朗肯循环
有机朗肯循环
热力循环
兰金度
联合循环
热效率
工艺工程
等熵过程
环境科学
工作液
工程类
涡轮机
汽车工程
核工程
功率(物理)
余热
机械工程
热力学
热交换器
化学
燃烧
物理
有机化学
出处
期刊:Journal of engineering for gas turbines and power
[ASME International]
日期:1984-10-01
卷期号:106 (4): 737-742
被引量:387
摘要
A new thermodynamic energy cycle has been developed using a multicomponent working agent. This cycle is designed to replace the currently used Rankine Cycle as a bottoming cycle for a combined-cycle energy system as well as for generating electricity using low-temperature heat sources. Several combined power systems based on this cycle have been designed and cost-estimated. The efficiency of this cycle is from 1.6 to 1.9 times higher than that of the Rankine Cycle system, at the same border conditions. The investment cost per unit of power output for this cycle is lower than that for the Rankine Cycle system in approximately direct proportion to the energy advantage. The application of this cycle as a bottoming cycle in combined-cycle systems involves the use of an energy system which utilizes heat from the exhaust of a gas turbine, resulting in an increase in overall efficiency of up to 20 percent above the efficiency of the combined systems using the Rankine bottoming cycle. As a result, a thermal efficiency in the range of 50–52 percent can be achieved using a conventional gas turbine. The project to build the first experimental installation is now in progress. This installation is to become operational at the end of 1984.
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