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Electricity production with low grade heat in thermal power plants by design improvement of a hybrid dry cooling tower and a solar chimney concept

机译:通过改进混合干式冷却塔和太阳能烟囱的设计,在火力发电厂中生产低品位热量

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In this study, an improved concept design is presented to increase the thermal efficiency of the Rankine cycle of a typical steam power plant by combining a solar chimney and a dry cooling tower. The sources of the wind energy generation, include: the rejected heat from condenser to the air entering dry cooling tower, solar radiation and the airlift pumping effect on the air flow created by the stack hot flue gas which is injected into the hybrid tower as a novel change. This research primarily focuses on the Shahid Rajaee 250 MW steam power plant to determine the velocity of generated flow at the turbine inlet; a numerical finite volume code was employed for a dry cooling tower having a base diameter and a chimney height of 250 and 200 m, respectively. Calculations have been iterated for different angles of chimney walls, slopes of collectors and the base ground to find their effects on the output power. A range of 360 kW to more than 4.4 MW power is captured by the wind turbine by changing the hybrid tower geometrical parameters. Obtained results reveal a maximum of 0.538% increase for the thermal efficiency of the fossil fuel power plant.
机译:在这项研究中,提出了一种改进的概念设计,通过结合使用太阳能烟囱和干式冷却塔来提高典型蒸汽发电厂兰金循环的热效率。产生风能的来源包括:从冷凝器向进入干式冷却塔的空气排放的热量,太阳辐射以及对烟囱烟气产生的气流的气举泵送作用,烟囱气作为混合燃料注入混合塔。新颖的变化。这项研究主要集中在Shahid Rajaee 250 MW蒸汽发电厂,以确定涡轮机入口处产生的流速。对于底部直径和烟囱高度分别为250 m和200 m的干式冷却塔,采用了有限体积数值编码。已经对烟囱壁的不同角度,收集器的倾斜度和基础地面进行了迭代计算,以发现它们对输出功率的影响。通过更改混合塔架的几何参数,风力涡轮机可捕获360 kW至4.4 MW以上的功率。获得的结果表明,化石燃料发电厂的热效率最多增加0.538%。

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