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1)  Nitrogen and hydrocarbon mixed refrigerant
氮烃混合工质
1.
Nitrogen and hydrocarbon mixed refrigerants have been widely used in J-T coolers for the larger refrigerating capacity.
氮烃混合工质由于有较大的制冷量,在节流制冷器中已广泛应用,然而它的制冷温度却较高,在使用中受到一定的限制。
2)  the industrial mixed olefins
工业混合烯烃
3)  refrigerant mixture
混合工质
1.
Theoretic analysis of a refrigeration cycle with refrigerant mixture air/water;
空气/水混合工质制冷循环理论计算
2.
Research on the Heat Pump Systems in Saving Energy Using Nonazeotropic Refrigerant Mixtures;
非共沸混合工质热泵系统节能机理研究(英文)
3.
The composition change of two refrigerant mixtures due to the different solubility of refrigerant in lubricant 3GS were measured at temperature between 36 and 100℃and pressure between 157.
建立了气液溶解平衡实验装置,研究润滑油溶解对低温混合工质浓度的改变。
4)  mixtures [英]['mikstʃə]  [美]['mɪkstʃɚ]
混合工质
1.
Functioning Mechanics of Mixtures in Thermoacoustic Refrigeration;
混合工质在热声制冷中的作用机理
2.
Experimental Studies on Vapor Pressures of New Refrigerants and Composition Analyses of Binary Hydrofluorocarbon (HFC) Mixtures;
新工质饱和蒸气压实验研究及混合工质的组分分析
3.
The thermodynamic characteristics of the thermo-acoustic system with the helium-argon mixtures as working fluid were investigated thoroughly in a self-built test rig of Standing-Wave Thermo- acoustic Engine.
在自行研制的"驻波型热声发动机试验平台"上,对采用He/Ar混合工质的驻波热声发动机系统的热力特性进行了详细的试验研究。
5)  mixed-refrigerant
混合工质
1.
Experimental Research on A New Type of Mixed-refrigerant Refrigeration Cycle at 70K Range;
70K温区混合工质分凝分离循环节流制冷机实验研究
2.
Experimental research on mixed-refrigerant of using segregation Linder refrigerator with pre-cooling cycle at 120K temperature range;
120K温区混合工质采用带预冷的分凝循环林德制冷机的实验研究
3.
But the throttle unit can t adapt to the refrigeration system, especially the changing work conditions of the refrigeration system with mixed-refrigerants, lead the efficiency of the refrigeration syst.
为此,针对深冷多元混合工质节流制冷系统的变工况运行情况,设计出了一种能够根据节流前后的压差,自动调节循环流量的自适应节流阀。
6)  mixture refrigerant
混合工质
1.
Theoretical and Experimental Study on Thermodynamic Properties of Fluoroethane and Its Mixture Refrigerants;
氟乙烷及其混合工质热力性质的理论和实验研究
2.
Three methods of calculating condensation heat transfer coefficient of mixture refrigerants were compared.
对混合工质凝结换热系数常用的三种计算方法作了分析比较 ,同时利用收集到的混合工质局部凝结换热系数的实验数据 ,对文献中给出的计算式以及用Bell-Ghaly法计算的准确度作了对比 ,得出了在工程实际应用中采用Bell-Ghaly法时 ,液膜热阻用修正Shah公式计算的准确度较好的结
3.
Based on the bubble point and dew point data of mixture refrigerant HFC152a/HCFC22, the interaction coefficient of Peng Robinson equation, which is suitable to calculate the mixture thermodynamic properties, was determined, and the pressure enthalpy diagram and the saturated properties were made.
根据现有的HFC152a/HCFC2 2的泡、露点实验数据 ,拟合出适用于计算其热力学性质的Peng Robinson方程的二元交相作用系数 ,并由此制作了混合工质HFC152a/HCFC2 2 (质量分数为85% /15% )的压焓图及饱和性质表 。
补充资料:芳香烃混合物溶剂K
CAS:67167-66-2
中文名称:芳香烃混合物溶剂K
英文名称:Shellsol K
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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