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Parameter Optimization and Operating Strategy of a TEG System for Railway Vehicles

机译:铁路车辆TEG系统的参数优化及运行策略

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摘要

A thermoelectric generator (TEG) system demonstrator for diesel electric locomotives with the objective of reducing the mechanical load on the thermoelectric modules (TEM) is developed and constructed to validate a one-dimensional thermo-fluid flow simulation model. The model is in good agreement with the measurements and basis for the optimization of the TEG's geometry by a genetic multi objective algorithm. The best solution has a maximum power output of approx. 2.7 kW and does not exceed the maximum back pressure of the diesel engine nor the maximum TEM hot side temperature. To maximize the reduction of the fuel consumption, an operating strategy regarding the system power output for the TEG system is developed. Finally, the potential consumption reduction in passenger and freight traffic operating modes is estimated under realistic driving conditions by means of a power train and lateral dynamics model. The fuel savings are between 0.5% and 0.7%, depending on the driving style.
机译:为了降低热电模块(TEM)的机械负荷,开发并构建了用于柴油机车的热电发电机(TEG)系统演示器,以验证一维热流体流动仿真模型。该模型与通过遗传多目标算法优化TEG几何形状的测量和基础非常吻合。最佳解决方案的最大功率输出约为。 2.7 kW,且不超过柴油发动机的最大背压或TEM热侧最高温度。为了最大程度地减少燃料消耗,开发了有关TEG系统的系统功率输出的运行策略。最后,借助于动力传动系统和横向动力学模型,在实际驾驶条件下估算了客运和货运交通运营模式中的潜在消耗减少量。根据驾驶方式的不同,节油量在0.5%至0.7%之间。

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