首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >FINITE ELEMENT ANALYSIS OF STRUCTURE STRENGTH ON ENGINE ROOM OF A SUBMERGED WATERJET PROPELLED SHIP
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FINITE ELEMENT ANALYSIS OF STRUCTURE STRENGTH ON ENGINE ROOM OF A SUBMERGED WATERJET PROPELLED SHIP

机译:淹没船舶发动机室结构强度有限元分析

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The submerged waterjet offers further benefits with respect to excellent stealth performance, low inflow energy loss, high propulsive efficiency at low and medium speeds, and excellent underwater acoustic performance. It also offers potential for space savings as a result of the high integration with the hull bottom. A parameterized stern line layout method for DTMB 5415 is proposed to design a new ship type fitted with submerged waterjet propeller. Based on the finite element method, the strength analysis and modal analysis of the new hull-form are carried out. The transom equipped with submerged waterjets is constructed by three main parameters which includes tunnel lengths, tunnel transverse positions and shaft angles. CFD calculation of hull flow field and resistance was carried out based on the designed new ship type to evaluate hydrodynamic load. Based on the finite element method, MSC.Patran/Nastran and Abaqus CAE was used to analysis the stress and deformation of the engine room under the static load, and the modal analysis of the engine room was carried out to calculate the vibration frequency and mode of the engine room. Numerical results show that the stress and deformation of the section are agree with the design and the section will not be broken. The different order total modal deformation and natural frequency are given, which lays a foundation for the research of vibration noise prediction and noise reduction technology of ship engine room.
机译:淹没的水射流在出色的隐形性能,低流入能量损失,低的中等速度下提供了进一步的良好益处,以及低和中等速度,以及出色的水下声学性能。由于与船体底部的高集成,它还提供空间节省潜力。建议设计DTMB 5415的参数化船尾线布局方法,设计了一种配有埋水坑推进器的新船型。基于有限元方法,进行了新船体形式的强度分析和模态分析。配备浸没水射流的横梁由三个主要参数构成,包括隧道长度,隧道横向位置和轴角。基于设计的新船舶类型进行船体流场和电阻的CFD计算,以评估流体动力载荷。基于有限元方法,使用MSC.Patran / Nastran和ABAQUS CAE来分析静载荷下发动机室的应力和变形,并进行了发动机室的模态分析以计算振动频率和模式发动机室。数值结果表明,该部分的应力和变形与设计一致,部分不会被打破。给出了不同的数码模态变形和自然频率,为船舶发动机室的振动噪声预测和降噪技术进行了研究。

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