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Acoustic waveguide measurements of the sun and moon's gravitational forces on earth and of quasi - gravity related waves

机译:声波导测量太阳和月球在地球上的重力以及与准重力有关的波

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Over a two year period, measurements of the daily levels of 74.91 kHz. acoustic signals transmitted between oil -immersed acoustic waveguides [AWG] correlated fairly well [20 to 70%] with daily tidal levels controlled by the sun and moon's gravitational forces on earth. Consequently, it is reasoned, the AWG measurements are also in some sense or degree related to these forces. Assuming that the daily AWG measurements are indeed gravity related, then a 1 Hz. to 15 Hz. pulsatory background noise or jitter which was found to be associated with the AWG signal with a peak response at 6 Hz. could possibly be indicative of gravitational — type of waves or disturbances occurring somewhere in space. In this regard, it is interesting to note that pulsars have been studied as possible sources of gravitational waves or disturbances, and that the pulsed radio energy emissions of > 90% of pulsars catalogued occur in the < 1 Hz. to 20 Hz. frequency range and peak emission also occurs at 6 Hz. This raises the possibility of a gravity - type of low frequency background noise or hum at that frequency.
机译:在两年的时间内,每天的测量值为74.91 kHz。在油浸式声波导管[AWG]之间传输的声波信号与受太阳和月球在地球上的引力控制的每日潮汐水平有很好的关联[20%至70%]。因此,有理由认为,AWG测量值在某种程度上也与这些力有关。假设每天的AWG测量值确实与重力有关,则为1 Hz。至15 Hz发现脉动背景噪声或抖动与AWG信号相关,峰值响应为6 Hz。可能表示引力—在太空中某处发生的波动或干扰的类型。在这方面,有趣的是,已对脉冲星进行了研究,将其作为重力波或扰动的可能来源,并且分类为脉冲星的> 90%的脉冲无线电能发射发生在<1 Hz。到20 Hz频率范围和峰值发射也出现在6 Hz。这增加了重力的可能性,即该频率下的低频背景噪声或嗡嗡声。

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