水系冲浪板上波浪特性的研究类型固定和系泊

Sujantoko Sujantoko, Wisnu Wardhana, E. Djatmiko, H. Armono, Wahyu Suryo Putro, A. Haryono
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引用次数: 1

摘要

浮动防波堤(PGT)是一种波浪屏障,可以减少海滩的磨损和波浪能量,从而降低到达海滩的波浪的能量。与传统防波堤结构相比,如果要保护的区域有足够大的深度,PGT结构更有优势。这种结构更灵活,因为高程随潮汐变化,所以这种结构可以同时用作码头。它也没有冲刷和沉积,经常发生在传统防波堤结构的脚。本研究旨在通过在ITS海洋工程系波浪水槽实验室对PGT物理模型进行测试,在水深80 cm,波高3.5-5.5 cm,波周期0.5-2秒,系泊绳角度(45度,60度,90度)的条件下,衰减和反射不同桩系泊类型PGT配置的波浪。PGT以各种纵向和横向方向排列到海岸。通过实验可知,PGT结构的构型和宽度对波的透射和反射的影响受系泊角度的影响。宽度最大的构型3在45°系泊角时透射系数Kt = 0.797,在90°系泊角时反射系数Kr = 0.572。在类型3中,固定配置相对于其他配置的值最大,Kt = 0.431-0.623, Kr = 0.053-0.997。因为在构型1和构型2中,结构的背面没有桩支撑,所以会发生摆动,从而产生波浪。而波浪坡度的影响,Kt会随着波浪坡度的减少而增加,相反,Kt的值会随着波浪坡度的增加而减小。关键词:浮式防波堤,桩,系绳,系泊
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STUDI KARAKTERISKTIK GELOMBANG PADA FLOATING BREAKWATER TIPE TERPANCANG DAN TAMBAT
Floating breakwater (PGT) is designed to be applied as a wave barrier to reduce beach abrasion and wave energy so that waves coming to the beach have their energy reduced. Compared to conventional breakwater structures, PGT structures are more advantageous if the area to be protected from impact waves has a large enough depth. This structure is more flexible because the elevation follows the tides, so this structure can be used as a wharf at the same time. It is also free from the scouring and sedimentation that often occurs on the feet of conventional breakwater structures. This study aims to attenuate and reflect waves from various PGT configurations of piling and mooring types, by testing the physical model of PGT in the wave flume laboratory of the Department of Ocean Engineering ITS, at a water depth of 80 cm, a wave height of 3.5-5.5 cm, a wave period of 0.5-2 seconds, and the angle of the mooring rope (45o, 60o, 90o). PGT is arranged in a variety of longitudinal and transverse directions to the coast. Based on the experiment, it is known that the effect of configuration and width on the PGT structure on wave transmission and reflection is influenced by the mooring angle. Configuration 3 with the largest width can give the best transmission coefficient Kt = 0.797 at 45o mooring angle and reflection coefficient Kr = 0.572 at 90o mooring angle. In type 3 fixed-configuration gives the greatest value Kt = 0.431-0.623 and Kr = 0.053-0.997 compared to other configurations. Because in configurations 1 and 2 the back of the structure is not supported by piles, so a swing occurs which generates waves. While the effect of the slope of the wave, Kt will increase as the number of waves slopes decreases, conversely the value of Kt decreases with the increase in the slope of the wave.Keywords: Floating breakwater, piling, tethered,  mooring 
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