基于CFD的大攻角运动水下体动力特性评估

Myungjun Jeon, Thi Loan Mai, Hyeon Kyu Yoon, J. Ryu, Wonhee Lee, Pyungmo Ku
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引用次数: 4

摘要

具有多种控制输入的水下体可以执行大漂移角和大攻角,以及基本的控制,如直线运动和转弯。本研究的目的是分析由6个推进器和6个控制面组成的具有大漂移角和大攻角运动的水下体的动力特性。通过计算流体动力学(CFD)对虚拟圈养模型试验进行分析,确定了水下体的动态特性。建立了面向大角度运动的虚拟约束模型试验矩阵。基于该试验矩阵,进行了漂移角约为30°、攻角约为90°的虚拟俘虏模型试验。分析了大角度运动条件下作用在水下体水平和垂直表面的水动力特性,建立了水动力模型。此外,还进行了机动仿真,对大角度运动的标准机动性能和动力学特性进行了评估。考虑到水下体的形状特点,我们试图通过分析大角度运动时的水动力特性来验证分析结果的可行性。
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Evaluation of Dynamic Characteristics for a Submerged Body with Large Angle of Attack Motion via CFD Analysis
: A submerged body with varied control inputs can execute large drift angles and large angles of attack, as well as basic control such as straight movement and turning. The objective of this study is to analyze the dynamic characteristics of a submerged body comprising six thrusters and six control planes, which is capable of a large drift angle and angle of attack motion. Virtual captive model tests via were analyzed via computational fluid dynamics (CFD) to determine the dynamic characteristics of the submerged body. A test matrix of virtual captive model tests specialized for large-angle motion was established. Based on this test matrix, virtual captive model tests were performed with a drift angle and angle of attack of approximately 30° and 90°, respectively. The characteristics of the hydrodynamic force acting on the horizontal and vertical surfaces of the submerged body were analyzed under the large-angle motion condition, and a model representing this hydrodynamic force was established. In addition, maneuvering simulation was performed to evaluate the standard maneuverability and dynamic characteristics of large-angle motion. Considering the shape characteristics of the submerged body, we attempt to verify the feasibility of the analysis results by analyzing the characteristics of the hydrodynamic force when the large-angle motion occurred.
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