首页> 外文期刊>水産工学. >Estimation of the Propulsive Force Generated by Loggerhead Turtles Caretta Caretta for Appropriate Design of Turtle Releasing Device in Set Nets
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Estimation of the Propulsive Force Generated by Loggerhead Turtles Caretta Caretta for Appropriate Design of Turtle Releasing Device in Set Nets

机译:推进力 的 估计 由 红海龟 科圆 科圆 在 定置网 龟 释放装置的 适当的设计 生成

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Turtle releasing device (TRD) has been developed to reduce incidental deaths of sea turtles in a submerged bag net of a set net. The TRD consists of a 1m square escape vent attached to the roof net of the bag net and a flap door covering the vent. When turtles need to breathe, they start pushing their heads up continuously (defined as pushing up) . If they open the flap door by pushing up, they can spontaneously escape out through the TRD. Hence, to confirm the design adequacy of the TRD, both the closing force of the flap door and the propulsive force of turtles should be confirmed. In this study, the regression equation of peak force value (N) , defined as the peak value of the propulsive force generated by each flipper beat, with flipper beat frequency (Hz) and standard carapace length (m) was obtained ’ from the results of tank experiments. And, peak force values of loggerhead turtles pushing up in the submerged bag net were estimated from the equation. Significant regression equation was obtained as follow: lnF_P = 1.81ln/+ 1.91lnl + 6.26, where F_P, f, and l indicate the peak force value, flipper beat frequency, and standard carapace length, respectively. Estimated values by the equation corresponded well with the measurement values. More than 80% of estimated peak force values during pushing up were larger than 34N that is the force where the flap door of the TRD can close in a current of 0.8 knots from the fulcrum side. The design of the TRD is appropriate for turtles to escape out.
机译:已经开发了龟释放装置(TRD),以减少海龟在封闭袋网中的海龟的偶然死亡。 TRD由1米方叶片附着在袋网的屋顶网上和覆盖通风口的翼片门。当乌龟需要呼吸时,他们开始连续推动他们的抬头(定义为推出)。如果通过推动打开翼盖门,它们可以通过TRD自发地逃脱。因此,为了确认TRD的设计充足性,应确认翼片门的闭合力和海龟的推进力。在本研究中,峰值力值(n)的回归方程,被定义为由每个鳍状脉冲产生的推进力的峰值,从结果中获得了倒鳍拍频率(Hz)和标准甲壳长度(m)坦克实验。并且,从等式估计淹没袋网中推出的Loggerhead龟的峰值力值。获得了显着的回归方程,如下所示:LNF_P = 1.81LN / + 1.91LNL + 6.26,其中F_P,F和L分别表示峰值力值,挡板频率和标准甲壳长度。通过等式的估计值与测量值相对应良好。推迟期间的估计峰值力值的超过80%大于34N,这是Trd的翼移门可以从支点侧靠近0.8节的电流的力。 TRD的设计适合海龟逃脱。

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