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Guidelines for reducing porpoise mortality in tuna purse seining

机译:降低金枪鱼围网海豚死亡率的指南

摘要

More than a decade has passed since the passage of the Marine Mammal Protection Act of 1972. During that time the U.S. tuna purse seine neet reduced its incidental porpoise mortality rate more than 10-fold. This was made possible through the development of gear and techniques aimed at reducing the frequency of many low probability events that contribute to the kill.ududPorpoise are killed by becoming entangled or entrapped in folds and canopies of the net and suffocating. The configuration of the net, both before and during the backdown release procedure, is a major determinant ofudthe number of porpoise killed. Speedboats can be used to tow on the corkllne to prevent net collapse and also toudadjust the net configuration to reduce net canopies prior to backdown. Deepening a net can reduce the probability of porpoise being killed by prebackdown net collapse. The effects of environmental conditions and mechanicaludfailures on net configuration can result in high porpoise mortality unless mitigated by skilled vessel maneuvers orudprevented by the timely use of speedboats to adjust the net.ududThe backdown procedure is the only means to effectively release captured porpoise from a purse seine. It isudalso the time during the set when most of the mortality occurs. The use of small mesh safety panels and aprons inudthe backdown areas of nets reduces porpoise entanglement, and Increases the probability of an effective release.udThe tie-down points on the net for preparing the backdown channel must be properly located in order to optimize porpoise release. A formula uses the stretched depth of the net to calculate one of these points, making it a simple matter to locate the other. Understanding the dynamics of the backdown procedure permits a thorough troubleshooting of performance, thus preventing the repetition of poorly executed backdowns and thereby reducing mortality.ududPorpoise that cannot be released must be rescued by hand. A rescuer in a rigidly inflated raft can rescue porpoiseudeffectively at any time during a net set. Hand rescue can make the difference between above average kill and zero kill sets. In all circumstances, the skill and motivation of the captain and his crew are the final determinants in the prevention of incidental porpoise mortality in tuna seining. (PDF file contains 22 pages.)
机译:自1972年《海洋哺乳动物保护法》通过以来,已经过去了十多年。在此期间,美国金枪鱼围网围网将其海豚死亡率降低了10倍以上。通过开发旨在减少许多导致杀灭的低概率事件发生的频率的设备和技术,使之成为可能。乌龟被缠住或陷入网状褶皱和令人窒息的窒息而被杀死。在后备释放程序之前和期间,网的配置是杀死海豚数量的主要决定因素。快艇可用于拖拉软木塞,以防止网罩倒塌,还可以调整网架结构,以减少倒塌前的网罩。加深蚊帐可以降低海豚被预先倒网的蚊帐杀死的可能性。环境条件和机械故障对网状结构的影响可能导致海豚死亡率高,除非通过熟练的船舶操纵或通过及时使用快艇来调节网状结构来防止。 ud ud从围网释放捕获的海豚。这也是大多数死亡发生的时间。在网的后部区域使用小网状安​​全面板和围裙会减少海豚的缠结,并增加有效释放的可能性。在准备网的后部通道时,网的绑扎点必须正确放置,以便优化海豚的释放。公式使用网的拉伸深度来计算这些点之一,从而轻松地确定另一点。了解备份过程的动态性可以对性能进行彻底的故障排除,从而防止重复执行执行不当的备份,从而降低死亡率。 ud ud无法释放的目的必须用手挽救。装有刚性充气筏的救援人员可以在网具安装期间的任何时候有效地拯救海豚。手动抢救可以使平均击杀率高于零,而平均击杀率则为零。在任何情况下,船长及其船员的技能和动力都是预防金枪鱼围网期海豚死亡的最终决定因素。 (PDF文件包含22页。)

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