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首页> 外文期刊>Polish Maritime Research >THE INFLUENCE OF THE CUBOID FLOAT'S PARAMETERS ON THE STABILITY OF A FLOATING BUILDING
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THE INFLUENCE OF THE CUBOID FLOAT'S PARAMETERS ON THE STABILITY OF A FLOATING BUILDING

机译:长方体浮法参数对浮楼稳定性的影响

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Usually, the concept of sufficient stability of a floating structure is connected with the capacity to keep a small heel angle despite the moment of heeling. The variable responsible for these characteristics is the initial metacentric height, which is the relation between the hydrostatic features of the pontoon and the mass properties of the entire object. This article answers the questions of how heavy the floating system should be, what the minimum acceptable draft is, and whether it is beneficial to use internal fixed ballast. To cover various technologies, a theoretical model of a cuboid float with average density representing different construction materials was analysed. The results indicate that the common practice of using heavy and deep floating systems is not always reasonable. In the case of floating buildings, which, unlike ships, can be exploited only under small heel angles, the shape and width of the submerged part of the object may influence the stability more than the weight or draft.
机译:通常,浮动结构的充分稳定性的概念与保持小脚跟角度的容量相连,尽管磨牙的时刻。负责这些特性的可变是初始的偏心高度,这是浮子的静水特征与整个物体的质量特性之间的关系。本文回答了浮动系统应该是多么繁重的问题,最低可接受的草案是什么,以及是否有利于使用内部固定镇流器。为了涵盖各种技术,分析了具有代表不同建筑材料的平均密度的长方体浮点的理论模型。结果表明,使用沉重和深浮动系统的常见做法并不总是合理的。在浮动建筑物的情况下,与船舶不同,可以仅在小鞋跟角下进行利用,物体的浸没部分的形状和宽度可以影响比重量或草稿更大的稳定性。

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