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首页> 外文期刊>Bulletin of the Seismological Society of America >Identifying and removing tilt noise from low-frequency (< 0.1 Hz) seafloor vertical seismic data
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Identifying and removing tilt noise from low-frequency (< 0.1 Hz) seafloor vertical seismic data

机译:识别和消除低频(<0.1 Hz)海底垂直地震数据中的倾斜噪声

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摘要

Low-frequency (<0.1 Hz) vertical-component seismic noise can be reduced by 25 dB or more at seafloor seismic stations by subtracting the coherent signals derived from (1) horizontal seismic observations associated with tilt noise, and (2) pressure measurements related to infragravity waves. The reduction in effective noise levels is largest for the poorest stations: sites with soft sediments, high currents, shallow water, or a poorly leveled seismometer. The importance of precise leveling is evident in our measurements: low-frequency background vertical seismic spectra measured on a seafloor seismometer leveled to within 1 x 10(-4) radians (0.006 degrees) are up to 20 dB quieter than on a nearby seismometer leveled to within 3 x 10(-3) radians (0.2 degrees). The noise on the less precisely leveled sensor increases with decreasing frequency and is correlated with ocean tides, indicating that it is caused by tilting due to seafloor currents flowing across the instrument. At low frequencies, this tilting generates a seismic signal by changing the gravitational attraction on the geophones as they rotate with respect to the earth's gravitational field. The effect is much stronger on the horizontal components than on the vertical, allowing significant reduction in vertical-component noise by subtracting the coherent horizontal component noise. This technique reduces the low-frequency vertical noise on the less-precisely leveled seismometer to below the noise level on the precisely leveled seismometer. The same technique can also be used to remove "background" noise due to the seafloor pressure field (up to 25 dB noise reduction near 0.02 Hz) and possibly due to other parameters such as temperature variations. [References: 26]
机译:通过减去(1)与倾斜噪声相关的水平地震观测值和(2)相关的压力测量值得出的相干信号,可以在海底地震台站将低频(<0.1 Hz)垂直分量地震噪声降低25 dB或更多,脚下的波浪。对于最贫穷的站点,有效噪声水平的降低最大:沉积物较软,水流较大,水位较浅或地震仪水平较差的站点。精确校平的重要性在我们的测量中显而易见:在水平度在1 x 10(-4)弧度(0.006度)以内的海底地震仪上测得的低频本底垂直地震频谱比在附近水平的地震仪上低20 dB到3 x 10(-3)弧度(0.2度)以内。水准仪上精度不高的传感器随着频率的降低而增加,并且与海潮相关,这表明它是由于流过仪器的海底电流引起的倾斜所引起的。在低频下,这种倾斜通过改变检波器相对于地球重力场的旋转时的重力吸引力来产生地震信号。对水平分量的影响要比对垂直分量的影响大得多,通过减去相干的水平分量噪声,可以显着降低垂直分量噪声。此技术可将不太精确的水平地震仪上的低频垂直噪声降低到精确水平的地震仪上的噪声水平以下。由于海底压力场(0.02 Hz附近最多可降低25 dB的噪声),还可能由于其他参数(例如温度变化),也可以使用相同的技术来消除“背景”噪声。 [参考:26]

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