首页> 外文期刊>Journal of Geodesy >Calibration for the shear strain of 3-component borehole strainmeters in eastern Taiwan through Earth and ocean tidal waveform modeling
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Calibration for the shear strain of 3-component borehole strainmeters in eastern Taiwan through Earth and ocean tidal waveform modeling

机译:通过地球和海洋潮汐波形模型校准台湾东部三分量钻孔应变仪的剪切应变

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摘要

We propose an approach for calibrating the horizontal tidal shear components [(differential extension () and engineering shear ()] of two Sacks-Evertson (in Pap Meteorol Geophys 22:195-208, 1971) SES-3 borehole strainmeters installed in the Longitudinal Valley in eastern Taiwan. The method is based on the waveform reconstruction of the Earth and ocean tidal shear signals through linear regressions on strain gauge signals, with variable sensor azimuth. This method allows us to derive the orientation of the sensor without any initial constraints and to calibrate the shear strain components and against tidal constituent. The results illustrate the potential of tensor strainmeters for recording horizontal tidal shear strain.
机译:我们提出了一种校准在纵向上安装的两个Sacks-Evertson(在Pap Meteorol Geophys 22:195-208中,1971年)的SES-3井眼应变仪中的水平潮汐剪切分量[(差值延伸()和工程剪切()])的方法。台湾东部的谷地,该方法基于通过应变计信号的线性回归,具有可变传感器方位角的地球和海洋潮汐剪切信号的波形重构,该方法使我们能够导出传感器的方向,而没有任何初始约束,并且来校准剪切应变分量和抵抗潮汐分量,结果说明了张量应变仪在记录水平潮汐剪切应变方面的潜力。

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