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Principles of Underwater Sound
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作者 本刊编辑部 《橡塑资源利用》 2005年第5期44-44,共1页
关键词 《Principles of UNDERWATER Sound》 水声原理》 水声理论 水声资料
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Underwater moving noise source identification based on hybrid near-field acoustical holography 被引量:2
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作者 HU Bo YANG DeSen +1 位作者 SHI ShengGuo SUN Yu 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第9期1570-1578,共9页
Near-field acoustical holography (NAH) is a powerful tool for identifying noise sources and visualizing acoustic field. By recording the acoustic pressures in the near-field, the acoustic quantities in the whole 3-D f... Near-field acoustical holography (NAH) is a powerful tool for identifying noise sources and visualizing acoustic field. By recording the acoustic pressures in the near-field, the acoustic quantities in the whole 3-D field can be reconstructed and predicted. However, the current theory of NAH is not applicable to tracking large scale moving noise sources. Therefore, the hybrid near-field acoustical holography is developed for reconstructing acoustic radiation, which is derived from statistically optimized near-field acoustical holography (SONAH) and moving frame acoustical holography (MFAH). The theoretical formulation is systematically addressed. This method enables us to visualize the noise generated by moving noise sources and the measurement array can be smaller than the source, which improves the practicability and efficiency of this technology. Numerical simulations are presented to demonstrate the advantages of hybrid NAH. Then, two experiments have been carried out with a line array of hydrophones. The results of simulations and experiments support the proposed theory, which shows the advantage of hybrid NAH in the reconstruction of an acoustic field in an underwater holographic measurement. 展开更多
关键词 near-field acoustical holography statistically optimized moving noise source
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