efficiency of heat exchanger

英 [ɪˈfɪʃnsi ɒv hiːt ɪksˈtʃeɪndʒə] 美 [ɪˈfɪʃnsi əv hiːt ɪksˈtʃeɪndʒər]

换热器的效率

化学



双语例句

  1. Safety and efficiency of the resistive heat exchanger for HTS high-rated current leads
    电抗值,电阻(率)HTS大电流引线的阻性换热器安全性与效率
  2. The effect on the collector efficiency of using a heat exchanger is analyzed and a "heat exchanger penal factor" is determined;
    分析了换热器对集热器效率的影响,确定了换热器对集热器的削弱因子;
  3. The accumulation of unwanted crystalline deposits ( fouling) reduced the efficiency of heat exchanger considerably.
    污垢的沉积导致换热器的效率降低。
  4. Analysis for Tube-Sheet Layout and Thermal Efficiency of Tube-Sheet Heat Exchanger Experiment and Simulation on Heat Transfer Efficiency of Double-pipe Heat Exchanger for River Water-source Heat Pump
    辩析管壳式换热器的管程分层布管与热效率江水源热泵套管式换热器换热效率的实验研究和模拟分析
  5. Effects of outdoor climate on the efficiency of air-to-air total heat exchanger
    室外气候对空气全热交换器运行效率的影响
  6. The leaking worsens the water quality, results in more sediment and further corrosion, and thus lowers the heat exchange efficiency of the heat exchanger.
    泄漏导致水质恶化,加剧沉积和腐蚀的进一步发生,从而降低换热器换热效率。
  7. The influence of the efficiency of hot-side heat exchanger, the heat conductances of the clod-side exchange and heat leak on the performance parameters of this engine is discussed.
    讨论了高温换热器的效率、低温热导和热漏对热机各种性能参数的影响。
  8. Experimental Research and Analysis of a New Recycle Model Double-source Heat Pump Water Heater Experiment and Simulation on Heat Transfer Efficiency of Double-pipe Heat Exchanger for River Water-source Heat Pump
    一种全新循环模式的双热源热泵热水器试验研究江水源热泵套管式换热器换热效率的实验研究和模拟分析
  9. At the same time, it is concluded that the lower efficiency of heat exchanger is caused by the leakage of gas, which was proved in the following operation of reheating furnace.
    同时发现了换热器效率低的原因主要是由漏烟引起的,这一点也被其后生产实践所验证。
  10. Heat transfer efficiency of heat exchanger used for ONAN transformer is decided by its structure.
    变压器用油浸自冷片式散热器换热效率的提高,主要取决其结构的优化设计。
  11. The efficiency of crossflow plate heat exchanger for indirect evaporative cooling was analyzed by the ε-NTU ( the number of heat transfer units) method.
    采用ε-NTU方法对横流板式间接蒸发热回收器的换热效率进行了分析。
  12. Frosting quality and Analysis on fin efficiency function of heat exchanger surface
    换热器表面结霜的特性与翅片效率公式的分析
  13. Fouling produced in VC manufacturing process make the efficiency of heat exchanger reduced.
    VC生产过程中,物料产生的污垢会降低螺旋板换热器的利用率,制约着整个生产线的产量。
  14. Exergy transfer efficiency of heat exchanger considering pressure exergy loss
    考虑压力火用时换热器的传火用有效度
  15. The technology of passive heat transfer enhancement cannot only improve efficiency of heat exchanger, but also reduce the weight and volume of equipments.
    被动式强化传热技术不仅可以提高换热设备的效率、减少设备的重量和体积,而且无需外加动力消耗,符合节能的要求;
  16. Brief analysis on economical efficiency of total heat exchanger's fresh air system in HVAC
    浅析空调全热式交换器新风系统的经济性
  17. The maximum heat transfer efficiency of micro-channel heat exchanger decreased with increasing operating flux.
    操作流量越大,微通道换热器最大换热效率越低;
  18. The total heat efficiency of total heat exchanger in air-conditioning system is mainly influenced by the sensible heat efficiency under summer conditions in most areas of China.
    夏季工况下,我国大部分地区空调系统中全热换热器的全热效率主要受潜热效率影响。
  19. The paper founded the efficiency computing model of jet heat exchanger and analyzed the effect of operating parameters on efficiency of jet heat exchanger by the calculation of examples.
    本文建立了喷流式换热器的火用效率计算模型,并通过实例计算,分析了各运行参数对喷流式换热器火用效率的影响。
  20. Analyses the thermal parameters of the open air conditioning system introduced with indirect evaporative cooling. Presents a mathematical model to be used in indirect evaporative cooling. Discusses the influence of inlet fresh air relative humidity and efficiency of the heat exchanger to the quantity of humidification.
    将间接式水蒸发空调系统用于交通岗亭中,分析了系统的热力参数,建立了系统的数学模型,分析一次气流进口相对湿度及换热器效率对系统加湿量的影响,并给出计算例子。
  21. Theoretical analysis and improvement on fin efficiency function of heat exchanger surface under frosting
    换热器表面结霜状态下翅片效率公式的理论分析及改进
  22. The efficiency of heat exchanger is considerably increased owing to the evaporation-condensation phase transformation of the cooling medium.
    利用工质蒸发-冷凝的相变过程,提高换热器的工作效率。
  23. Makes comparison experiment of refrigeration capacity, input power and EER between before and after of fresh air introduction with air enthalpy different method, and measures the recovery efficiency of heat exchanger.
    采用空气焓差法对空调器引进新风前后进行制冷量、输入功率、能效比(EER)等的对比实验,并测量了换热器的热回收效率。
  24. The method to determining the optimal switch time of the regenerative heat exchanger was established by the partial differential equation analysing and the efficiency evaluating of the heat exchanger, with the premise of keeping the highest efficiency.
    通过对蓄热式热交换器内部传热方程的数学解析,利用求得的温度分布规律和热交换效率的评价方法,在热交换器效率最高的前提下,得出了关于热交换器最佳换向时间的确定方法。
  25. The heat exchanging ability and heat exchanging efficiency of a heat exchanger have direct and crucial influence on the production and long-term development of those industries mentioned above.
    换热设备的换热能力以及换热效率的高低直接影响到以上各个行业的生产效益和产业发展。
  26. Technologies of heat transfer enhancement, which can improve the efficiency of heat exchanger and reduce the weight and volume of heat exchange equipments, are always attracted by scientists and engineers.
    强化传热技术,由于能使各种换热设备的效率提高、重量和体积减小,一直受到科技界和工业界的重视。
  27. Improve heat transfer efficiency of the heat exchanger and reduce the drilling cost have always been the focus people study.
    提高埋管换热器的换热效率,节约占地,并降低钻井、埋管的初投资一直是人们研究的重点之一。
  28. With the in-depth researches on the vertical heat exchanger, it becomes greatly necessary to set up a more precise heat transfer model in order to further analyze the process of the heat exchange and to find efficient ways to promote the efficiency of the heat exchanger.
    随着对土壤源热泵埋地换热器研究的不断深入,要求建立更精确的传热模型,从而更准确地分析传热过程,找出提高埋地换热器换热效率的有效途径。
  29. The analysis reveals that the factors affect the system performance of the second law are the heat rejection pressure, the outlet temperature of gas cooler, the evaporation temperature, the efficiency of internal heat exchanger and the performance of the compressor.
    分析表明,影响系统第二定律效率的主要因素有气冷器出口温度、蒸发温度、冷却压力和内部热交换器效率以及压缩机效率。