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Experimental Analysis on Sinking Time of Littoral Submarine in Various Trim Angle

机译:各种修剪角度下沿潜艇沉没时间的实验分析

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A submarine must conform to Archimedes' Principle, which states that a body immersed in a fluid has an upward force on it (buoyancy) equal to the weight of the displaced fluid, (displacement). Submarines are ships capable of being submerged. The history of submarines and their operation have largely revolved around being able to alter the density of the vessel so that it may dive below the surface, maintain a depth, and return to the surface as needed. The way modern submarines accomplish this task is to bring in and remove water from tanks in the submarine called ballast tanks. Ballast tanks fit into two categories: those used for major adjustment of mass (main ballast tanks); and those used for minor adjustments (trim tanks). The effect of each tank is plotted and this is compared with the changes in mass and trimming moment possible during operations using a trim polygon to determine whether the ballast tanks are adequate. On the water surface, metacentric height (GM) is important, whereas below the surface it is the distance between the centre of buoyancy and the centre of gravity (BG) which governs the transverse stability of a submarine.
机译:潜艇必须符合阿基米德原理,其中指出,浸在流体中的主体具有在其上(浮力)等于移位的流体,(位移)的重量的向上的力。潜艇能够被淹没船只。潜艇及其操作的历史在很大程度上围绕着能够改变血管的密度,以便需要时可以潜入水中,保持深度,并返回水面。该方式的现代化潜艇完成这项任务是在及时排除积水带来的坦克被称为压载水舱的潜艇。压载舱分为两类:那些用于大容量的大调整(主压载舱);和那些用于细微调整(配平油箱)。每个水箱的效果绘制,这与质量上的变化,并使用修剪多边形来确定压载舱是否足够操作过程中修剪时刻可能比较。在水面上表面,稳心高度(GM)是重要的,而表面下方是浮力中心和重力的支配潜艇的横向稳定性的中心(BG)之间的距离。

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