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Sound pressure wave and particle velocity wave of the receiving theory of iner- tial sphere type vector hydrophone was studied. Based on measurement principle of particle velocity hydrophone with co-oscillating sphere, the mathematical expressions of sound wave receiving response to both rigid sphere and elastic sphere in a freely moving acoustic plane- wave field were derived, and the relationship between the frequency response curves of velocity hydrophone and its geometrical dimension and density was analyzed. In addition, according to sound wave receiving theory of spherical receiving transducer, the mathematical expression of the vector hydrophone's sound pressure receiving response was derived, and the laws of the pressure distribution on the surface of particle velocity hydrophone and relationships between the pressure receiving coefficient of the vector hydrophone and the parameters, such as the dimensions of the receiving surface, the radius of the particle velocity hydrophone, the layout position and radius of sound pressure hydrophone, were analyzed and calculated. The analysis method of sound wave receiving theory of vector hydrophone was established, which lays the theoretical foundation for design and development of the vector hydrophone.  相似文献
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黄建人 《应用声学》1995,14(3):48-48
1994年11月5日至6日,由中国船舶工业总公司主持,七位长期从事水声及水声测量的专家教授在陕西西安对东南大学研制的《SZC-1型水声自动化测量系统。进行了技术鉴定.专家们认为,该测量系统功能强,可进行指向性图案、发射响应与接收灵敏度的频率响应曲线、发射声功率、声源级、空间指向性因数、发射效率以及通道间相位差等多项测量.该系统可同时进行十六路接收指向性和十六路技能器接收灵敏度响应的测量,是本系统的特色,优于国内外同类产品.由于采用了计算机数字处理和控制技术,测量的自动化程度高,对于换能器的批量测试可节省大…  相似文献
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