop heat pipe;
环路热管的地面实验研究现状
5)  pulsating heat pipe
脉动热管
1.
Advances in pulsating heat pipe and its heat transfer characteristics;
脉动热管及其传热特性影响因素研究进展
2.
Experimental investigation on flow and heat transfer of pulsating heat pipe;
环路型脉动热管的工质流动和传热特性实验研究
6)  pulsating heat pipes
脉动热管
1.
With the miniaturization of electronic components and equipments, their heat transfer make pulsating heat pipes which are new and high efficiency heat transfer components gain more and more study.
日益小型化的电子器件和设备的散热问题促使脉动热管这种新型高效的传热元件得到越来越广泛的研究。
2.
Adopting R123 as the working medium,the effects of liquid filling ratio and heating mode on heat transfer limit were qualitatively analyzed on the open loop pulsating heat pipes test fig consisted of 40 elbows bent by fine copper tubes with inner diameter of 1 mm and 2 mm,and the experimental values were compared with calculated values by the Katpradit\'s correlations for heat transfer limit.
在由内径分别为1 mm和2 mm的细铜管弯曲而成的2组40弯头开式回路脉动热管试验装置上,采用R123为工作介质,定性分析了充液率及加热方式对传热极限的影响,并将试验值与Katpradit传热极限关联式的计算值进行了比较,结果表明:随着充液率的提高,传热极限先增大而后减小,存在一个最佳充液率(约50%);在3种加热方式中,垂直底部加热有助于脉动热管取得较大的传热极限值,而垂直顶部加热则对应较小的传热极限值。
3.
The structural and operational characteristics between two kinds of pulsating heat pipes(PHPs) were compared.
对圆管式及方槽板式脉动热管试验进行了结构及运行特性的比较。
补充资料:安培环路定律(见磁场强度)


安培环路定律(见磁场强度)
Ampere's circuital law

  A rlpe{h口。)11L一dingILJ安培环路定律(Amp之re’5 CirC。ital law)见磁场强度。
  
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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