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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >On the modelling and testing of a laboratory-scale Foucault pendulum as a precursor for the design of a high-performance measurement instrument
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On the modelling and testing of a laboratory-scale Foucault pendulum as a precursor for the design of a high-performance measurement instrument

机译:关于实验室尺度的建模与测试,作为高性能测量仪设计的前兆

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An integrated study is presented on the dynamic modelling and experimental testing of a mid-length Foucault pendulum with the aim of confirming insights from the literature on the reliable operation of this device and setting markers for future research in which the pendulum may be used for the measurement of relativistic effects due to terrestrial gravity. A tractable nonlinear mathematical model is derived for the dynamics of a practical laboratory Foucault pendulum and its performance with and without parametric excitation, and with coupling to long-axis torsion is investigated numerically for different geographical locations. An experimental pendulum is also tested, with and without parametric excitation, and it is shown that the model closely predicts the general precessional performance of the pendulum, for the case of applied parametric excitation of the length, when responding to the Newtonian rotation of the Earth. Many of the principal inherent performance limitations of Foucault pendulums from the literature have been confirmed and a general prescription for design is evolved, placing the beneficial effect of principal parametric resonance of this inherently nonlinear system in a central mitigating position, along with other assistive means of response moderation such as excitational phase control through electromagnetic pushing, enclosure, and the minimization of seismic and EMC noise. It is also shown, through a supporting analysis and calculation, that although the terrestrial measurement of the Lense-Thirring (LT) precession by means of a Foucault pendulum is certainly still within the realms of possibility, there remains a very challenging increase in resolution capability required, in the order of 2x10(9) to be sure of reliable detection, notwithstanding the removal of extraneous motions and interferences. This study sets the scene for a further investigation in the very near future in which these challenges are to be met, so that a new assault can be made on the terrestrial measurement of LT precession.
机译:综合研究显示了中长福柯摆的动态建模和实验测试,目的是从文献中确认了本设备的可靠运行以及为未来研究的可靠运行来确认了文献的见解,其中可以使用摆锤陆地重力引起的相对论效应的测量。推导出一种易行非线性数学模型,用于实际实验室福柯摆锤的动态及其具有和不具有参数激励的性能,并且在数值上对不同的地理位置进行了耦合到长轴扭转。还测试了实验性摆,有和没有参数激励,并且显示该模型在响应地球的牛顿旋转时,该模型密切预测摆动的一般模型性能。 。已经证实了来自文献的福柯摆锤的许多主要固有性能限制,并且设计了一般的设计处方,将该固有的非线性系统的主要参数谐振在中央缓解位置以及其他辅助手段以及其他辅助手段中进行了效果通过电磁推动,外壳和地震和EMC噪声的最小化,诸如激动相位控制的响应适度。还示出了通过支持分析和计算,尽管借助于福柯摆动的致密颤动(LT)的陆地测量肯定仍然在可能性的领域内,但仍然仍有非常具有挑战性的分辨能力的增加需要,按2x10(9)的顺序来确定可靠的检测,尽管脱疗动作和干扰。本研究设定了在不久的将来进一步调查的场景,其中应达到这些挑战,以便可以对LT PREASION的陆地测量进行新的攻击。

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