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Optimum Speed Power Turbine to Recover the Exhaust Energy of Compression Ignition Diesel and Gas Engines

机译:最佳转速的动力涡轮机,可回收压缩点火柴油和燃气发动机的废气

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The efficiency of internal combustion engines may be improved recovering the fuel energy loss in the exhaust gases or the coolant that is the predominant portion of the fuel energy, being the amount of fuel energy transformed in mechanical energy usually less than 50% in the top efficiency operating points and well below that figure in the other operating points of the load and speed map. This paper consider the opportunity to recover part of the exhaust energy with a power turbine that is operational only when convenient and it is run at optimum speed thanks to a by-pass and a continuously variable transmission link to the crankshaft. The power turbine operates at optimum speed only when producing more power than the power loss for back pressure while permitting temperatures to the downstream after treatment system high enough. Simulations for a 12.8 liters straight 6-cylinder Diesel engine with turbocharger and intercooler show improvements in both the fuel conversion efficiency at medium-to-high speeds and medium-to-high loads.
机译:可以提高内燃机的效率,以回收废气或冷却剂中的燃料能量损失,而燃料或冷却剂是燃料能量的主要部分,因为机械能转换的燃料能量的量通常最高效率不到50%负载点和速度图的其他工作点远低于该图的工作点。本文考虑了只有在方便时才可操作的动力涡轮机才能回收部分废气能量的机会,并且该动力涡轮机通过旁路和至曲轴的无级变速传动装置以最佳速度运行。仅当产生的功率大于背压功率损耗的功率时,功率涡轮机才能以最佳速度运行,同时允许下游后处理系统的温度足够高。具有涡轮增压器和中冷器的12.8升直列6缸柴油发动机的仿真显示,在中高速和中高负荷下,燃油转换效率都有所提高。

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