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首页> 外文期刊>Journal of Ecohydraulics >Salmonid bioenergetic drift-foraging: swimming costs and capture success
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Salmonid bioenergetic drift-foraging: swimming costs and capture success

机译:Salmonid生物能终端漂移 - 游泳成本和捕获成功

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摘要

Software is now available to apply a salmonid bioenergetic drift-foraging model to generate values of net energy intake (NEI) over a range of water depths and velocities. The predictions can be used to build univariate “habitat” suitability curves or multivariate “habitat” selection models for use in instream habitat modelling programs. Capture success and swimming cost sub-models are basic components of the bioenergetic model and there is a need to understand their influence of NEI predictions. Examination of the swimming cost sub-models showed a surprising amount of variation between species and models and this was attributed to the amount and range of data used for their derivation and the different methods of formulating the swimming cost equations. Predictions of optimal velocity for large fish (>96 g) was influenced by the choice of swimming cost sub-model but optimal velocities for smaller fish were dependent on the capture success sub-model. More research is needed to validate the capture success sub-model, especially for larger fish sizes. Swimming costs while intercepting prey, and the cost of swimming in natural streams with turbulence, are other factors that remain uncertain.
机译:现在可以使用软件应用Salmid生物能量漂移觅食模型,以在一系列水深和速度产生净能量摄入量(NEI)的值。预测可用于构建单变量的“栖息地”适用性曲线或多变量“栖息地”选择模型,用于仪器栖息地建模程序。捕获成功和游泳成本子模型是生物能级模型的基本组件,需要了解他们对Nei预测的影响。对游泳成本子模型的检查显示了物种和模型之间的令人惊讶的变化,这归因于用于它们的推导和制定游泳成本方程的不同方法的数量和范围。大鱼(> 96g)的最佳速度预测受游泳成本子模型的选择影响,但较小的鱼类的最佳速度取决于捕获成功子模型。需要更多的研究来验证捕获成功子模型,特别是对于较大的鱼类尺寸。在拦截猎物的同时游泳成本,以及湍流的自然流中游泳的成本,是仍然不确定的其他因素。

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