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1)  auto-cascade
自动复叠
1.
Design of an auto-cascade R14/R22 refrigeration system;
R14/R22自动复叠制冷系统设计
2.
Experimental Study on Throttle Opening in Auto-cascade Refrigeration System;
自动复叠制冷循环中节流阀开度的试验研究
3.
An Experimental Study on Auto-Cascade Refrigeration System with a Rectification Column;
具有精馏装置的自动复叠制冷循环试验研究
2)  Auto-Cascade Refrigeration cycle
自动复叠制冷
1.
Experimental study of influences of mass fraction of mixtures on Auto-Cascade Refrigeration cycle;
混合工质配比对自动复叠制冷循环影响的试验研究
3)  automatic overlay
自动改(叠)印<复>
4)  auto-cascade refrigeration
自动复叠制冷
1.
Discuss on Auto-cascade Refrigeration System
自动复叠制冷循环方式的探讨
2.
The author invents a new theory about auto-cascade refrigeration,and makes a small-scale prototype,which proves the theory is correct.
自动复叠制冷可以比两级压缩在-60℃左右制冷时节能30~50%。
5)  autocascade
自然复叠
1.
According to the simulation results of -40℃ freezer with autocascade refrigeration system using zeotropic refrigerant mixture of R744/R717, the feasibility of this system on how to deal with temperature change of cooling media and avoid superheat of compressor is investigated after analyzing system characteristics under various operating conditions.
针对非共沸环保混合制冷剂(R744/R717)自然复叠制冷-40℃冷柜模拟研究结果,在进一步探讨了该系统的变工况特性的基础上,提出应对冷却介质温度发生变化的系统控制方案及应对压缩机过热的系统改进方案。
2.
Based on related program, the tunning parameters of classical cascade cycle and that of autocascade cycle on different conditions ate calculated,and then the running characteristics of the two cycles are compared,which may help the further research on autocascade cycle.
本文根据相关程序,计算了不同条件下R23/R134a经典复叠循环和自然复叠循环的运行参数,分析比较这两个循环的运行特性,以期对于深入研究自然复叠有所裨益。
6)  Auto-cascade
自行复叠
1.
Performance Study on Auto-cascade Absorption Refrigeration Cycle Using R32+R134a/DMF as Working Pairs;
以R32+R134a/DMF作为工质的自行复叠吸收制冷循环性能分析
2.
Study on an Auto-cascade Absorption Refrigeration Cycle;
自行复叠吸收制冷循环研究
3.
The conception of lowest refrigeration temperature is brought forward on absorption refrigeration cycle, then, effects of different factor is studied on characteristics of an auto-cascade absorption refrigeration (ACAR) cycle.
提出了吸收制冷循环的极限制冷温度概念,以自行复叠吸收制冷(ACAR)循环为例分析了多种因素对极限制冷温度和COP等性能参数的影响。
补充资料:复叠
1.见"复迭"。
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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