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1.
Thermoeconomic Optimization on the Performance of an Irreversible Heat Pump with a General Heat Transfer Law;
一般传热规律下不可逆热泵的热经济性能优化
2.
We couple the reversible heat pump with the superengine.
我们将可逆热泵同“超机器”联接起来。
3.
Color-changing mechanism of reversible thermochromic materials and its application
逆热致变色材料的变色机理及应用
4.
Interaction between a reversible engine( A) and a reversible ideal gas Carnot cycle( B).( Illustration courtesy of OCW.
逆热机()理想气体可逆卡诺循环()相互作用。(片由开放式课程提供。
5.
Analysis of Heat Transfer Irreversible Regenerated Brayton Refrigerator
传热不可逆回热式布雷顿制冷机分析
6.
Ecological Optimal Performance of Stirling Heat Pump with Generative Loss;
不可逆回热斯特林热泵的生态学优化研究
7.
Optimal Performance of the Irreversible Stirling Heat Engine with Finite Thermal Sources
两有限热源间的不可逆斯特林热机的优化性能
8.
To cause to lose(energy, such as heat) irreversibly.
消耗,使耗散不可逆地失去(能量,如热)
9.
The initial and final states are the same as for the reversible heating.
其始态及终态与可逆加热相同。
10.
An Ecological Optimization of Irreversible Braysson Heat Engine Cycle;
不可逆布雷森热机循环的生态学优化
11.
The Heat-Work Conversion Analysis of Irreversible Carnot Cycle;
不可逆卡诺循环的热功转换特点分析
12.
One-package reversible thermochromic coatings
单组分热温可逆感温变色涂料的制备
13.
The Performance Optimization of a Generalized Irreversible Braysson Heat Engine
广义不可逆Braysson热机的性能优化
14.
Influence of Multi-irreversibilities on the Performance of a Miller Heat Engine
多种不可逆性对Miller热机性能的影响
15.
Performance Optimization of a Generalized Irreversible Miller Heat Engine Cycle
广义不可逆Miller热机循环的性能优化
16.
Power Density Optimization of an Irreversible Braysson Heat Engine
不可逆Braysson热机的功率密度优化
17.
Irreversible loss analysis of heat transfer in helical tube
螺旋管内传热过程的不可逆损失分析
18.
Effects of Heat Resistance and Internal Irreversibility on the Performance of Closed Regenerated Brayton Heat Pump Cycles
热阻和内不可逆性对闭式回热式布雷顿热泵循环性能的影响