冷凝温度的英文
发音:
"冷凝温度"怎么读用"冷凝温度"造句
英文翻译手机版
- conde ing temperature
- condensation temperature
- condensationtemperature
- condensing temperature
- condensingtemperature
- liquefaction temperature
- "冷凝"英文翻译 condensate; condensation
- "温度"英文翻译 temperature
- "绝热冷凝温度" 英文翻译 : adiabatic condensation temperature
- "临界冷凝温度" 英文翻译 : cricondentherm; critical condensation temperature; critical-condensation temperature; true condensing point
- "外壳冷凝温度" 英文翻译 : screen condensation temperature
- "冻凝温度" 英文翻译 : congealing temperature; congelation temperature
- "胶凝温度" 英文翻译 : gelatinization point
- "临界胶凝温度" 英文翻译 : critical gelling temperature
- "临界絮凝温度" 英文翻译 : critical flocculation temperature
- "冷凝器温度" 英文翻译 : condenser temperature; condensertemperature
- "冷凝水温度" 英文翻译 : condensate temperature
- "冷凝剂用温度计" 英文翻译 : cryogenic thermometer
- "冷凝器出口温度" 英文翻译 : condenser offtake temperature
- "冷凝水出口温度" 英文翻译 : condensing water outlet temperature
- "冷凝水进口温度" 英文翻译 : condensing water inlet temperature
- "冷凝" 英文翻译 : condensate; condensation◇冷凝点 condensation point; 冷凝物 condensate; 冷凝装置 condensing unit; condensing works
- "冷凝,冷凝液" 英文翻译 : condensation
- "温度" 英文翻译 : [物理学] temperature 绝对温度 absolute temperature; 室内温度 indoor temperature; 室外温度 outdoor temperature; 最低温度 minimum temperature; 最高温度 maximum temperature; 温度标 scale of thermometer; 温度表 thermometer; thermograph; 温度差 temperature difference; 温度异常 temperature anomaly
- "倒冷凝" 英文翻译 : retrograde condensation
- "激冷,冷凝" 英文翻译 : chill
- "急冷凝" 英文翻译 : quench condensation
- "冷凝;冻结" 英文翻译 : freezing
- "冷凝氨" 英文翻译 : condensing ammonia
- "冷凝板" 英文翻译 : chill plate; cold plate
- "冷凝泵" 英文翻译 : conde ate extractio ump; conde atepump; condensate extraction pump; condensate extractionpump; condensate pump; condensatepump; condensation pump; condensationpump; condenser pump; cryopump cryogenic pump; hot-well pump
例句与用法
- Adiabatic condensation temperature
绝热冷凝温度 - C . the condensation temperature has negligible effect on the mean heat transfer coefficient at a same oil concentration
同一含油率下,冷凝温度对平均换热系数几乎没有影响。 - C ) the condensation temperature has negligible effect on the mean heat transfer coefficient at a same oil concentration
C )同一含油率下,冷凝温度对平均换热系数几乎没有影响。 - In the condition of same condensation temperature and evaporating temperature , the cop of the basic gax cycle is lower than that of the simplicity cascade cycle , but it is greatly better than the mid - pressure double - effect cascade cycle , on the other hand , the work condition is not as rigor as the simplicity cascade cycle , so the ratio of performance and cost is relatively high
在相同的冷凝温度和蒸发温度下,基本gax循环的性能系数( cop )虽然比单纯复叠循环的低,但要远远优于中压双效复叠循环,而且运行的条件不象单纯复叠循环那样苛刻,故基本gax循环的性价比较高。 - Eev should be selected for various refrigeration systems according to the thermal properties of refrigerants ; the discharge coefficient of eev is sensitive to the aperture and impulse quantity of eev ; when the eev structure is made , the discharge coefficient goes up with the lowering of evaporation temperature or goes down with the hoisting of the condensation temperature . it is le
对于不同工质的冷藏集装箱制冷系统,电子膨胀阀应该根据具体制冷剂的热力性质选取;电子膨胀阀流量系数对孔径和脉冲数比较敏感;在结构固定时,流量系数随蒸发温度的降低而升高,随冷凝温度的增加而增大,受过冷度变化的影响较小;电子膨胀阀的容量受孔径影响最大。 - The analysis indicates that in the absorbing refrigeration cycle using tfe - tegdme working fluid under the same evaporating temperature and condensation temperature , the performance of the simplicity cascade cycle is the best while the heat burden of the generator is the maximum , the performance of the mid - pressure double - effect cascade cycle is the worst while the heat burden of the generator is higher than the basic gax cycle
分析结果表明,采用以tfe - tegdme为工质吸收式制冷循环,在同样的蒸发温度和冷凝温度下,单纯复叠循环性能最为优越,但发生器的热负荷也最大;中压双效循环性能最差,而且发生器的热负荷要比基本gax循环大,运行的经济性差。 - The peng robinson cubic equation of state ( pr eos ) is used to calculate thermodynamic properties of frequently used refrigerants ( r12 , r22 , r502 ) and prospective alternatives refrigerants ( r134a , r152a , r125 ) and mixed - refrigerants ? the result of using cfc and hfcs refrigerants is contrast to the result of mixed - refrigerants in ideal single - press circle at lower evaporating temperature
在单级和双级两种不同制冷循环下,研究了不同制冷工质在变蒸发温度及变冷凝温度的循环性能。本文采用状态法? pr方程计算常用的制冷工质( r12 、 r22 、 r502 ) 、有希望的替代物( r134a 、 r152a 、 r125 )和混合工质的热力学性质。
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