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An application of OTEC principle to thermal power plant as a co-generation plant

机译:OTEC原理在热电厂作为热电厂中的应用

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Ocean Thermal Energy Conversion (OTEC) is a process that employs the natural temperature difference between the ocean surface and the depths of the ocean. A new approach of feasible study was carried out, for a newly designed closed cycle demonstration of OTEC plant principle of application, for Co-Generation plant with the help of Thermal power plant tail-ended water temperature as a warm surface temperature and deep cold sea water as a low temperature. Basically OTEC plants can operate when the solar energy is available; this paper presents a new approach of utilizing the same principle to operate it continuously as a Co-Generation plant for Thermal power plants. In Thermal power plant tail ended warm water temperature increases the heat transfer between the warm water and working fluid, which increases the working fluid temperature before the turbine. It is observed that thermal efficiency and the output power of system will increase with increasing operating temperature difference. Increasing turbine inlet temperatures also increase the efficiency and the work done by the turbine. The efficiency and the power output increases with increasing ratio of warm water to cold water flow rates. The study of findings from this work can contribute to develop a Co-Generation plant for Thermal power plant.
机译:海洋热能转换(OTEC)是一种利用海洋表面和海洋深度之间的自然温差的过程。进行了一种可行的研究新方法,用于OTEC工厂应用原理的新设计闭环演示,借助火力发电厂末端水温作为温暖的地表温度和深冷海,对热电联产电厂进行了研究水为低温。基本上,在有太阳能的情况下,OTEC工厂就可以运转;本文提出了一种利用相同原理连续运行的新方法,作为火力发电厂的热电联产厂。在火力发电厂的末端,热水温度增加了热水和工作流体之间的热传递,从而增加了涡轮机之前的工作流体温度。观察到,系统的热效率和输出功率将随着工作温差的增加而增加。涡轮进口温度的升高也提高了涡轮的效率和功。效率和功率输出随温水与冷水流量比的增加而增加。对这项工作的发现进行研究可以为热电厂的热电联产工厂的发展做出贡献。

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