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A COMPOUND RECOIL-COMPENSATED CHAMBER DESIGN FOR FREE-FALL ABSOLUTE GRAVIMETERS

机译:用于自由落下绝对重力计的复合反冲补偿室设计

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The ballistic free-fall absolute gravimeters are most commonly-used instruments for high-precision absolute gravity measurements in many fields, such as scientific research, resource survey, geophysics and so on. The instrumental recoil vibrations generated by the release of the test mass can cause troublesome systematic bias, because these vibrations are highly reproducible from drop to drop with coherent phase. A compound counterbalanced design of chamber using both belt-driven mechanism and cam-driven structure is proposed in this paper. This structure is designed to achieve excellent recoil compensation as well as long freefall length for high precision measurements. Simulation results show that the recoil vibration amplitude of the compound recoil-compensated structure during the drop is about 1/4 of that with only belt-driven counterbalanced structure. This confirms the feasibility and superiority of the new design. And it is believed that the absolute gravimeter based on this newly proposed chamber design is expected to obtain more precise gravity measurement results in the future.
机译:弹道自由落体绝对重力是最常用的用于高精度绝对重力测量的仪器,例如科学研究,资源调查,地球物理等。通过释放测试质量产生的乐器反冲振动可能导致麻烦系统偏压,因为这些振动从滴下降液相高度可再现。本文提出了一种使用皮带驱动机构和凸轮驱动结构腔室的复合抵抗设计。这种结构旨在实现优异的再压补偿以及高精度测量的长途防火性长度。仿真结果表明,液滴期间复合反冲补偿结构的反冲振动幅度约为1/4,只有皮带驱动的平衡结构。这证实了新设计的可行性和优越性。并且据信,基于这种新提出的室设计的绝对重力计预计将在未来获得更精确的重力测量结果。

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