文章摘要
栾洋,关长涛,石晓天,谌志新.大黄鱼和许氏平鲉声反射特征与体重和体长关系的研究.渔业科学进展,2011,32(2):47-52
大黄鱼和许氏平鲉声反射特征与体重和体长关系的研究
The relationship between acoustic backscattering property and weight and body length of big yellow croaker and black rockfish
投稿时间:2010-05-12  修订日期:2011-01-06
DOI:
中文关键词: 目标强度  反射声截面  深水网箱  许氏平鲉  大黄鱼
英文关键词: Target strength  Reflecting acoustic pressure  Deepwater net-cage  Big yellow croaker  Black rockfish
基金项目:国家863计划课题(2006AA100302)和国家科技支撑计划课题(2006BAD09A13)共同资助
作者单位
栾洋 中国水产科学研究院黄海水产研究所上海海洋大学 
关长涛 中国水产科学研究院黄海水产研究所 
石晓天 中国水产科学研究院渔业机械仪器研究所 
谌志新 中国水产科学研究院渔业机械仪器研究所 
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中文摘要:
      以黄、渤海、东海主要养殖鱼类许氏平鲉和大黄鱼为研究对象,在消声水池中选用KF-668双屏彩色探渔仪等仪器,在50、200 kHz工作频率下对研究对象目标强度及背向反射声截面与体重和体长的关系进行研究。试验结果显示,体重和体长均可用做定量表述上述两种鱼类目标强度的参数。TS大黄鱼在50 kHz频率下身体各向目标强度值介于-32.85~-58.01dB;200kHz频率下身体各向目标强度介于-29.3~-56.99 dB。TS许氏平鲉在50 kHz频率下身体各向目标强度值介于-31.74~-75.87 dB;200 kHz频率下身体各向目标强度介于-31.74~-74.75 dB。大黄鱼和许氏平鲉身体各向目标强度大小为TS侧向>TS背向>TS头向>TS尾向。50 kHz: TS大黄鱼=24.8 log .L (cm)-73.9(侧向); 200 kHz: TS大黄鱼=23-.9 log L (cm)-71.3(侧向)。50 kHz: TS许氏平鲉=25-.7 log L (cm)-69.16 (侧向); 200 kHz: TS许氏平鲉=26.4 log L (cm)-70.8 (侧向)。试验结果为声学水下监测仪器的设计提供数据支持。
英文摘要:
      The aim of this study was to establish the relationship between target strength (TS), dorsal-aspect reflections section and weight, body length of yellow croaker Pseudosciaena crocea (Pc) and black rockfish Sebastes schlegeli (Ss). The results showed that both the weight and body length had the quantitative relationship with the target strength. At 50 kHz, the target strength of different body parts of Pc was between -32.85 and -58.01 dB; at 200 kHz, it was -29.3~-56.99 dB. For the Ss, it was -31.74~-75.87 dB, and -31.74~-74.75 dB, respectively. At both 50 kHz and 200 kHz, the TS of the fish belly was maximal and that of the fish tail was minimal. The correlation between the mean lateral TS and the length was positive, for both 50 kHz and 200 kHz. At 50 kHz: TSPc=24.8 logL (cm)-73.9(side direction); at 200 kHz: TSPc=23.9 logL (cm)-71.3(side direction), and at 50 kHz: TSSs=25.7 logL (cm)-69.16 (side direction); at 200 kHz: TSSs=26.4 logL (cm)-70.8 (side direction). The results of the experiments are expected to provide data support for the design of underwater acoustic monitoring instruments.
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