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Investigating an all-hydraulic hybrid system for diesel-hydraulic rail cars

机译:研究用于柴油-液压轨道车的全液压混合动力系统

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Purpose This paper outlines a complex simulation model for parallel-hybrid diesel railcars with hydrodynamic power transmission. It contributes to the discussion concerning whether a hydrostatic recuperation system can be an alternative to electric systems using double-layer capacitors or flywheels. The paper focusses on a hybrid system with realistic parameters concerning mass, power, and energy content that should be applicable to both existing and newly built vehicles. Methods A simulation process that is based on the 1-d-multi-domain simulation tool Imagine.Lab AMESim is presented. The simulation comprises a conventional and an alternative drive train as well as the longitudinal dynamics of the vehicle along with the control of the vehicle motion. Energy-efficient driving techniques and timetable restrictions are taken into account when comparing train runs of different drivetrain configurations. Results Simulations based on real route data for eight different railway lines show a reduction of fuel consumption between 5 and 16 % due to the hydrostatic recuperation of energy. Station spacing and mean line gradients prove to be important line-side factors impacting fuel economy. Conclusions Hydrostatic recuperation represents a feasible solution for railcars, provided that possible spatial and economic obstacles can be overcome. As the simulation results are promising, further hybrid configurations will be considered for simulation. A comprehensive comparison to models of hybrid diesel railcars using different energy storages is the next step.
机译:目的本文概述了具有水动力传输的并联混合动力柴油机车的复杂仿真模型。它有助于讨论静液压换热系统是否可以替代使用双层电容器或飞轮的电气系统。本文重点研究一种混合动力系统,该系统具有涉及质量,功率和能量含量的实际参数,应该适用于现有和新建车辆。方法提出了基于一维多域仿真工具Imagine.Lab AMESim的仿真过程。该模拟包括常规的和替代的传动系,以及车辆的纵向动力学以及车辆运动的控制。比较不同动力传动系统配置的列车运行时,要考虑到节能驾驶技术和时间表限制。结果基于真实路线数据的八条不同铁路线的模拟结果表明,由于静液压的能量回收,燃油消耗减少了5%至16%。站距和平均线坡度被证明是影响燃油经济性的重要线侧因素。结论静液压换热是铁路车辆的可行解决方案,只要可以克服可能的空间和经济障碍。由于仿真结果很有希望,因此将考虑使用其他混合配置进行仿真。下一步将与使用不同能量存储的混合动力柴油机车模型进行全面比较。

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