双层网底鲆鲽网箱耐流特性的数值模拟  被引量:1

Numerical simulation of the anti-current characteristics of double-bottom cages for flounder fish

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作  者:崔勇[1] 关长涛[1] 李娇[1] 公丕海[1] 

机构地区:[1]农业部海洋渔业可持续发展重点试验室,青岛市海水鱼类种子工程与生物技术重点试验室,中国水产科学研究院黄海水产研究所,山东青岛266071

出  处:《渔业现代化》2016年第6期39-44,共6页Fishery Modernization

基  金:现代农业产业技术体系建设专项(CARS-50-G05);鳌山科技创新计划(2015ASKJ02-03);国家自然科学基金(30972256,51239002)

摘  要:双层网底鲆鲽网箱的网底结构在水流作用下会发生倾斜与转动。为确保网底结构的安全,需对其耐流特性进行动力分析。为此,根据有限元法建立了流场中双层网底网箱受力的数学模型,通过计算机数值模拟对双层网底的最大位移与倾角进行研究,并将双层网底的计算结果与单层网底进行对比分析。模拟结果显示,随着流速的增大,上层网底与下层网底的倾角逐渐增加,并且两层网底的倾斜方向恰好相反。研究发现,当实际海区流速超过93 cm/s时,双层网底网箱的上、下两层网底会发生接触碰撞,从而影响网底的稳定。此外,双层网底网箱的下层网底位移要大于单层网底网箱,但其倾角却小于后者,这可能与双层网底网箱的上层网底设计有关。The bottom frame of flounder fish cages with double bottom floors would incline and rotate incurrent. To ensure the cage bottom structure safety, it is necessary to carry out dynamic analysis for the anti-current characteristics of the cages. Herein, based on the finite element method, a numerical model of thedouble-bottom cage deformation in current force is developed and then the maximum displacement and pitch ofthe double bottom are studied. In addition, the calculated results of double-bottom cage are compared withthose of single-bottom cage. The simulation results show that the pitches of the upper and lower bottom floorsincrease along with the increase of flow velocity, and the dip directions of the two bottom floors are justopposite. It is found that when the flow velocity exceeds 93 cm/ s in sea, the upper and lower bottom floors ofthe cage would collide with each other and affect the safety of the cage bottom. Moreover, the displacement ofthe lower bottom of double-bottom cage is larger than the bottom displacement of the single bottom cage, butthe pitch of lower bottom is smaller than the bottom pitch of the single bottom cage, which might be related tothe design of the upper bottom of the cage.

关 键 词:双层网底 耐流特性 有限元 鲆鲽网箱 

分 类 号:S953.4[农业科学—水产养殖]

 

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