1) physical properties
制冷剂物性
1.
Visualization of refrigerant physical properties computation;
制冷剂物性计算可视化的实现
2.
Based on the refrigerant physical properties function,the physical properties computation is visualized,and a convenient and effective tool for the thermodynamics computation and analyse of refrigeration cycle is supplied.
简要介绍了VC++调用Fortran与Matlab混合编程的基本原理,以制冷剂物性方程作为程序计算的基础,实现了制冷剂物性计算的可视化,为制冷剂的热力计算及分析提供了方便、快捷的图形计算工具。
3.
With refrigerant physical properties data graph to compute physical properties is tedious, time-consuming,and error-large.
借助制冷剂物性数据图表,计算制冷剂物性,繁琐,费时,误差大。
2) alternative refrigerants
制冷剂替代物
3) refrigerant hydrate
制冷剂水合物
1.
Research progress of refrigerant hydrate growth property with technology of nano;
纳米技术在制冷剂水合物生长特性中的研究进展
2.
Influencing mechanism of ultrasonic on refrigerant hydrate nucleation and growth was first analyzed and then experimental study was made.
首先分析了超声波对制冷剂水合物成核生长的影响机理,然后进行了实验研究。
3.
Phase equilibrium model of refrigerant hydrate in nano-fluids was developed to study the effects of nano-particles on formation conditions of refrigerant hydrate.
为了研究纳米粒子对制冷剂水合物热力学生成条件的影响,建立了新型纳米流体中制冷剂水合物相平衡热力学模型,理论研究了HFC134a(R134a)气体水合物的热力学生成条件,并用实验验证了模拟结果。
4) Alternative refrigerant
制冷剂替代物
1.
Phase equilibria properties of alternative refrigerant have been researched by using the method of molecular dynamic simulation.
本文利用分子动力学模拟算法研究制冷剂替代物的气液相平衡性质。
5) cryogen refrigeration
冷剂制冷
1.
In order to improve the NGL recovery rate for some condensate gas fields, which had high pressure gas source and there was no differential pressure for utilization, this paper put forward a cryogen refrigeration-oil absorption combination process to recover NGL on the basis of cold oil absorption theory.
为了进一步提高天然气凝液装置的产品收率,本文针对凝析气田中气源压力高,无压差可利用的工况条件,应用冷油吸收原理,通过工艺流程模拟分析与研究,确定了冷剂制冷-油吸收复合凝液回收工艺原理流程。
6) flammable refrigerant
可燃性制冷剂
1.
Study on influence of test methods for determining explosion limits of flammable refrigerants;
测试方法对可燃性制冷剂爆炸极限影响的研究
补充资料:制冷剂与载冷剂
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条