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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >What controls the initial peak of an air-gun source signature?
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What controls the initial peak of an air-gun source signature?

机译:什么控制气枪源签名的初始峰值?

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Seismic air guns are broadband sources that generate acoustic waves at many frequencies. The low-frequency waves can be used for imaging, whereas the high-frequency waves are attenuated and/or scattered before they can reflect from targets of interest in the subsurface. It is desirable to reduce the amplitude of the high-frequency acoustic waves because they are thought to be disruptive, and potentially damaging, to marine life and are not useful for geophysical purposes. The high-frequency acoustic waves are primarily associated with the initial expansion of the air-gun bubble and associated peak in the acoustic pressure time series, which is commonly referred to as the source signature of the air gun. We have developed a quasi-1D model of a seismic air gun coupled to a spherical bubble that accounts for gas dynamics and spatially variable depressurization inside the firing chamber to investigate controls on the initial peak of the source signature. The model is validated against data collected during field tests in Lake Seneca, New York. Simulations and field data show that the initial peak is primarily dependent on the operating pressure. A lower gun pressure results in a smaller peak amplitude and a slower rise time. The slope, the amplitude of the initial peak divided by the rise time, is used as a proxy for environmental impact and can decrease by as much as 50% when the air-gun pressure is reduced from 2000 to 1000 psi. The low frequencies are controlled by the total discharged mass. which is dependent upon the gun volume and pressure. Decreasing the operating pressure while simultaneously increasing the gun volume will reduce the high frequencies while maintaining the desirable low-frequency signals.
机译:地震空气枪是在许多频率下产生声波的宽带源。低频波可用于成像,而高频波在它们可以反射来自地下的兴趣目标之前衰减和/或散射。期望降低高频声波的幅度,因为它们被认为是破坏性的,并且可能损害潜在地生命,并且对地球物理目的无用。高频声波主要与喷气枪气泡的初始膨胀和声压时序列中的相关峰值相关联,这通常被称为气枪的源签名。我们开发了一种耦合到球形气泡的地震空气枪的准1D模型,其占燃烧室内的气体动力学和空间可变减压,以研究源签名的初始峰值上的控制。该模型针对纽约湖赛义卡湖的现场测试期间收集的数据进行了验证。仿真和现场数据表明,初始峰主要取决于操作压力。较低的枪支压力导致较小的峰值幅度和较慢的上升时间。斜率,初始峰的幅度除以上升时间,用作环境影响的代理,并且当气枪压力从2000到1000 psi减少时,可以减小多达50%。低频由总放电质量控制。这取决于枪体积和压力。同时增加枪体积的同时增加工作压力将减少高频,同时保持所需的低频信号。

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