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Rough water performance of lightweight high-speed craft

机译:轻型高速船的粗糙水性能

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摘要

Previous studies have shown how the use of composite materials and application of sophisticated design methods can give significantly lighter high-speed craft structures than what is normally achieved for traditional aluminium designs. A reduction in structural mass and a corresponding reduction in displacement improve the craft calm water performance but can be unfavourable regarding the rough water performance. Here, the rough water performance of two versions of a fast patrol vessel, one in aluminium and the other in carbon fibre sandwich, is studied with simplified semi-empirical methods and more advanced non-linear time domain simulations. In speeds up to 30 knots, the rough water performance of the two craft versions is found to be practically equal. At higher speeds, the lighter composite craft experiences higher vertical accelerations than the heavier aluminium craft, which implies less operational availability. Using trim ballast tanks, the rough water performance of the lighter craft is improved, and it is shown that the acceleration levels can be reduced and even lowered relative to the heavier aluminium craft. This means that the calm water advantages of a lighter composite vessel can be utilized with the same ride comfort and operational availability as for a heavier aluminium vessel.
机译:先前的研究表明,与传统的铝设计相比,复合材料的使用和复杂设计方法的应用如何使高速船结构显着更轻。结构质量的减小和位移的相应减小改善了航行中的平静水性能,但是就粗糙水性能而言可能是不利的。在这里,使用简化的半经验方法和更高级的非线性时域模拟研究了两种类型的快速巡逻艇的粗糙水性能,一种在铝中,另一种在碳纤维三明治中。在高达30节的速度下,发现两种型号的粗糙水性能实际上是相等的。在较高的速度下,较轻的复合材料工艺比较重的铝质工艺材料承受更高的垂直加速度,这意味着操作可用性较低。使用装饰压载水箱,可以改善轻型船的粗糙水性能,并且显示出相对于较重的铝船,加速度水平可以降低甚至更低。这意味着可以使用重量更轻的复合船的平静水面优势,并具有与重型铝船相同的乘坐舒适性和操作可用性。

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