海洋水动力涡轮机技术与环境:设备-生物群相互作用

Souder Heidi Crevison, Ye Li, R. Thresher
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引用次数: 3

摘要

由于海洋水动力(MHK)涡轮机技术仍处于起步阶段,其对环境的影响在很大程度上仍然未知。虽然MHK技术的经验数据很少,但其他人工结构的数据较多。本文讨论了鱼类、哺乳动物、鸟类和底栖生物与MHK装置和其他可能类似于这些MHK技术的人造结构的相互作用。在密西西比河2号船闸和大坝上进行的实验中,几种大小鱼类通过MHK涡轮机的存活率为99%。没有关于哺乳动物、海龟或鸟类与MHK涡轮机相互作用的数据,但对这些动物群体的其他类型的人为死亡和创伤性伤害已经有了很好的记录。与船只和渔具的碰撞极大地影响了大多数海洋哺乳动物群体。生活在浅海水域的大型鲸鱼和利用视觉在水下追捕猎物的潜水鸟都有碰撞的危险。然而,许多装置对鱼类或底栖生物种群有积极影响,因为它们充当鱼类聚集装置或人工珊瑚礁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Marine hydrokinetic turbine technology and the environment: Device-biota interactions
Because marine hydrokinetic (MHK) turbine technologies are still in their infancy, their impacts on the environment remain largely unknown. Although few empirical data exist for MHK technologies, more data are available for other man-made structures. This paper discusses fish, mammal, bird, and benthic organism interactions with MHK devices and other man-made structures that may be analogous to these MHK technologies. In experiments conducted on the Mississippi River Lock and Dam No. 2, the survival of several species of small and large fish that passed through an MHK turbine was 99%. No data on mammal, sea turtle, or bird interactions with MHK turbines were available, but other types of anthropogenic mortality and traumatic injuries to these groups of animals have been well documented. Collisions with ships and fishing gear have greatly impacted most groups of marine mammals. Large whales that inhabit shallow coastal waters and diving birds that use sight to pursue prey underwater are at risk for collision. However, many devices have a positive impact on fish or benthic organism populations because they act as fish aggregation devices or artificial reefs.
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