复杂隧道环境下高速列车车内压力舒适性研究

In-compartment Pressure Comfort of High-speed Trains under Complex Tunnel Environments

  • 摘要:
    目的 结合高速列车运行线路实际条件,面对隧道长度、线路坡度、海拔高度等复杂隧道环境,为进一步精准仿真,并分析现有压力保护逻辑在复杂隧道线路条件下的有效性和适用性,有必要对车内压力舒适性进行研究。
    方法 基于一维可压缩非定常不等熵流动模型的广义黎曼变量特征线法,结合压力保护阀开闭控制逻辑和车体气密性的影响,模拟了复杂隧道线路环境下列车车内压力特征。针对不同长度、坡度及海拔高度的隧道,分析了高速列车通过隧道时的车内压力波动和压力保护阀开闭特征,总结了多因素影响下的车内压力舒适性特征。针对高速列车通过长大隧道的情况,对不同隧道坡度下的压力保护阀的开闭次数进行了统计。
    结果及结论 列车通过隧道时,隧道的长度、坡度和海拔均会影响压力保护阀的开闭次数和开闭时刻。现有压力保护逻辑可满足车内复合型压力舒适性的要求,但是当列车在长大隧道内连续上坡运行时,压力保护阀处于持续关闭状态。

     

    Abstract:
    Objective Based on the actual operating conditions of high-speed train routes, and in view of complex tunnel environments such as tunnel length, line gradient, and altitude, it is necessary to study the in-compartment pressure comfort in order to achieve more accurate simulations and to analyze the effectiveness and applicability of the existing pressure protection logic under complex tunnel line conditions.
    Method Based on the generalized Riemann variable characteristic line method of the one-dimensional compressible unsteady non-isotropic flow model, and in combination with the pressure protection valve opening/closing control logic and the vehicle airtightness, the in-compartment pressure characteristics of trains under complex tunnel line environments are simulated. For tunnels with different lengths, gradients, and altitudes, the in-compartment pressure fluctuations and the opening and closing characteristics of the pressure protection valve are analyzed when high-speed trains pass through tunnels, and the characteristics of in-compartment pressure under the influence of multiple factors are summarized. For the case of high-speed trains passing through long-large tunnels, the numbers of pressure protection valve opening/closing under different tunnel gradients are statistically analyzed.
    Result & Conclusion  When trains pass through tunnels, tunnel length, gradient, and altitude all affect the number and timing of pressure protection valve opening/closing. The existing pressure protection logic can meet the requirements for the in-compartment composite pressure comfort; however, when the train runs continuously uphill in a long-large tunnel, the pressure protection valve remains in a continuously closed state.

     

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