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Experimental Study on the Identification of Scholte Waves Based on Acoustic Pressure Field Measurement
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作者 liang minshuai PENG Linhui 《Journal of Ocean University of China》 SCIE CAS CSCD 2023年第5期1193-1200,共8页
Scholte waves at the seafloor interface are generally identified by their velocity features and seismic fields,which are measured using ocean bottom seismometers and geophones.These methods are effective in cases wher... Scholte waves at the seafloor interface are generally identified by their velocity features and seismic fields,which are measured using ocean bottom seismometers and geophones.These methods are effective in cases where there is a considerable difference between the velocities of Scholte and acoustic waves in water.However,they are ineffective when the velocities of these two types of waves are close to each other.Thus,in this paper,a method based on acoustic pressure field measurement for identifying Scholte waves is proposed according to their excitation and propagation characteristics.The proposed method can overcome the limitations on the velocities of two types of waves.A tank experiment is designed and conducted according to the proposed method,and an ocean environment is scaled down to the laboratory size.Acoustic measurements are obtained along virtual arrays in the water column using a robotic apparatus.Experiments show that changes in Scholte wave amplitudes,depending on different source depths and propagation distances,are consistent with the theoretical results.This means that Scholte waves generated at the seafloor interface are successfully measured and identified in the acoustic pressure field. 展开更多
关键词 interface waves at seafloor measurement of Scholte waves identification of Scholte waves
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Scholte波识别水池缩比实验
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作者 李东林 梁民帅 王志超 《应用声学》 CSCD 北大核心 2023年第4期774-780,共7页
该文基于简正波分离识别Scholte波的方法,分析了之前Scholte波识别水池缩比实验结果中出现较大误差的原因,提出从声场中优先提取其他阶简正波的方法来改善实验结果、降低实验误差,并证实增加合成孔径垂直阵采样点数至119点(一次采样期... 该文基于简正波分离识别Scholte波的方法,分析了之前Scholte波识别水池缩比实验结果中出现较大误差的原因,提出从声场中优先提取其他阶简正波的方法来改善实验结果、降低实验误差,并证实增加合成孔径垂直阵采样点数至119点(一次采样期间首末阵元信号保持良好相关性),有助于改善水池Scholte波识别误差,从而使水池Scholte波识别缩比使实验结果与理论值更为接近。水池缩比实验的结果证明该方法改善了Scholte波识别实验的结果,降低了声源深度较浅、Scholte波激发较弱时的实验误差,使水池缩比实验简正波分离识别Scholte波的方法更加可靠。 展开更多
关键词 Scholte波 水池实验 简正波分离
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