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Hydrostatic Stability of Compartmented Structures Supported by Air Cushions

机译:气垫支撑隔室结构的静水稳定性

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This paper presents theoretical formulations to evaluate the restoring moment of structures supported by air cushions at zero forward speed. The air cushion is assumed to be enclosed within a number of compartments that are open to sea. The height of the water plug within the compartments is thus an important parameter. The theory, developed from first principles, is verified against data from inclining experiments conducted on a nine-compartment air cushion supported structure at different drafts and water plug heights. The theory shows that the air cushion affects the stability in two conflicting ways: favorable decrease in the vertical center of gravity caused by the water plug effect and unfavorable enhancement of the internal free surface effect. The net effect on stability depends on the operating conditions as well as on the scale of the structure being considered. A correction factor for the meta-centric height incorporating the air cushion effects is proposed.
机译:本文提出了理论公式来评估气垫支撑结构在零前进速度下的恢复力矩。假定气垫被封闭在许多向海开放的舱室内。因此,隔室内的水塞高度是重要的参数。该理论是从第一原理发展而来的,它是根据在9个隔间的气垫支撑结构在不同吃水深度和水塞高度下进行的倾斜实验数据验证的。理论表明,气垫通过两种相互冲突的方式影响稳定性:由水塞效应引起的垂直重心的有利减小和内部自由表面效应的不利增强。对稳定性的净影响取决于操作条件以及所考虑结构的规模。提出了结合气垫效应的亚中心高度的校正因子。

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