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Numerical investigation of pressure loss reduction in a power plant stack

机译:电厂烟囱压力损失减小的数值研究

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The strengthened environmental laws require the power plants to reduce the emissions. Flue gas desulphurization and deNO_x involve adding chemicals to the flow stream, thereby resulting in increased mass flow. This problem could be overcome by reducing the pressure drop in the duct work and stack combination, so that a higher flow at reduced pressure drop can be handled by the existing fans. In this study, a power plant stack model of 1:40 was investigated numerically. The pressure reduction was achieved by introduction of baffles with various orientations and turning vanes at the inlet of the stack. The flows were modeled and analyzed using commercial computational fluid dynamics (CFD) software Fluent 6.2. The numerical results were validated with the experimental data. The 30° baffle without turning vanes was found to be the optimum baffle angle in terms of the pressure loss reduction. Variation of axial velocity, swirling component and turbulence kinetic energy along the axis of the stack was analyzed to understand the mechanism of the pressure loss reduction in a power plant stack. Guidelines for further pressure loss reduction were provided based on the insight gained from the simulation results.
机译:强化的环境法律要求电厂减少排放。烟气脱硫和脱硝涉及向流中添加化学物质,从而导致质量流量增加。该问题可以通过减少风管和烟囱组合中的压降来克服,以便现有的风扇可以在降低的压降下实现更高的流量。在这项研究中,对1:40的电厂烟囱模型进行了数值研究。通过引入具有不同方向的挡板和在烟囱入口处的转向叶片来实现压力降低。使用商业计算流体动力学(CFD)软件Fluent 6.2对流动进行建模和分析。实验结果验证了数值结果。在减小压力损失方面,发现没有转向叶片的30°挡板是最佳挡板角度。分析了沿烟囱轴向的轴向速度,旋流分量和湍流动能的变化,以了解电厂烟囱中压力损失减少的机理。根据从模拟结果中获得的见识,提供了进一步降低压力损失的指南。

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