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首页> 外文期刊>IEEE Journal of Oceanic Engineering >An accurate four-quadrant nonlinear dynamical model for marine thrusters: theory and experimental validation
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An accurate four-quadrant nonlinear dynamical model for marine thrusters: theory and experimental validation

机译:船用推进器的精确四象限非线性动力学模型:理论和实验验证

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摘要

This paper reports two specific improvements in the finite-dimensional nonlinear dynamical modeling of marine thrusters. Previously reported four-quadrant models have employed thin airfoil theory considering only axial fluid flow and using sinusoidal lift/drag curves. First, we present a thruster model incorporating the effects of rotational fluid velocity and inertia on thruster response. Second, we report a novel method for experimentally determining nonsinusoidal lift/drag curves. The model parameters are identified using experimental thruster data (force, torque, and fluid velocity). The models are evaluated by comparing experimental performance data with numerical model simulations. The data indicates that thruster models incorporating both reported enhancements provide superior accuracy in both transient and steady-state responses.
机译:本文报告了船用推进器有限维非线性动力学建模的两个具体改进。先前报道的四象限模型采用薄翼型理论,仅考虑轴向流体流动并使用正弦升/降曲线。首先,我们提出了一个推进器模型,该模型包含了旋转流体速度和惯性对推进器响应的影响。其次,我们报告了一种通过实验确定非正弦提升/拖动曲线的新颖方法。使用实验推进器数据(力,扭矩和流体速度)识别模型参数。通过将实验性能数据与数值模型仿真进行比较来评估模型。数据表明,结合了两个已报告的增强功能的推进器模型在瞬态和稳态响应方面均提供了卓越的精度。

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