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Self-attraction effect and correction on the T-1 absolute gravimeter

机译:T-1绝对重力仪的自吸引效应和校正

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摘要

The self-attraction effect (SAE) in an absolute gravimeter is a kind of systematic error due to the gravitation of the instrument to the falling object. This effect depends on the mass distribution of the gravimeter, and is estimated to be a few microgals (1 mu Gal = 10(-8) m s(-2)) for the FG5 gravimeter. In this paper, the SAE of a home-made T-1 absolute gravimeter is analyzed and calculated. Most of the stationary components, including the dropping chamber, the laser interferometer, the vibration isolation device and two tripods, are finely modelled, and the related SAEs are computed. In addition, the SAE of the co-falling carriage inside the dropping chamber is carefully calculated because the distance between the falling object and the co-falling carriage varies during the measurement. In order to get the correction of the SAE, two different methods are compared. One is to linearize the SAE curve, the other one is to calculate the perturbed trajectory. The results from these two methods agree with each other within 0.01 mu Gal. With an uncertainty analysis, the correction of the SAE of the T-1 gravimeter is estimated to be (-1.9 +/- 0.1) mu Gal.
机译:绝对重力仪中的自吸引效应(SAE)是一种由于仪器对下落物体的重力而引起的系统误差。该效应取决于重力仪的质量分布,对于FG5重力仪,估计为几个微加仑(1微加仑= 10(-8)m s(-2))。本文对国产T-1绝对重力仪的SAE进行了分析计算。包括下落腔,激光干涉仪,隔振装置和两个三脚架在内的大多数固定组件都经过了精确建模,并计算了相关的SAE。另外,由于在测量过程中下落物体与共同下落托架之间的距离会发生变化,因此要仔细计算下落室内的共同下落托架的SAE。为了得到SAE的校正,比较了两种不同的方法。一种是线性化SAE曲线,另一种是计算扰动的轨迹。这两种方法的结果在0.01μGal之间相吻合。通过不确定性分析,T-1重力仪的SAE校正估计为(-1.9 +/- 0.1)mu Gal。

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