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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Effects of wet CO oxidation on the operation of engines and power generators
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Effects of wet CO oxidation on the operation of engines and power generators

机译:湿式CO氧化对发动机和发电机运行的影响

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A simplified method is used to determine the optimum water content in the flue gases of charcoal gasifiers to be utilized as alternative fuels in the operation of engines and gas turbines for power generation. Computational models of plug flow reactors and well stirred reactors are employed to simulate the reaction and post-flame zones, adopting different chemical mechanisms. In the simulations reactants enter the reactors at 1000 K, 1 atm and equivalence ratio 0.25. It was observed that mixtures about 3% to 4% in volume of water vapor allow to obtain optimal operation characteristics, including high blowout limit, low ignition delay, maximum reaction zone temperature, high CO2 prodution and low thermal NO formation. It was observed that increasing water contents reduce significantly ignition times up to 3% in volume, while blowout mass flow rates increase continuously up to 6 % in volume, the maximum value considered. Formation of NO decreases continuously with humidity after the flame zone, while there are peaks of NO formation within the flame zone below 1% in volume. Higher water vapor content decreases the final temperatures below 1700 K, leading to a lower thermal efficiency. The method can be used to estimate optimum operational conditions with other input parameters.
机译:使用一种简化方法来确定木炭气化炉烟道气中的最佳水分含量,以用作发电发动机和燃气轮机的替代燃料。推流反应器和搅拌良好的反应器​​的计算模型被用来模拟反应和后火焰区,采用不同的化学机理。在模拟中,反应物以1000 K,1 atm和当量比0.25进入反应器。可以观察到,水蒸气体积约为3%至4%的混合物可获得最佳的运行特性,包括高吹出极限,低点火延迟,最大反应区温度,高CO2产生和低热NO生成。可以看出,增加水分含量可显着减少点火时间,最高可达到体积的3%,而井喷质量流量可连续提高,最高可达体积的6%,这是所考虑的最大值。在火焰区之后,NO的形成随湿度的增加而连续降低,而火焰区内的NO形成的峰值低于1%(体积)。较高的水蒸气含量将最终温度降低到1700 K以下,从而导致较低的热效率。该方法可用于估计具有其他输入参数的最佳运行条件。

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