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1)  thermal syphon
热力虹吸
2)  thermosiphon pressure
热虹吸压力
1.
Different reasons of thermal performance under two connections were analyzed from thermosiphon pressure.
以国标GB/T18708-2002《家用太阳热水系统热性能试验方法》为依据,针对自然循环平板式太阳能热水系统在连接方式不同的情况下,其热性能的差异进行了对比试验,并从自然循环系统循环动力——热虹吸压力的角度分析了两种连接方式下热性能差异的原因。
3)  thermosyphon ['θə:məu,saifɔn]
热虹吸管
1.
The Study on the Strength of the Pulse Boiling in Thermosyphons;
热虹吸管内脉冲沸腾强度的研究
2.
The Study on the Frequency of the Geyser Boiling in Thermosyphons;
热虹吸管间歇沸腾频率的研究
3.
Experimental Study of Evaporators with Novel Enhancement Structure in Advanced Thermosyphon System;
先进热虹吸管系统中具有新颖强化传热表面蒸发器的实验研究
4)  thermosiphon [英][,θə:məu'saifɔn]  [美][,θɝmo'saɪfən]
热虹吸
1.
Enhancement of heat transfer in vertical thermosiphon tube;
载气强化热虹吸垂直管传热研究
2.
The installation of the thermosiphon oil cooling system
热虹吸油冷却系统:系统安装篇
3.
Theoretical analysis and calculation model of thermosiphon cooling system
热虹吸油冷却系统:数学模型与理论计算篇
5)  thermosiphon [英][,θə:məu'saifɔn]  [美][,θɝmo'saɪfən]
热虹吸管
1.
Experiment of characteristics of thermosiphon heat recovery equipment under summer condition;
热虹吸管能量回收设备夏季工作特性的实验研究
2.
The authors have from a theoretical and experimental viewpoint studied the working characteristics of the evaporation section of a thermosiphon, to which nanoparticles have been added.
提出了在热虹吸管里面添加纳米颗粒。
3.
A new method of enhancing heat transfer of the heating section of a two-phase closed thermosiphon was proposed.
提出了一种新的提高传热的方法———在以水为工作液体的两相闭式热虹吸管中添加一定数量的纳米颗粒 。
6)  thermosyphon ['θə:məu,saifɔn]
热虹吸
1.
The Study of the Thermosyphon Process inside a Cryogenic PH_3 Trapper;
低温捕集器内热虹吸过程研究
2.
Phase-change cooling technique was introduced for high heat flux,including heat pipe,thermosyphon,loop heat pipes(LHP),capillary pumped loops(CPL),and their merits and shortcomings were analyzed;Only LHP and CPL was put forword can replace heat pipe to realize the advanced phase-change cooling,and they are the main stream of the high heat flux cooling for micro electronic chips.
介绍了微电子芯片高热流密度相变冷却技术,包括热管、热虹吸、环路热管、毛细泵吸环路,分析了各自的优缺点,提出LHP和CPL技术是唯一能替代热管技术的先进相变冷却技术,将是今后微电子芯片高热流密度冷却的主要方向。
3.
On the base of thin film evaporation mechanism of the channel, a comprehensive heat transfer model for thermosyphon boiling in narrow channel is developed.
弦月形狭缝通道热虹吸沸腾传热具有明显的传热强化效果 ,以溴化锂水溶液为工质的实验测试表明 ,其传热系数达到5~ 6kW/ (m2 ·K) 。
补充资料:热套式压力容器
分子式:
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CAS号:

性质:高压容器的一种。由内、外两层(或两层以上)圆筒体组成,外层筒体的内半径要求加工得比内层筒体的外半径稍小,即有一个过盈量。装配时,先加热外层筒体使其膨胀,当其内半径稍大于内层筒体外半径时,立即将其套合在内筒体上,冷却后,由于存在过盈量,外筒体无法完全恢复至原来尺寸,从而在内、外层筒体交界面上产生了接触应力,简称套合应力。套合应力对外筒体来说是内压力,对内筒体则是外压力。热套式压力容器较之单层的压力容器的应力分布更为均匀和合理,还可采用厚外筒体,以减少套合的层数,降低成本。

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