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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >The impact of bubble curtains on seismic air-gun signatures and its high-frequency emission
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The impact of bubble curtains on seismic air-gun signatures and its high-frequency emission

机译:气泡窗帘对地震喷枪签名及其高频发射的影响

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In marine seismic acquisition, air guns are the most common source and, in recent years, research on their impact on the marine environment has increased. The main focus is on the reduction of emitted high frequencies, approximately greater than 200 Hz, which are normally not useful for seismic imaging. Therefore, potential ways to reduce the high frequencies from air guns are investigated and the development of alternative source types has increased. We have investigated the impact of bubble curtains on the source signature from seismic air guns because bubble curtains are known tomitigate high frequencies in other applications, e.g., pile driving for offshore wind farms. We have conducted tank experiments with two different configurations of bubble curtains around a single air gun and compared the results to the conventional source signature without a bubble curtain. The two different bubble curtains vary in size and in the way they are attached to the air gun. The amount of injected air into the bubble curtains is varied for both configurations. We compare the measured results to simulated data using a common model for air-gun source signatures. The results indicate a reduced peak amplitude with increasing air injection through the bubble curtain. This corresponds to a gradually decreasing frequency content for frequencies greater than 50 Hz. The frequencies of the source signal of less than 50 Hz are practically unaffected by the bubble curtain. In addition, the bubble time period of the source signal is slightly increased with an increasing amount of air injection through the bubble curtain. The main cause for the reduced peak amplitude is likely to be a buffer effect of the bubble curtain on the released air. Hence, a bubble curtain concentrated around the air-gun ports could be an efficient and practical solution to reduce the high-frequency acoustic emission from air guns.
机译:在海洋地震习得中,空气枪是最常见的来源,近年来,对他们对海洋环境的影响的研究已经增加。主要重点是减少发射的高频,大约大于200 Hz,通常不用于地震成像。因此,研究了降低空气枪的高频的潜在方法,并且替代源类型的发展增加。我们研究了泡罩窗帘对地震空气枪的源签名的影响,因为泡罩窗帘是已知的其他应用中的高频,例如海上风电场的桩驾驶。我们对单个气枪周围的两种不同的泡罩窗帘配置进行了坦克实验,并将结果与​​常规源签名进行比较而没有泡罩窗帘。两个不同的气泡窗帘的尺寸变化,并以它们连接到气枪的方式。两种配置都改变注入气泡进入气泡帘的量。我们使用用于气枪源签名的共同模型将测量结果与模拟数据进行比较。结果表明,通过气泡帘,空气喷射增加了降低的峰值幅度。这对应于频率大于50Hz的频率内容逐渐降低。小于50Hz的源信号的频率实际上不受泡罩的影响。另外,通过气泡帘的空气喷射量增加,源信号的气泡时间段略微增加。降低峰值幅度的主要原因可能是释放空气上的气泡帘的缓冲效果。因此,围绕气枪港口浓缩的气泡帘可能是一种有效实用的解决方案,以降低空气枪的高频声排放。

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