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Cold-thermal wake characteristics of submarine in temperature-density stratified seawater

机译:潜艇温度密度分层海水的冷热唤醒特征

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摘要

In this paper, the three-dimensional calculation model of 1/72 LSII submarine is established by finite volume method,and combining frame motion, user-defined function and polynomial profile, the simulation of propeller rotation andtemperature-density stratified seawater are realized. Based on this model, the effects of diving depth, sailing speed andwake velocity on cold-thermal wake characteristics are analyzed. The conclusions are as follows. 1) Considering thetemperature-density stratified seawater is a sufficient and necessary condition for simulating the cold-thermal wakecharacteristics of submarine. 2) Submarine perturbs the low-temperature seawater to form the cold wake, then the coldwake and the thermal wake are superimposed to form the cold-thermal wake characteristics in downstream sea-surface. 3)Cold wake characteristics of upstream sea-surface are related to the diving depth directly, but aren’t related to the sailingspeed and wake velocity. The contents above could provide reference for the high-precision simulation of submarine’scold-thermal wake characteristics.
机译:在本文中,通过有限体积法建立了1/72 LSII潜艇的三维计算模型, 并组合帧运动,用户定义的功能和多项式轮廓,螺旋桨旋转的仿真和 实现了温度密度分层海水。基于此模型,潜水深度,帆船速度和帆船速度的影响 分析了冷热唤醒特性的唤醒速度。结论如下。 1)考虑到 温度密度分层海水是模拟冷热唤醒的充分和必要条件 潜艇的特征。 2)潜水艇渗透低温海水形成寒冷醒来,然后冷 唤醒和热唤醒叠加,形成下游海面的冷热唤醒特性。 3) 上游海面的冷唤醒特性直接与潜水深度有关,但与帆船无关 速度和唤醒速度。上述内容可以为潜艇的高精度模拟提供参考 冷热唤醒特性。

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