首页> 外文会议>Proceedings of the 5th international conference on ship and offshore technology >RESISTANCE CHARACTERISTIC OF SUBMERGED PROJECTILE WITH BOW VARIATION BASED ON HULL ENVELOPE COEFFICIENT USING STEADY RANS SIMULATION
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RESISTANCE CHARACTERISTIC OF SUBMERGED PROJECTILE WITH BOW VARIATION BASED ON HULL ENVELOPE COEFFICIENT USING STEADY RANS SIMULATION

机译:基于稳态轨迹模拟的基于包络系数的带弓变深的水下弹丸阻力特性。

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Low resistance and good hydrodynamic properties are one main purpose of a submerged objectdesign. The fore body is a major concern because it not only serve as a space for laying an acousticequipment, but it determines the flow toward the hull. Steady RANS simulation was conducted toexamine the influence of the bow shape to the surrounding flow on submerged projectile-shapedobject without appendages or propulsion. The fore body is varied based on the Hull Envelope equation.The result shows the model with nf=2.75 is the optimum design according to the hydrodynamicefficiency coefficient despite the model with blunt form (nf=1) has a lowest drag because it hassmallest wet surface area. Pressure coefficient distribution on the fore body span and the pressure
机译:低阻力和良好的流体力学特性是水下物体设计的主要目的之一。前躯是一个主要问题,因为它不仅充当放置声学设备的空间,而且还决定了流向船体的能力。进行了稳定的RANS模拟,以研究弓形对周围水流对没有附属物或推进物的浸没式抛物形对象的影响。 \ r \ n结果表明,尽管具有钝形(nf = 1)的模型具有nf = 2.75的模型是根据流体力学\ r \ nefficiency系数优化的设计,但前躯体仍基于Hull Envelope方程进行更改。阻力最小,因为它的湿表面积最小。前肢跨度上的压力系数分布和压力

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