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余英俊,胡晓*,石小涛,张永年,洪亮,柯森繁.基于PIV的拉萨裸裂尻摆尾压力场特征分析[J].实验力学,2019,34(2):289~300
基于PIV的拉萨裸裂尻摆尾压力场特征分析
Analysis on the pressure field characteristics of schizopygopsis younghusbandi Regan tail swinging based on PIV
投稿时间:2018-03-03  修订日期:2018-04-24
DOI:10.7520/1001-4888-18-041
中文关键词:  PIV  拉萨裸裂尻  摆尾行为  压力分布  力学特性  游泳动力
英文关键词:PIV  Schizopygopsis younghusbandi Regan  tail behavior  pressure distribution  mechanical properties  swimming power
基金项目:国家自然科学基金项目 (51609125)、三峡库区生态环境教育部工程研究中心开放基金(2015KF-03)、湖北省高等学校优秀青年科技创新团队计划鱼类过坝技术项目(T201703)
作者单位
余英俊 三峡大学 水利与环境学院湖北 443002 
胡晓* 三峡大学 水利与环境学院湖北 443002 
石小涛 三峡大学 水利与环境学院湖北 443002 
张永年 三峡大学 水利与环境学院湖北 443002 
洪亮 三峡大学 水利与环境学院湖北 443002 
柯森繁 三峡大学 水利与环境学院湖北 443002 
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中文摘要:
      为研究鱼体摆尾时压力场分布特征及其游泳动力的形成过程,本文以拉萨裸裂尻幼鱼为研究对象,利用粒子图像测速技术(PIV)获得幼鱼在自由游泳摆尾的压力分布规律。结果表明:幼鱼需要借助尾鳍的摆动来形成射流推动鱼体前进,沿着尾部轮廓的凹陷处流体压力为负值,正压则沿着尾部轮廓的凸起处分布;拉萨裸裂尻幼鱼的整个摆尾过程可分为“S”形(T=0~50ms)、“C”形(T=50~150ms)和“C”形回摆(T=150~400ms)三个阶段。“S”形阶段,正压区合力F随时间T先减小后增大,负压区合力F随时间T先增大后减小,正压区和负压区的合力F分布范围为0.88~1.03mN/BL、-0.86~-0.38mN/BL;“C”形阶段,正压区和负压区的合力F分别逐渐增大至3.45mN/BL、-1.62mN/BL;“C”形回摆阶段,正压区和负压区的合力F分别逐渐减小至-0.43mN/BL、1.63mN/BL。
英文摘要:
      In order to study the characteristics of pressure field distribution during the tail swinging of fish body and the formation process of swimming dynamic force, the pressure distribution rules for free swimming juvenile fish of schizopygopsis younghusbandi Regan when swinging tail are obtained by Particle Image Velocimetry (PIV) technology. The results show that the juvenile fish needs to form a jet by swinging its caudal fin to move forward. The negative pressure is distributed along the depression of the tail profile, and the positive pressure is distributed along the bulge of the tail profile. The whole process of tail swinging can be divided into three stages, including “S” type (T=0~50ms), “C” type (T=50~150ms) and “C” type with back swinging (T=150~400ms). In the “S”-type stage, the resultant force F of the positive pressure zone decreases firstly and then increases with time, and it is just the opposite in the negative pressure zone. The distribution of resultant force F in the positive and negative pressure zones ranges from 0.88 to 1.03mN/BL and from -0.86 to -0.38mN/BL, respectively. In the “C”-type stage, the resultant force F of the positive pressure zone and the negative pressure zone will gradually increase to 3.45 mN/BL and -1.62 mN/BL, respectively. In the stage of “C”-type with back swinging, the resultant force F of the positive pressure zone and the negative pressure zone will gradually reduce to -0.43 mN/BL, 1.63 mN/BL, respectively.
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