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热虹吸管的英文

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"热虹吸管"怎么读用"热虹吸管"造句

英文翻译手机手机版

  • thermal siphon
  • thermosiphon
  • thermosyphon

例句与用法

  • Design of cryogenic thermal siphons
    低温热虹吸管的设计
  • The influence of the vapor amount from the controlled evaporation area to the performance of the thermosyphon is studied theoretically
    本文从理论的角度,定性地分析了受蒸发面积控制的蒸汽生成量对热虹吸管启动性能的影响。
  • The tsot has a great change in its structure compared with original heat pipe . it has a small hole on its top and several holes at the side of cooling section
    这种热管在构造上与一般的重力热管相比有较大的改变:热管本体顶端开孔,侧端切向对称开孔,因此称为“切向漩流两相半开式热虹吸管” 。
  • On the basis of present papers about semi - open thermosyphons , the heat transfer characteristics of the turbulence semi - open thermosyphon ( tsot ) were investigated both experimentally and theoretically
    在前人有关重力热管和半开式重力热管的试验研究和理论研究的基础上,本文对一种新型的热虹吸管进行了传热性能研究。
  • This paper combines a liquid self - circulating radiator and flat heat pipe radiator , utilizes thermosiphon and self - circulating refrigeration principle , designs and produces a new form of heat pipe radiator
    本文结合液体自循环冷却系统和扁平热管散热器,利用热虹吸管原理以及液体自循环冷却原理,设计并制造出一种新型的热管散热装置。
  • The optimum inclination angle is between 15 ~ 20 , the length of thermosyphon will not change the phase - change heat transfer coefficient of the evaporation section and the condensation , which will enlarge heat transfer area of thermosyphon and increase the heat exchange capacity . the head - on speed of wind only stranger the heat transfer of the evaporation section and the condensation section . the experiment shows that the mathematic model closely fits to the thermosyphon , moreover , the one key to resolve the thermosyphon effect lies in decreasing the thermoresistance of evaporating section and condensation section . this study can provide directions and experience in the future research
    倾斜角越大,热虹吸管总热阻越大,最佳倾角在15 20之间;充液率过多或过少都会对传热性能产生不利影响,对于本实验采用的1 . 75m 、 2m 、 2 . 5m 、 3m热虹吸管,最佳充液率在20 % 35 %之间;管长对传热也有影响,管长不改变热虹吸管蒸发段和冷凝段的换热系数,只增加了热虹吸管的换热面积,增大换热量;迎面风速的大小,起到强化热虹吸管蒸发段和冷凝段换热的目的。
  • The main results in this paper are as follows : ( 1 ) study on starting up performance of thermosyphon : according to the study on the states before and after starting up of thermosyphon with the various filling amount , it is considered that the phase change heat transfer inside the copper - water thermosyphon with a large ratio of length and diameter is not only influenced by the boiling degree of superheat , but also controlled by evaporation and companied with the boiling of the thin liquid film
    本文的主要研究结果为: ( 1 )热虹吸管启动性能的研究:通过对从不同充液量、启动前状态、内部汽化核心状态对启动的影响所进行的试验研究,认为大长径比的铜?水热虹吸管管内相变不仅仅为沸腾,而是以蒸发为主,伴有薄液膜的沸腾。
  • Abstract : visual experiment was carried out for the enhanced boiling heat transfer in evaporation region of thermosyphon . analysis had been carried out to test the results . a physical model describing an enhanced boiling heat transfer in evaporation region were proposed based on the analysis results , thus providing theory references for development of heat pipe technology
    文摘:通过对热虹吸管蒸发段强化传热进行可视化实验研究并对其结果进行分析讨论,在此基础上建立了热虹吸管蒸发段强化传热物理模型,为热管技术的发展提供理论依据
  • It has a bright prospect for application . however , application of the heat pipe applied in the air - conditioning system just begins and there are still flaws abouts it which need to be improved . in this paper , associating heat feature of air - conditioning system with running environment , an inclined gravity heat pipe as the structure of the heat pipe heat exchanger in air - conditioning system will be studied
    热管作为一种高效的传热元件,有着诸多优点,但就目前而言,热管用于空调系统能量回收利用的应用还处于推广阶段,本论文结合空调系统运行的环境,研究应用于空调系统的倾斜式重力热管,它可以根据空调系统室外新风的季节变化,通过调节热虹吸管的倾斜角度,实现全年的排风能量回收。
  • The evaporation section and the condensation section of the heat pipes can ben changed as the temperature of the outdoor air varies . so the heat pipe can be operated through the whole year . after analyzing the characteristics of energy recovery in air - conditioning system , associating heat feature of air - conditioning system with running environment
    分析了空调系统排风能量回收的特点后,作者结合空调系统运行环境,建立了该传热装置的数学模型,结果表明:热虹吸管的倾斜角、充液率、管长和迎面风速对热虹吸管的传热都有重要影响。
  • 更多例句:  1  2
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