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Influence of turbulence and in-stream structures on the transport and survival of grass carp eggs and larvae at various developmental stages

机译:湍流和入流结构对不同发育阶段草鱼卵和幼虫运输和存活的影响

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Understanding the response of grass carp to flow and turbulence regimes during early life stages is fundamental to monitoring and controlling their spread. A comprehensive set of hydrodynamic experiments was conducted with live grass carp eggs and larvae, to better understand their drifting and swimming patterns with 3 different in-stream obstructions: (1) a gravel bump, (2) a single cylinder, and (3) submerged vegetation. The hydrodynamic behavior of eggs and larvae with each obstruction was continuously monitored for about 85 consecutive hours. Transient spatial distributions of the locations of eggs and larvae throughout the water column were generated for each flow scenario. Results show that the active swimming capabilities of larvae allow them to seek areas of low turbulence and low shear stresses, and that eggs are susceptible to damage by high levels of turbulence, which was further corroborated with tests in an oscillating grid-stirred turbulence tank. Our study seeks to better inform field collection of grass carp during early life stages, and to guide the design of alternative approaches to control the dispersal of this invasive species in North America.
机译:了解草鱼在生命早期对流量和湍流状态的响应是监测和控制其传播的基础。用活的草鱼卵和幼虫进行了一套综合的水动力实验,以更好地了解它们在3种不同的流内障碍物中的漂流和游泳方式:(1)砾石颠簸,(2)单缸,以及(3)淹没的植被。连续约85小时连续监测卵和幼虫各阻塞的水动力行为。对于每种流动情况,都生成了整个水柱中卵和幼虫位置的瞬时空间分布。结果表明,幼虫的主动游泳能力使它们能够寻找低湍流和低剪切应力的区域,并且卵容易受到高水平湍流的破坏,这一点在振荡搅拌式湍流储罐中的测试中得到了进一步证实。我们的研究旨在更好地了解草鱼在生命早期的田间状况,并指导控制该入侵物种在北美的扩散的替代方法的设计。

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