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3D simulation of solar chimney power plant considering turbine blades

机译:考虑涡轮叶片的太阳能烟囱发电厂的3D模拟

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In this study, a basic mathematical model is presented to describe the flow through the turbine of solar chimney. A 3D CFD simulation of the prototype solar chimney power plant of the Manzanares, considering turbine blades, was performed. The CFD simulation was verified by comparison with the experimental data of the Manzanares solar chimney power plant. Then, to show the effects of the turbine rotational speed, the quantity of turbine blades, the collector diameter and the chimney height, 12 cases of CFD simulations were run. These runs were based on 3, 4 and 5 blades, rotational speeds of 40, 80 and 100 rpm, chimney heights of 100, 200 and 300 m and collector diameters of 122, 244 and 366 m. According to the results of the simulation, the outlet air velocity, the air mass flow rate, the torque and the power are reported. The results show that, with a fixed number of blades, increasing the rotational speed would decrease the mass flow rate of air, and increase the torque and power generated by the turbine. Also, in a constant angular velocity, increasing the blade quantity would decrease the mass flow rate of air and increase the torque and power. Moreover, increasing the chimney height and collector diameter intensifies the mass flow rate and power output. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,提出了一个基本的数学模型来描述通过太阳能烟囱涡轮的流量。考虑到涡轮叶片,对曼萨纳雷斯的原型太阳能烟囱发电厂进行了3D CFD仿真。通过与曼萨纳雷斯太阳能烟囱发电厂的实验数据进行比较,验证了CFD模拟。然后,为了显示涡轮转速,涡轮叶片数量,收集器直径和烟囱高度的影响,进行了12个CFD模拟案例。这些运行基于3、4和5个叶片,40、80和100 rpm的转速,烟囱高度分别为100、200和300 m和收集器直径为122、244和366 m。根据仿真结果,报告了出口空气速度,空气质量流量,扭矩和功率。结果表明,在叶片数量固定的情况下,提高转速会降低空气的质量流率,并增加涡轮机产生的扭矩和功率。同样,在恒定角速度下,增加叶片数量将降低空气的质量流率,并增加扭矩和功率。而且,增加烟囱高度和收集器直径会增加质量流量和功率输出。 (C)2017 Elsevier Ltd.保留所有权利。

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