首页> 外文期刊>Journal of Applied Aquaculture >Comparative Hydraulics of Two Fishery Research Circular Tanks and Recommendations for Control of Experimental Bias
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Comparative Hydraulics of Two Fishery Research Circular Tanks and Recommendations for Control of Experimental Bias

机译:两个渔业研究圆形水箱的比较液压系统和控制实验偏差的建议

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Hydraulic characteristics inside two research circular tanks (1.5-m and 1.2-m diameter) with the same volume of water were studied to understand how they might affect experimental bias by influencing the behavior and development of juvenile fish. Water velocities inside each tank were documented extensively and flow behavior studied. Surface inflow to the 1.5-m tank created a highly turbulent and aerated surface, and produced unevenly distributed velocities within the tank. A low-flow velocity, or "dead" zone, persisted just upstream of the surface inflow. A single submerged nozzle in the 1.2-m tank created uniform flow and did not cause undue turbulence or introduce air. Flow behavior in the 1.5-m tank is believed to have negatively affected the feeding behavior and physiological development of a group of juvenile fall chinook salmon, Oncorhynchus tshawytscha. A new inflow nozzle design provided comparable flow behavior regardless of tank size and water depth. Maintaining similar hydraulic conditions inside tanks used for various biological purposes, including fish research, would minimize experimental bias caused by differences in flow behavior. Other sources of experimental bias are discussed and recommendations given for reporting and controlof experimental conditions in fishery research tank experiments.
机译:研究了两个研究圆形水箱(直径分别为1.5-m和1.2-m)中具有相同水量的水力特性,以了解它们如何通过影响幼鱼的行为和发育而影响实验偏差。大量记录了每个水箱内的水流速,并研究了水流行为。流入1.5米水箱的地面产生了高度湍流和充气的表面,并在水箱内产生了速度不均匀的分布。低流速或“死区”一直持续到表层入流的上游。 1.2米储罐中的单个浸入式喷嘴可产生均匀的流量,并且不会引起过度的湍流或引入空气。据信,在1.5米长的水箱中的流动行为对一群少年秋天的奇努克鲑鱼Oncorhynchus tshawytscha的摄食行为和生理发育产生了负面影响。新的进水喷嘴设计提供了可比的水流特性,而与水箱大小和水深无关。在用于各种生物学目的(包括鱼类研究)的水箱内保持类似的水力条件,可以最大程度地减少由流动行为差异引起的实验偏差。讨论了其他实验偏差的来源,并提出了报告和控制渔业研究箱实验中的实验条件的建议。

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