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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Modeling of Compressed Air Hybrid Operation for a Heavy Duty Diesel Engine
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Modeling of Compressed Air Hybrid Operation for a Heavy Duty Diesel Engine

机译:重型柴油机压缩空气混合动力运行建模

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This paper presents the analysis and modeling of a 10.8 l heavy-duty diesel engine modified for operating compressed air hybrid engine cycles. A lumped parameter model is developed to first investigate the engine cylinder-air tank mass and energy interaction. The efficiency of compressed air energy transfer is defined based on the second law of thermodynamics. A high fidelity model is developed using commercially available software (GT-POWER) to capture the effects of engine friction, heat transfer, gas dynamics, etc. Engine valve timing for optimal efficiency in air regeneration and the corresponding engine speed-torque maps are established using the detailed engine model. The compressed air hybrid engine maps are then incorporated into vehicle simulation (ADVISOR) to evaluate the potential fuel economy improvement for a refuse truck under a variety of driving cycles. Depending on the particular driving cycle, the simulation has shown a potential 4-18% fuel economy improvement over the truck equipped with the conventional baseline diesel engine.
机译:本文介绍了为运行压缩空气混合动力发动机循环而改装的10.8升重型柴油发动机的分析和建模。建立集总参数模型以首先研究发动机气缸-空气箱的质量和能量相互作用。压缩空气能量传输的效率是根据热力学第二定律定义的。使用商用软件(GT-POWER)开发了高保真度模型,以捕获发动机摩擦,传热,气体动力学等的影响。建立了用于最佳空气再生效率的发动机气门正时,并建立了相应的发动机转速-扭矩图使用详细的引擎模型。然后将压缩空气混合动力发动机图纳入车辆模拟(ADVISOR)中,以评估垃圾车在各种行驶周期下潜在的燃油经济性改进。根据特定的行驶周期,仿真显示,与配备常规基准柴油发动机的卡车相比,燃油经济性可能提高4-18%。

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