![]() ![]() Design method and performance analysis of emergency protection for floating breakwater in extreme sea conditions. Port Engineering Technology, 2009, 46(4): 6-8 (in Chinese).ĬHEN L. Experimental research of a new type floating breakwater. Effect of motions on the performance and mooring tension of a floating pontoon-type breakwater. A flexible connector design for a multi-module floating structures //2018 37th International Conference on Ocean, Offshore and Arctic Engineering. An experimental study of a floating breakwater with asymmetric pneumatic Chambers for wave energy extraction. Study on global strength calculation method and ultimate strength calculation method of key structure of semi-submersible platforms. Dalian: Chinese Society of Naval Architecture and Marine Engineering, 2014: 487-490 (in Chinese). Wave slamming calculation of bracing of colum-stabilized semi-submersible platform //8th Plenary Session of the Academic Committee on Marine Mechanics of the Chinese for Shipbuilding Engineering. Zhenjiang: Jiangsu University of Science and Technology, 2018 (in Chinese). Research on strength and strengthening measures of double buoyant floating breakwater. Zhenjiang: Jiangsu University of Science and Technology, 2015 (in Chinese). The direct calculating method research of global and local strength of very large floating structure. Analysis on the hydroelastic responses and structural strength of VLFS module. Theoretical guidance for the design of multi-module floating structures.įloating breakwater, elastic connection, linear spring constrained design wave (LSCDW) method, These studies can provide new insights and Overall strength of breakwater was analyzed by LSCDW method. According to the analysis of design waveĪnd extreme wave conditions, considering the mooring loads and environmental loads and connector loads, the Numerical model was verified by 1 : 50 similarity ratio in the test tank. A linear spring constrained design wave (LSCDW) methodįor strength analysis of floating marine structures with multi-module elastic connections was proposed. Generating electricity and entertainment were arranged. The cabins with functions such as living, The characteristics of each module, the elastic connector was created. In this paper, a multi-module floating breakwater with three cylinders was designed. The correlation coefficients of 0.75 and 0.69 for the data set of this study and extra data from previous studies revealed that the proposed formula is more accurate than the previous formula provided for shallow and intermediate waters.As a new type of marine structure, floating breakwater can provide suitable water area for coastal ![]() The proposed formula was also evaluated using extra data. The proposed formula is based on the experimental measurements performed in the current study. Only a limited number of studies have been performed for the description of wave energy that is transmitted in the intermediate waters therefore, in this study, an attempt has been made to present a proposed formula for the prediction of C t in intermediate waters. Thus, the transmission coefficient ( C t), which stands for the transmitted portion of wave energy in comparison with the total wave energy, is an important parameter that describes the structure's efficiency. Dissipation and reflection are the main mechanisms by which FBs protect the leeward side however, because of the structure geometry, a portion of the incident wave energy is transmitted to the shoreline. Wave-transmission prediction of π-type floating breakwaters in intermediate waters.įloating breakwaters (FBs) are distinguished as an environmentally friendly type of breakwater that are more deployed in the development of small ports. ![]()
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