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Modeling and Analysis of Tier 4 Locomotives Operating in a High-Altitude Tunnel

机译:高空隧道中运行的4级机车的建模与分析

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Tunnels represent one of the most severe operating conditions for diesel engines in diesel-electric locomotive applications, specifically for non-ventilated tunnels located at high elevation. High ambient air temperatures are observed in these tunnels due to heat rejected from the locomotive engines through the exhaust and engine cooling and lubrication systems. Engine protection algorithms cause the maximum allowable engine horsepower to be reduced due to these conditions leading to a reduction in train speed and occasionally train stall. A first law based model was developed to simulate the performance of a train pulled by GE diesel-electric locomotives equipped with medium speed diesel engines in a high altitude and non-ventilated tunnel. The model was compared against and calibrated to actual tunnel operation data of EPA Tier 2 compliant locomotives. The model was then used to study the impact of engine design changes required for EPA Tier 4 compliant locomotives, specifically the introduction of exhaust gas recirculation (EGR), on engine, locomotive, and train performance in the tunnel. Simulations were completed to evaluate engine control strategies targeting same or better train performance than the EPA Tier 2 compliant locomotive baseline case. Simulation results show that the introduction of EGR reduces train performance in the tunnel by increasing the required reduction in engine horsepower, but is slightly offset by improved performance from other engine design changes. The targeted engine and train performance could be obtained by disabling EGR during tunnel operation.
机译:隧道代表了柴油电力机车应用中柴油发动机最严酷的运行条件之一,特别是位于高海拔的非通风隧道。由于从机车发动机通过排气,发动机冷却和润滑系统排出的热量,在这些隧道中观察到较高的环境空气温度。由于这些条件,发动机保护算法会导致最大允许发动机功率降低,从而导致火车速度降低,偶尔会导致火车失速。建立了基于第一定律的模型,以模拟配备有中速柴油机的GE柴油机车在高海拔和不通风的隧道中牵引的火车的性能。将模型与EPA Tier 2兼容机车的实际隧道运行数据进行比较并进行了校准。然后,使用该模型研究符合EPA Tier 4要求的机车所需的发动机设计更改的影响,特别是引入废气再循环(EGR)对隧道中的发动机,机车和列车性能的影响。完成了仿真,以评估针对与EPA Tier 2兼容机车基准案例相同或更好的列车性能的发动机控制策略。仿真结果表明,引入EGR会增加所需的发动机功率,从而降低隧道的列车性能,但与其他发动机设计更改相比,性能的提高会略有抵消。通过在隧道运行期间禁用EGR,可以获得目标发动机和火车性能。

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