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Survival and drifting patterns of grass carp eggs and larvae in response to interactions with flow and sediment in a laboratory flume

机译:草鱼卵和幼虫在实验室水槽中与水流和沉积物相互作用的存活和漂移模式

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摘要

A series of laboratory experiments was conducted to better understand the behavior of grass carp eggs and larvae in moving water in order to develop and implement new strategies for control and prediction of their dispersal and drift at early life stages. Settling velocity and density of a representative sample of eggs were estimated, and three trials of flume experiments with different flow conditions were conducted with live eggs in a temperature-controlled setting with a mobile sediment bed. In these trials, egg and larval stages were continuously analyzed over periods of 80 hours; and eggs and larvae interactions with the flow and sediment bed were monitored and characterized qualitatively and quantitatively. Survival rates were quantified after each trial, highlighting physical causes for increased mortality. Detailed flow analysis was correlated to the observed drifting and swimming behavior of eggs and larvae, to estimate distributions across the water depth, as well as traveling and swimming speeds. Evidence of the influence of mean and turbulent flow in the suspension and transport of eggs are reported, and swimming patterns of larvae at different developmental stages are described. These findings support the development of new strategies for monitoring the spread of grass carp eggs and larvae in rivers, and provide new inputs to predict conditions favorable for spawning and hatching, allowing for mitigation measures at early life stages, which are critical to control their dispersal.
机译:进行了一系列实验室实验,以更好地了解草鱼卵和幼虫在流动水中的行为,从而制定和实施新的策略,以控制和预测其在生命早期的扩散和漂移。估算了代表性鸡蛋样品的沉降速度和密度,并在温度控制的环境中使用活动沉积床对活鸡蛋进行了三种不同流量条件下的水槽实验试验。在这些试验中,在80小时内连续分析了卵和幼体阶段。并监测卵和幼虫与流沙床的相互作用,并定性和定量表征。每次试验后对存活率进行量化,突出了导致死亡率增加的物理原因。详细的流量分析与观察到的卵和幼虫的漂流和游动行为相关,以估计整个水深的分布以及行进和游动速度。报告了平均和湍流对卵的悬浮和运输的影响的证据,并描述了处于不同发育阶段的幼体游动方式。这些发现支持新策略的发展,以监测草鱼卵和幼虫在河流中的传播,并为预测有利于产卵和孵化的条件提供新的投入,从而可以在生命早期阶段采取缓解措施,这对于控制其扩散至关重要。

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