首页> 外文期刊>ICES Journal of Marine Science >Ex situ target strength of rockfish (Sebastes schlegeli) and red sea bream (Pagrus major) in the Northwest Pacific
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Ex situ target strength of rockfish (Sebastes schlegeli) and red sea bream (Pagrus major) in the Northwest Pacific

机译:西北太平洋石鱼(Sebastes schlegeli)和红鲷(Pagrus major)的异位目标强度

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This study determined the ex situ target strength (TS) of rockfish (Sebastes schlegeli) and red sea bream (Pagrus major) in an artificial seawater tank as a means of helping to estimate fishery resources in coastal areas. TS experiments were conducted at frequencies of 38 kHz (split beam), 120kHz (split beam), and 200kHz (dual beam). The species were examined under two conditions: first, live fish confined to a small, net cage; and, second, as free-swimming fish inside a large tank. The study examined 21 rockfish and 20 red sea bream. The data were used to obtain expressions for TS against length and weight for the two species. The relationships between TS and fish length were as follows: for rock-fish, TS_(38 kHz) = 20 log_(10) (L) - 67.7 (r = 0.80), TS_(120 kHz) = 20 log_(10) (L) - 74.3 (r = 0.61), TS_(200 kHz) = 20 log_(10) (L) - 72.8 (r = 0.41); and for red sea bream, TS_(38 kHz) = 20 log_(10) (L)-66.8 (r = 0.86), TS_(120 kHz) = 20 log_(10) (L) - 74.0 (r = 0.65), TS_(200 kHz) = 20 log_(10) (L)-74.1 (r = 0.83). The TS equations for rockfish and red sea bream as a function of fish weight at 38kHz were TS_(38 kHz) = 6.75 log_(10) (W) - 56.0 (r = 0.78) and TS_(38 kHz) = 4.08 log_(10) (W) - 49.9 (r = 0.89), respectively. For comparison, calculations using the Helmholtz-Kirchhoff ray-approximation model based on swimbladder morphology were compared with the measured TS. When the tilt angle of the fish is zero, the mean TS from the model is 3-10 dB higher than the experimental results, although the maximum TS values were only 3-4 dB different.
机译:这项研究确定了人工海水缸中的石鱼(Sebastes schlegeli)和红鲷(Pagrus major)的异位目标强度(TS),以帮助估算沿海地区的渔业资源。 TS实验是在38 kHz(分束),120kHz(分束)和200kHz(双束)的频率下进行的。在两个条件下检查了该物种:首先,将活鱼限制在一个小的网箱中;其次,是在大型水箱中自由游动的鱼。该研究检查了21条石鱼和20条红鲷鱼。数据用于获得针对两种物种的长度和重量的TS表达。 TS与鱼长之间的关系如下:对于石鱼,TS_(38 kHz)= 20 log_(10)(L)-67.7(r = 0.80),TS_(120 kHz)= 20 log_(10)( L)-74.3(r = 0.61),TS_(200 kHz)= 20 log_(10)(L)-72.8(r = 0.41);对于红鲷,TS_(38 kHz)= 20 log_(10)(L)-66.8(r = 0.86),TS_(120 kHz)= 20 log_(10)(L)-74.0(r = 0.65), TS_(200 kHz)= 20 log_(10)(L)-74.1(r = 0.83)。石鱼和红鲷鱼在38kHz处的TS方程作为鱼重的函数为TS_(38 kHz)= 6.75 log_(10)(W)-56.0(r = 0.78)和TS_(38 kHz)= 4.08 log_(10 )(W)-49.9(r = 0.89)。为了进行比较,将使用基于泳囊形态的Helmholtz-Kirchhoff射线近似模型的计算结果与测得的TS进行了比较。当鱼的倾斜角为零时,模型的平均TS比实验结果高3-10 dB,尽管最大TS值仅相差3-4 dB。

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