系统仿真学报 ›› 2018, Vol. 30 ›› Issue (9): 3546-3551.doi: 10.16182/j.issn1004731x.joss.201809040

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不同横流攻角时抛弃式探头水动力学特性研究

陈振涛, 刘凤, 王晓蕾, 叶松   

  1. 国防科技大学气象海洋学院,江苏 南京 211101
  • 收稿日期:2017-01-06 出版日期:2018-09-10 发布日期:2019-01-08
  • 作者简介:陈振涛(1983-),男,山东临朐,博士,讲师,研究方向为海洋探测技术; 刘凤(1983-),女,重庆,硕士,讲师,研究方向为海洋探测装备。
  • 基金资助:
    国家自然科学基金(41406107)

Hydrodynamic Characteristics Study of Expendable Probe at Multi Cross Flow and Multi Attack Angle

Chen Zhentao, Liu Feng, Wang Xiaolei, Ye Song   

  1. College of Meteorology and Oceanography, National University of Defense Technology., Nanjing 211101, China
  • Received:2017-01-06 Online:2018-09-10 Published:2019-01-08

摘要: 抛弃式探头的下沉运动,主要受横流和攻角影响。采用混合网格结合$k-\varepsilon$湍流模型,对下沉运动进行数值计算,分析在5个不同攻角、5个不同横流时的水动力学特性。结果表明:探头在水平方向Cd随横流增大而显著增大,垂直方向Cd增幅较小;探头在水平方向Cd随攻角增大而逐渐增大,45°攻角附近后开始减小,垂直方向Cd则持续增大;设定2 m/s下落时,探头头、尾部力矩不同,使得探头姿态发生改变,最终以一固定攻角匀速下落。可为进一步提高抛弃式探头的下沉数学模型的测深准确度提供依据。

关键词: 抛弃式探头, 不同横流, 不同攻角, 水动力学特性

Abstract: The cross flow and attack angle are the two main influencing factors in the process of expendable probe releasing and sinking. The numerical simulation model is developed based on the hybrid grid and $k-\varepsilon$ turbulent model, and the hydrodynamic characteristics of five cross flows and five attack angles are analyzed. The results show that the drag coefficient of the probe in the horizontal direction increases gradually, while the drag coefficient of the probe in the vertical direction increases slowly with the increase of the cross flow. The drag coefficient in the horizontal direction increases gradually with the increase of attack angle and turns to decrease nearby 45°, while the drag coefficient in the vertical direction increases continuously. The drag interpolation between probe head and tail is related with the larger attack angle, with 2m/s falling speed, which makes the attack angle change, and the probe sinking at a constant speed in a fixed attack angle ultimately. The results can provide evidences to improve the depth measurement accuracy of probe.

Key words: expendable probe, multi cross flow, multi attack angle, hydrodynamic characteristics

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