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幼鱼体长差异性对群游推进效率的影响研究
Study on the free swimming mechanical characteristics of juvenile grass fishes based on vorticity analysis
投稿时间:2021-03-02  修订日期:2021-05-19
DOI:
中文关键词:  群游  数值模拟  尾流结构  推进效率
英文关键词:Group swimming  Numerical simulation  Wake structure  Propulsion efficiency
基金项目:国家自然科学基金项目(面上项目,重点项目,重大项目)
作者单位邮编
龙泽宇 三峡大学 443000
胡晓* 三峡大学 443000
摘要点击次数: 138
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中文摘要:
      为探究上、下游鱼之间的体长差异性对鱼群群游效率的影响,本文基于Fluent动网格技术,对幼鱼鱼群稳定游动状态下的鱼体周身涡量和推进效率等进行了数值模拟分析。计算结果表明,群游幼鱼的推进效率相比单尾鱼最高可提升5%,上游鱼体长大于下游鱼体长(ΔL>0cm)时,随体长差异的增大鱼群尾流结构(d/D)增大、整体推进效率减小;上游鱼体长小于下游鱼体长(ΔL<0cm)时,随体长差异的增大鱼群尾流结构(d/D)和整体推进效率减小。当上、下游幼鱼的体长差为ΔL=0.5cm时,三角形组合的鱼群整体推力系数和功率系数最高分别可达5.11?10-3、1.71?10-3,该组合下的整体推进效率可达17.2%。
英文摘要:
      In order to explore the impact of the difference in body length between the upstream and downstream fish on the efficiency of the fish school, this paper is based on the Fluent dynamic grid technology, and the vorticity and propulsion efficiency of the fish body under the stable swimming state of the juvenile fish school are analyzed. Carried out numerical simulation analysis. The calculation results show that the propulsion efficiency of shoal juveniles can be increased by up to 5% compared with single-tailed fish. When the body length of the upstream fish is greater than the body length of the downstream fish ΔL>0cm, the difference of body length increases with the increase of the fish wake structure (d /D) increases, the overall propulsion efficiency decreases; when the upstream fish body length is smaller than the downstream fish body length ΔL<0cm, the fish school wake structure (d/D) and overall propulsion efficiency decrease with the increase of the body length difference. When the body length difference between the upstream and downstream juveniles is ΔL=0.5cm, the overall thrust coefficient and power coefficient of the triangle combination can reach 5.11?10-3 and 1.71?10-3, respectively. The overall propulsion efficiency under this combination can reach 17.2%.
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