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Numerical simulation of the hydrodynamics within octagonal tanks in recirculating aquaculture systems 被引量:16
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作者 柳瑶 刘宝良 +2 位作者 雷霁霖 关长涛 黄滨 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2017年第4期912-920,共9页
A three-dimensional numerical model was established to simulate the hydrodynamics within an octagonal tank of a recirculating aquaculture system. The realizable k-e turbulence model was applied to describe the flow, t... A three-dimensional numerical model was established to simulate the hydrodynamics within an octagonal tank of a recirculating aquaculture system. The realizable k-e turbulence model was applied to describe the flow, the discrete phase model (DPM) was applied to generate particle trajectories, and the governing equations are solved using the finite volume method. To validate this model, the numerical results were compared with data obtained from a full-scale physical model. The results show that: (1) the realizable k-e model applied for turbulence modeling describes well the flow pattern in octagonal tanks, giving an average relative error of velocities between simulated and measured values of 18% from contour maps of velocity magnitudes; (2) the DPM was applied to obtain particle trajectories and to simulate the rate of particle removal from the tank. The average relative error of the removal rates between simulated and measured values was 11%. The DPM can be used to assess the self-cleaning capability of an octagonal tank; (3) a comprehensive account of the hydrodynamics within an octagonal tank can be assessed from simulations. The velocity distribution was uniform with an average velocity of 15 cm/s; the velocity reached 0.8 m/s near the inlet pipe, which can result in energy losses and cause wall abrasion; the velocity in tank corners was more than 15 cm/s, which suggests good water mixing, and there was no particle sedimentation. The percentage of particle removal for octagonal tanks was 90% with the exception of a little accumulation of 〈5 mm particle in the area between the inlet pipe and the wall. This study demonstrated a consistent numerical model of the hydrodynamics within octagonal tanks that can be further used in their design and optimization as well as promote the wide use of computational fluid dynamics in aquaculture engineering. 展开更多
关键词 recirculating aquaculture systems octagonal tanks hydrodynamic simulation rate of particle removal
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三相LLC谐振变换器中磁轭闭合型三相对称磁集成变压器研究
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作者 杨玉岗 王仕贤 李海潮 《磁性元件与电源》 2024年第12期157-163,共7页
为了扩充容量,LLC谐振变换器采用三相交错并联拓扑,从而有三个变压器,不但影响变换器的体积和效率,而且由于三个变压器的参数不对称,引起不均流问题;传统三相磁集成变压器采用磁轭非闭合EE型结构,其三相参数也不对称。提出一种磁轭闭合... 为了扩充容量,LLC谐振变换器采用三相交错并联拓扑,从而有三个变压器,不但影响变换器的体积和效率,而且由于三个变压器的参数不对称,引起不均流问题;传统三相磁集成变压器采用磁轭非闭合EE型结构,其三相参数也不对称。提出一种磁轭闭合型三相对称磁集成变压器,用于三相Y-Y型LLC谐振变换器,不但减少磁性元件的数量和总体积,而且通过减小闭合磁轭中的磁通摆幅来降低磁芯损耗。对磁集成变压器进行参数设计,采用ANSYS软件对磁集成变压器进行磁场仿真,搭建400V输入、48V/600W输出的实验样机,从仿真和实验两方面验证了磁集成变压器方案的合理性和有效性。 展开更多
关键词 三相LLC谐振变换器 闭合磁轭 三相对称磁集成变压器 三相均流
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