1) organic rankine cycle
有机朗肯循环
1.
Determination of optimal reheating pressure in Organic Rankine Cycle system
有机朗肯循环系统最佳再热压力的确定
2.
Selection of working fluids for ocean thermal energy conversion power generation organic Rankine cycle
海洋温差发电有机朗肯循环工质选择
3.
Analysis of key factors in low-temperature solar-thermal-electric power generation with organic Rankine cycle
太阳能有机朗肯循环低温热发电关键因素分析
2) organic Rankine cycle(ORC)
有机朗肯循环
1.
This article presented a dynamic simulation and validation of an organic Rankine cycle(ORC) system using R245fa(1,1,1,3,3-pentafluoropropane) as organic working fluid for waste heat recovery.
针对废热回收的有机朗肯循环进行了动态仿真和实验验证。
3) organic Rankine cycle
有机物朗肯循环
1.
The proposed cycle combines the organic Rankine cycle and the ejector refrigeration cycle, producing power as well as refrigeration simultaneously.
该系统将有机物朗肯循环与喷射式制冷循环相结合,利用透平排气驱动喷射器工作,同时实现发电和制冷的功能。
4) organic rankine cycle(ORC)
有机朗肯循环(ORC)
1.
Working fluid selection for organic rankine cycle(ORC) in low temperature geothermal power generation system
低温地热有机朗肯循环(ORC)工质选择
5) organic rankie cycle
有机工质朗肯循环
6) Rankine cycle
朗肯循环
1.
Impact of ambient temperature on system performance of organic Rankine cycle system driven by exhaust;
环境温度对余热驱动的有机朗肯循环系统性能的影响
2.
The performance predictions of organic Rankine cycle(ORC) using R245fa(1,1,1,3,3-pentafluoropropane) as organic working fluid driven by exhaust were presented.
预测了废热源驱动的有机朗肯循环(ORC)系统在变工况下的性能,循环工质为R245fa(1,1,1,3,3-五氟丙烷)。
3.
Acomparison with a simple steam Rankine cycle shows the advatage of CCLC in respect to recuperation of exergy but also its inadequacy of converting it into useful work.
并在此基础上,与水蒸汽简单朗肯循环进行了定性和定量的对比,指出CCLC在热回收方面的优势和向有用功转化方面的不足。
补充资料:有机
1.原指与生物体有关的或从生物体来的(化合物)﹐现指除一氧化碳﹑二氧化碳﹑碳酸﹑碳酸盐和某些碳化物之外﹐含碳原子的(化合物)。 2.指事物构成的各部分互相关连﹐具有不可分的统一性。 3.有机会。
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