boiling heat transfer

英 [ˈbɔɪlɪŋ hiːt trænsˈfɜː(r)] 美 [ˈbɔɪlɪŋ hiːt trænsˈfɜːr]

沸腾传热;沸腾热传递

化学



双语例句

  1. An experimental study on the flow boiling heat transfer and its visualization of water in a rectangular micro-groove horizontally laid;
    引言流动沸腾传热广泛存在于石油、化工、轻工、动力及能源等各个领域,但三相流动沸腾传热的研究极少。
  2. Flow boiling heat transfer mechanism in a three-phase circulating fluidized bed evaporator is analyzed, and then the heat transfer model used for wheat straw black liquor is proposed correspondingly.
    建立了适用于烧碱法麦草浆黑液系统的三相循环流化床传热模型。
  3. Analysis of two-phase flow and boiling heat transfer performance of refrigerant carbon dioxide
    制冷剂CO2两相流动及沸腾传热特点分析
  4. In addition, the application prospect of nanoparticles in the refrigeration system and further research on boiling heat transfer of nanofluids are presented.
    对纳米颗粒在制冷系统中的应用基础研究进行了展望,并指明了纳米流体沸腾传热的研究方向。
  5. Change of bubble behavior in electric field and its effects on boiling heat transfer
    电场中汽泡行为的变化及对沸腾换热的影响
  6. Extensive experiments of steam-water two-phase flow and boiling heat transfer in a vertical helically-coiled tube were carried out in high pressure water test loop of Xi an JiaotongUniversity.
    报导了在西安交通大学高压汽水实验回路上进行的垂直螺旋管内汽水两相流传热试验研究。
  7. For efficiently cooling electronic components, the flow boiling heat transfer performance of FC-72 on micro-pin-finned silicon chips were studied.
    为了提高电子器件的冷却效率,研究了不导电介质FC-72在表面加工有方柱微结构的模拟芯片上的流动沸腾强化换热性能。
  8. At last, several means were listed to decrease or eliminate the hysteresis phenomenon of boiling heat transfer.
    最后总结出了几种减小或消除沸腾热滞后的方法。
  9. Design of Flow Boiling Heat Transfer Experiment System Using Alternative Refrigerant as Working Fluid
    替代制冷剂流动沸腾传热实验台设计建造与探讨
  10. Review of experimental study on in-tube carbon dioxide flow boiling heat transfer characteristics
    二氧化碳管内流动沸腾换热特性实验研究进展
  11. The boiling heat transfer coefficient increases as the inlet velocity increases and the heat flux decreases.
    而沸腾换热系数随流速的增加而增大,随热流密度的增加而减小;
  12. Experimental Observation and Analysis of Enhancing Boiling Heat Transfer with Acoustic Cavitation
    声空化强化沸腾换热的试验观察与分析
  13. Experiments were performed to evaluate the micro-scale flow boiling heat transfer characteristics of acetone flowing through triangular silicon microchannels.
    以丙酮为工质,在三角形截面的硅基微通道内进行了微尺度沸腾传热实验研究。
  14. The study and experiment of saturated liquid nitrogen boiling heat transfer in natural circulation at atmospheric pressure in home made porous layer tube is described.
    试验研究了大气压下自然循环饱和液氮在国产多孔层管内沸腾传热特性。
  15. Pool Boiling Heat Transfer of Carbon Nanotube Suspensions at Sub-Atmospheric Pressures
    低压下碳纳米管悬浮液的池内沸腾换热特性实验研究
  16. Experimental Research in Boiling Heat Transfer and Enhancement of High Concentrated Brine at Low Pressure
    低压下浓盐水沸腾及强化传热的实验研究
  17. Periodical convective boiling heat transfer in a time scale of milliseconds was found.
    发现了周期在毫秒级的微时间尺度的周期性沸腾传热。
  18. The boiling heat transfer of liquid nitrogen in the narrow channels differs from that in pool boiling.
    窄缝通道中的液氮沸腾传热特性有别于开放空间中的情况。
  19. The boiling heat transfer experiment on low finned tube is conducted.
    进行了低肋管沸腾传热试验,试验工质为蒸馏水和R&113;
  20. The thermoacoustic oscillation during film boiling heat transfer in superfluid helium is studied.
    以超流氦为对象,对其沸腾传热过程中的热声振荡现象进行了研究。
  21. The boiling heat transfer characteristics in evaporator and condensing heat transfer characteristics in condenser were studied experimentally and theoretically.
    并对蒸发器内的沸腾传热特性和冷凝段的冷凝换热特性进行了实验研究与计算分析。
  22. This paper presented an experimental investigation to subcooled boiling heat transfer on the declining downward surface.
    对大气压力下倾斜下表面的过冷池沸腾换热进行了实验研究。
  23. Both theoretical analysis and experimental study on boiling heat transfer for threephase flow were carried out.
    对三相流沸腾传热进行了理论分析和实验研究。
  24. Experimental and theoretical investigations on boiling heat transfer in liquid saturated porous bed heated from below are conducted.
    对底部加热的被液体浸透的多孔物料床中的沸腾换热进行了实验和理论分析。
  25. Flow boiling heat transfer characteristics in horizontal smooth tubes and internal grooved tubes of R22 are experimentally investigated.
    本文对氟利昂22在水平光滑管和内螺纹管内的流动沸腾换热特性进行了实验研究。
  26. A semi-analytical model was developed for the prediction of enhanced flow boiling heat transfer in vertical porous tubes.
    在对流动特性和换热机理进行分析的基础上,建立了垂直多孔表面管内高沸点工质强化流动沸腾换热的数学模型和数值计算方法。
  27. The factors with effects on the sub-cooled boiling heat transfer are vapor quality and system pressure.
    影响欠热沸腾传热的主要因素是含汽率和系统压力。
  28. The fundamental characteristics and mechanism of boiling heat transfer are described and discussed.
    探讨和阐述了沸腾传热的基本特征和有关机理。
  29. Saturated flow boiling heat transfer of water in a vertical narrow rectangular channel has been investigated experimentally.
    以水为沸腾工质对竖直矩形窄缝内饱和流动沸腾传热做了实验。
  30. The mini-microchannel scale effect on the flow boiling heat transfer enhancement from the microporous surfaces was investigated.
    研究了微/小通道内的尺度效应对微多孔表面流动沸腾传热强化性能的影响。