condensing temperature

英 [kənˈdensɪŋ ˈtemprətʃə(r)] 美 [kənˈdensɪŋ ˈtemprətʃər]

网络  冷凝温度

化学



双语例句

  1. The utility model can effectively reduce the condensing temperature and increase the refrigeration efficiency.
    本实用新型能有效降低冷凝温度,提高了制冷效率。
  2. Multi-Pressure condenser; Mean condensing temperature Number of entropy generation Optimization;
    多背压凝汽器;平均冷凝温度;熵产生数;优化;
  3. Thermal analysis of CO_2/ NH_3 cascade system and optimization of condensing temperature
    CO2/NH3复叠系统热力分析与冷凝蒸发器冷凝温度的优化
  4. Measure suction and liquid line temperatures simultaneously, temperatures across condensing coils, as well as the ambient temperature, all at the same time!
    同时测量抽水管、冷凝管、蒸汽管的环境温度和管道温度。
  5. A gas condensing boiler is also installed, and is fitted with an outside temperature compensating controller.
    另外,还安装了蒸汽冷凝锅炉,并且装有室外温度补偿控制器。
  6. Analyses the influence of evaporating temperature, condensing temperature, rotating speed and speed ratio on the operating characteristics of the unit.
    分析了蒸发温度、冷凝温度、转速和转速比对机组整体运行特性的影响。
  7. The performance of the 2 tube rows condenser is better than that of the 3 tube rows condenser. The volume flow of the air which passed through the condenser increases 23.1%, The condensing temperature decrease 10.1 ℃ and COP of the air conditioner rises 26.7%.
    2排管冷凝器的性能优于3排管的,风量增多23.1%,冷凝温度降低10.1℃,空调器的COP升高26.7%。
  8. Discussion about the Effect of Condensing Inlet Air Temperature on the Refrigerating Capacity of Self Contained Air Conditioning Set
    冷凝进风温度对单元式空调机组制冷量的影响
  9. It is concluded that the evaporating and condensing temperature have effect on the performances of unit tube, and should be rational matching.
    结果表明,蒸发温度和冷凝温度在吸附循环过程中对单管性能影响较大,应合理加以匹配。
  10. Discussion of the condensing temperature in the standard of SCREW REFRIGERANT COMPRESSORS
    《螺杆式制冷剂压缩机》标准中冷凝温度的探讨
  11. The effect of reaction temperature, reaction pressure, catalyst concentration, ammonia circulation rate, condensing temperature on fatty nitriles reaction rate, yield, energy demand are discussed.
    讨论反应温度、反应压力、催化剂的浓度、氨循环速率、冷凝温度对脂肪晴的反应速率、得率、能量消耗的影响。
  12. A COP of 0.182 can be achieved at generating temperature 90 ℃, evaporating temperature 0 ℃ and condensing temperature 34 ℃.
    在发生温度90℃、蒸发温度0℃、冷凝温度34℃的条件下,系统COP可以达到0.182。
  13. This paper analyses the energy consumption of evaporative condenser compared to shell-tube water-cooling condensers under the same condensing temperature and same heat load condition.
    本文分析了蒸发式冷凝器和水冷式冷凝器在同一冷凝温度下对应于相同冷凝负荷的能耗量。
  14. The condensing temperature attached no remarkable influence on the content of indirubin but condensing volume and drying temperature did.
    浓缩温度对靛玉红含量没有显著影响,但浓缩体积和干燥温度对靛玉红含量有显著影响。
  15. A higher evaporating temperature and lower condensing temperature will obviously improve the system performance.
    蒸发温度的升高和冷凝温度的降低能显著提高循环的性能;
  16. The water-lithium bromide-lithium nitrate absorption refrigeration cycle is compared with the traditional water-lithium bromide system. The effect of generating temperature, condensing temperature and evaporating temperature on system performance is analyzed.
    比较了水溴化锂硝酸锂三元工质与传统的水溴化锂工质的单、双效吸收式制冷循环,分析了发生温度、冷凝温度和蒸发温度对系统性能的影响;
  17. By calculating, the optimum coefficient of gas bleed was 2. 22% in the system using NH3, and the critical coefficient of gas bleed decreases with the increasing of the evaporating temperature without relations with the condensing temperature.
    通过计算,得出了氨制冷系统的最优抽气系数在2.22%,而临界抽气系数则随蒸发温度升高而减小,几乎不随冷凝温度变化而变化。
  18. And when giving the evaporating temperature and condensing temperature, the increasing mass fraction of CO2 enhance refrigerating output by unit mass refrigerant and compression ratio.
    在一定的冷凝温度和蒸发温度下,随着混合制冷剂中CO2的质量分数增加,循环单位制冷量和压力比都增大;
  19. The mass flow rate varies with the inner diameter and the length of adiabatic capillary tubes, the degree of subcooling and the condensing temperature were investigated.
    用模型研究了通过毛细管的制冷剂质量流量随毛细管的内直径、长度、冷凝温度和蒸发温度的变化关系。
  20. Adjustment of Condensing Pressure in Low Temperature
    低温环境下的冷凝压力调整
  21. System and entropy the influence of condensing temperature on drying speed in hermetic heat pump dryer
    全封闭热泵干燥系统冷凝温度对干燥能力的影响
  22. Assuming the condensing curve had been acquired, the condensing temperature model was established by deducing the coolant temperature distribution in graphical method, according to the proportional relationship between the temperature and heat load in the condensing side.
    冷凝温度分布模型是假设得到冷凝曲线后,通过温度和热负荷的比例关系,用图解法推导冷却剂侧的温度分布。
  23. To achieve energy simulation of variable evaporation temperature and condensation temperature control mode of VRF system, using the experimental data obtained based on the performance curves to simulate the VRF system when changing the evaporation temperature and the condensing temperature.
    为实现变蒸发温度和冷凝温度模式下的能耗仿真,利用了基于实验数据拟合而得到的性能曲线来模拟VRF系统在改变蒸发温度和冷凝温度情况下的能耗,具有广泛的适用性。
  24. After transformation, the condensing temperature can be reduced much more. And it solves the problem that the cooling system cannot normally work in summer.
    改造后的流程大大降低了冷凝温度,解决了制冷系统在夏季不能正常工作的问题。
  25. Condensing temperature, water temperature, and air conditioning loads were analysed which are key factors influencing condensation heat utilization.
    对影响冷凝热利用的关键因素:冷凝温度、热水温度和空调负荷进行了分析,并论证了它们是如何影响冷凝热利用的。
  26. Evaporating temperature and condensing temperature and condensing heat load have inverse relationship, and degree of undercooling and overheating have little effect on condensation heat load.
    蒸发温度和冷凝温度与冷凝热负荷呈反比关系,而过冷度和过热度对冷凝热负荷影响不大。
  27. Basing on the PV-SAHP experimental setup and system simulation, system performance and system optimization under the influence of solar radiation, condensing water temperature, compressor frequency, glass cover and other factors were studied in this work.
    以PV-SAHP系统实验台为基础,结合系统模型,本文进行了辐照强度、冷凝水温、压缩机频率、玻璃盖板等多种参数对PV-SAHP系统性能的影响和优化研究。
  28. Especially in the condensing process, the temperature, vapour-liquid compositions and vapour fractions of fluids might change, which would result in different flow patterns from inlet to outlet of the condenser.
    尤其是冷凝过程,流体的温度、气液相组成及气相分率等都会发生较大的变化,可能形成进口到出口之间几种不同的流型状态。