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Vibration Velocity, Earth Pressure and Excess Pore Pressure Measured in Cyclic Dynamic Field Testing of Water-Rich Loess Tunnel for Passenger Dedicated-Line

机译:客运专线富水黄土隧道循环动力场试验中测得的振动速度,土压力和超孔隙压力

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Cyclic dynamic field tests simulating the high-speed train vibration effect were conducted in a water-rich loess tunnel (called Zhang Mao Tunnel) located on the Zhengzhou-Xi'an Passenger Dedicated Line with a design speed of 350 km per hour (km/h). The forced excitation tests were performed on the top of the backfill of the tunnel invert arch with 12 different vibration frequencies (5 to 27 Hz). During testing, measurements were taken at various locations below the tunnel invert for the vertical vibration velocity, the earth pressure, and the excess pore pressure. The testing results indicate that the maximum vertical vibration velocity at the excitation surface is approximately 1.55 mm/s. At the same depth, the vibration velocity increases with the vibration frequency. The increase is small when the vibration frequency is equal to or less than 21 Hz, but becomes greater when the vibration frequency is higher than 21 Hz. Under different vibration frequencies, the earth pressure versus depth remains basically unchanged. Under the constant vibration frequency, the earth pressure at the same depth remains basically unchanged for different loading numbers. Under cyclic loading, negative values for the excess pore pressure appear below the tunnel invert; but the absolute value is small.
机译:在设计速度为350 km / h(km / h)的郑西客运专线富水黄土隧道(称为张茅隧道)中进行了模拟高速列车振动效应的循环动力场试验。 H)。在具有12种不同振动频率(5到27 Hz)的隧道倒拱的回填顶部进行了强制激励测试。在测试过程中,在隧道反面下方的各个位置进行了测量,以测量垂直振动速度,土压力和过大的孔隙压力。测试结果表明,在激励表面的最大垂直振动速度约为1.55 mm / s。在相同深度下,振动速度随振动频率而增加。当振动频率等于或小于21 Hz时,增加很小,但当振动频率高于21 Hz时,增加变得更大。在不同的振动频率下,土压力与深度的关系基本保持不变。在恒定振动频率下,相同深度的土压力对于不同的载荷数基本保持不变。在循环荷载作用下,超高孔隙压力的负值出现在隧道反面以下;反之,则为负值。但是绝对值很小。

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