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1.
Discussion on the Structure Design Method of Air Cooled Condenser Platform;
空气冷凝汽器平台结构设计方法探讨
2.
The Chemical Components in Air Condensate Water at Different Urban Regions
城市不同区域空气冷凝水的化学组成
3.
Simulation and Research of Control System onAir-to-Water Condensate Machine
空气冷凝取水装置控制系统仿真研究
4.
Calculation, Research & Analysis on Air-Cooled Condenser Platform for Large-Size Thermal Power Plant;
大型火力发电厂空气冷凝器平台计算研究分析
5.
condenser air cooling
(空气冷却) 冷凝管
6.
condenser steam, air-cooled
蒸汽、空气冷却冷凝器
7.
Research on Air Flow Resistance in Direct Air-cooled Condensers
直接空冷凝汽器空气流动阻力的研究
8.
condensation of moisture on a cold surface.
在寒冷表面凝结的空气水份。
9.
Numerical Simulation and Optimization of Cooling Air Flow through Automobile A/C Condenser
轿车空调冷凝器冷却气流数值模拟计算及优化
10.
Numerical Simulation of Air Flow and Heat Transfer Characteristics in Air-Cooled Condenser
空冷凝汽器空气流动传热特性的数值模拟
11.
Analysis on the flow resistance characteristics of direct air cooled condenser at the air side
空气侧直接空冷凝汽器流动阻力特性分析
12.
The non-condensable gases accumulate near the top of the secondary condensing bundles and are drawn into the air take-off manifolds running along the top of these secondary bundles.
不可冷凝的气体在二次冷凝管束顶部附近汇集,被吸入二次冷凝管束顶部布置的空气集管内。
13.
Water vapor in the rising warm air condenses to liquid water.
上升的暖空气中的水蒸气冷凝成液体的水。
14.
Water vapour m the mr is condensed when the mr is cooled enough.
当空气充分冷却时,其中的水蒸气便凝结了。
15.
These manifolds are connected to the vacuum system through air take-off lines in order to remove the non-condensable gases from the condenser.
这些集管通过空气管线与抽真空系统相连,以便从空冷凝汽器内抽走不可冷凝的气体。
16.
"There, cooler air condenses the refrigerant and becomes heated during the process."
在那里,较冷的空气使冷冻剂冷凝,并在此过程中变热。
17.
Effect of Air-circulating and Condensation Dehumidification inside Greenhouse in South China
南方温室内空气循环式冷凝除湿效果研究
18.
R & D of A NewType of Combined Cooling Condenser with Water and Air
全新型水与空气组合式冷凝器的研究开发