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基于PIV技术的圆形循环水养殖池流场
引用本文:朱放, 胡佳俊, 孔剑桥, 桂福坤, 潘训然, 冯德军. 基于PIV技术的圆形循环水养殖池流场[J]. 农业工程学报, 2021, 37(23): 296-300. DOI: 10.11975/j.issn.1002-6819.2021.23.035
作者姓名:朱放  胡佳俊  孔剑桥  桂福坤  潘训然  冯德军
作者单位:1.浙江海洋大学船舶与海运学院,舟山 316022;2.浙江海洋大学国家海洋设施养殖工程技术研究中心,舟山 316022;3.浙江海洋大学水产学院,舟山 316022
基金项目:国家自然科学基金项目(31902425);浙江省自然科学基金项目(LGN21C190010);舟山市科技项目(2020C21003);国家级大学生创新创业训练项目(202010340011)
摘    要:
为研究进水管的设置距离和角度对双管进水式圆形循环水养殖池水动力特性的影响,该研究通过模型试验的方法,利用粒子图像测速技术(Particle Image Velocimetry,PIV)测量了不同进水管设置方式下养殖池内的流场.试验设计了3组进水管距池壁距离(进水管与池壁的最近距离,即进水管设置距离d),每组距离工况下设...

关 键 词:水产养殖  流场  进水方式  水动力特性
收稿时间:2021-08-05
修稿时间:2021-11-19

Flow field of circular recirculating aquaculture tank based on PIV
Zhu Fang, Hu Jiajun, Kong Jianqiao, Gui Fukun, Pan Xunran, Feng Dejun. Flow field of circular recirculating aquaculture tank based on PIV[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2021, 37(23): 296-300. DOI: 10.11975/j.issn.1002-6819.2021.23.035
Authors:Zhu Fang  Hu Jiajun  Kong Jianqiao  Gui Fukun  Pan Xunran  Feng Dejun
Affiliation:1.School of Naval Architecture and Maritime, Zhejiang Ocean University, Zhoushan 316022, China;2.National Engineering Research Center for Marine Aquaculture, Zhejiang Ocean University, Zhoushan 316022, China;3.School of Fisheries, Zhejiang Ocean University, Zhoushan 316022, China
Abstract:
A recirculating system can be used to filter and clean the water by recycling it back to the fish culture tanks in modern aquaculture. A double-pipe water inlet mode has also been commonly used for the circular aquaculture tank in actual production in recent years. Taking the dual inlet mode as the research object, this study aims to explore the influence of the position and angle of the inlet pipe on the solid waste collection and hydrodynamic characteristics in the circular recirculating aquaculture tank. A model test was adopted using image processing and particle image velocimetry (PIV) for a higher performance of the system. An investigation was made on the movement, accumulation, and flow field distribution of solid wastes in the recirculating aquaculture tank under different inlet pipe settings. A systematic experiment was then designed for three sets of inlet positions and nine groups of inlet angles under each group of position conditions. A camera was set directly above the tank, further to record the movement and collection process of the waste under different working conditions. The waste collection performance was then evaluated to quantify the amount of residual waste in the aquaculture tank. Meanwhile, the PIV technology was used to measure the flow field of the water layer 1 cm from the bottom of the tank under various working conditions. The hydrodynamic characteristics were associated with the Average velocity (vavg), Coefficient resistance (Ct), and Velocity uniformity coefficient (U). The test results showed that: 1) The inlet setting outstandingly determined the waste collection and hydrodynamic characteristics of the tank, where they first increased and then weakened, with the increase of the position (d) of the inlet. 2) An optimal inlet angle depended mainly on the position of the inlet of the tank. Furthermore, the optimal angle of the inlet decreased gradually, as the position of the inlet increased. 3) An optimal performance of the system was achieved for the sewage collection and hydrodynamic characteristics of the breeding pond, where the setting distance of the inlet pipe was d=0, and the angle of the inlet pipe was 40°-50°. An optimal collection of solid wastes in the tank was also obtained, where the water inlet pipe was set at a distance d=1/4r and the angle was 20°-30°. Furthermore, an optimal sewage collection and hydrodynamic characteristics of the breeding pond was achieved, where the setting distance of the inlet pipe was d=1/2 r, and the angle of the inlet pipe was 10°-20°. Consequently, an optimal combination of parameters was that the inlet pipe position of d=1/4r, and the inlet pipe angle of 20°-30°, indicating the optimal sewage collection and hydrodynamic characteristics in the aquaculture pond. The finding can also provide a strong reference for the inlet setting of the recirculating aquaculture tank in the industrial circulating water.
Keywords:aquaculture   flow field   inlet configuration   hydrodynamic characteristics
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