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Apparent calibration shift of the Scintrex CG-5 gravimeter caused by reading-dependent scale factor and instrumental drift

机译:Scintrex CG-5重力仪的表观校准偏差是由读数相关的比例因子和仪器漂移引起的

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Calibration measurements of the Scintrex CG-5 gravimeter were conducted using absolute gravity stations of the Japan Gravity Standardization Net, to constrain the scale factor and its temporal changes. The calibration data were obtained from a total gravity interval of 1.4Gal through six campaigns, conducted for over 5 years between years 2012 and 2017. The scale factors varied by 1500ppm in a range from 0.9991 to 1.0006, according to station combinations of the six campaigns. The scale factor depends primarily on the gravity reading ranges: for similar gravity reading ranges, no significant differences in the estimated scale factors were recognised, even though station combinations and observed times are different. Therefore, the gravity readings can be corrected by introducing a gravity reading-dependent scale factor. Furthermore, even though the scale factor essentially depends on gravity readings and not on time, temporal changes were observed during repeated calibration measurements at the same station combinations. A long-term instrumental drift of the CG-5 gravimeter could explain this phenomenon. In conclusion, the calibration shifts recognised during repeated measurements were apparently caused by: (1) the scale factor dependence on the gravity reading ranges and (2) the shift of the gravity reading ranges due to the instrumental drift.
机译:Scintrex CG-5重力仪的校准测量是使用Japan Gravity Standardization Net的绝对重力站进行的,以限制比例因子及其时间变化。校准数据是通过在2012年至2017年之间的5年中进行的6次运动从1.4Gal的总重力间隔中获得的。根据这6次运动的测站组合,比例因子的变化范围为1500ppm,范围为0.9991至1.0006。 。比例因子主要取决于重力读数范围:对于相似的重力读数范围,即使测站组合和观测时间不同,也不会识别出估计的比例因子有显着差异。因此,可以通过引入依赖于重力读数的比例因子来校正重力读数。此外,即使比例因子基本上取决于重力读数,而不取决于时间,在相同站点组合的重复校准测量过程中也会观察到时间变化。 CG-5重力仪的长期仪器漂移可以解释这种现象。总之,在重复测量过程中识别出的校准位移显然是由以下原因引起的:(1)比例因子对重力读数范围的依赖性,以及(2)由于仪器漂移而引起的重力读数范围的位移。

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