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A combined experimental and numerical study of thermal processes, performance and nitric oxide emissions in a hydrogen-fueled spark-ignition engine

机译:氢燃料火花点火发动机的热过程,性能和一氧化氮排放的综合实验和数值研究

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摘要

This work concerns the study of a spark-ignition engine fueled with hydrogen, using both measured and numerical data at various conditions, focusing on the combustion efficiency, the heat transfer phenomena and heat loss to the cylinder walls, the performance, as well as the nitric oxide (NO) emissions formed, when the fuel/air and compression ratio are varied. For the investigation of the heat transfer mechanism, the local wall temperatures and heat flux rates were measured at three locations of the cylinder liner in a CFR engine. These fluxes can provide a reliable estimation of the total heat loss through the cylinder walls and of the hydrogen flame arrival at specific locations. Together with the experimental analysis, the numerical results obtained from a validated in-house CFD code were utilized for gaining a more complete view of the heat transfer mechanism and the hydrogen combustion efficiency for the various cases examined. The performance of the CFR engine is then identified, since the calculated cylinder pressures are compared with the measured ones, from which performance and heat release rates are calculated and discussed. Further, NO emission studies have been accomplished, with the calculated results not only being compared with the measured exhaust NO ones, but also further processed for conducting an in-depth investigation of the dependence of NO production on the spatial distribution of in-cylinder gas temperature. It is revealed that for lower fuel/air ratio the burned gas temperature is held at low level and the heat loss ratio is quite low. As the load increases and stoichiometric mixtures are used, the wall and in-cylinder gas temperatures increase substantially, together with the heat loss and the NO emissions, owing to the high hydrogen combustion velocity and the consequent high rate of temperature rise. The combustion efficiency is slightly increased, but the indicated efficiency is decreased due to higher heat loss. Copyright (C) 2011, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项工作涉及在各种条件下使用实测数据和数值数据对氢燃料火花点火发动机进行研究,重点是燃烧效率,传热现象和汽缸壁的热损失,性能以及燃烧效率。当燃料/空气和压缩比变化时,会形成一氧化氮(NO)排放物。为了研究传热机理,在CFR发动机的汽缸套的三个位置测量了局部壁温和热通量。这些通量可以可靠地估计通过气缸壁的总热量损失以及到达特定位置的氢火焰。与实验分析一起,从经过验证的内部CFD代码获得的数值结果可用于更全面地了解各种情况下的传热机理和氢燃烧效率。由于将计算出的气缸压力与测得的气缸压力进行比较,因此可以确定CFR发动机的性能,从而计算和讨论其性能和放热率。此外,已经完成了NO排放研究,不仅将计算结果与测得的排放NO进行了比较,而且还进行了进一步处理以深入研究NO的产生对缸内气体空间分布的依赖性。温度。揭示了对于较低的燃料/空气比,燃烧气体温度保持在较低水平,并且热损失率非常低。随着负载的增加和使用化学计量的混合物,由于氢气的高燃烧速度和随之而来的高升温速率,壁温和缸内气体温度以及热量损失和NO排放量都显着增加。燃烧效率略有提高,但是由于较高的热损失,指示的效率降低了。 Hydrogen Energy Publications,LLC版权所有(C)2011。由Elsevier Ltd.出版。保留所有权利。

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