用CFD研究威利和克林胃体发育障碍的特征

Bina Teknika Pub Date : 2017-08-02 DOI:10.54378/bt.v13i1.26
W. Sulistyawati
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引用次数: 0

摘要

对多船体的研究表明,船体阻力可以通过船体之间的位置来预测。船体形状的优化设计可以考虑阻力最小化,而阻力一般是船模的粘滞阻力和造浪阻力之和。本文研究了五体船型和中国船型对伸出臂位置、不对称度和死角对阻力特性的影响。采用主舷对称、外舷不对称的船体模型,研究了死角为25°、30°、35°、弗劳德数为0,1 ~ 0,7时的五体船型阻力特性。利用Ansys计算流体力学软件(CFD),研究了六种中国船型五体船的静水阻力特性。由于各半船型所产生的波浪系统相互作用,增大船型的死角有助于增加阻力。船体长度的变化对阻力系数分量也有较强的相互作用。与波浪型相比,波浪型的最大减阻性能分别为:死升250降低18.05%,死升300降低16.1%,死升350降低18.19%。总阻力系数在R/L:1/14和R/L:1/7时最小。获得了阻力最小的最佳船体形式,因此,继续对船体入口角和船首角进行进一步的研究是有意义的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INVESTIGASI KARAKTERISTIK HAMBATAN PENTAMARAN BENTUK LAMBUNG WIGLEY DAN CHINE DENGAN MENGGUNAKAN CFD
Several studies of multi-hulls ship showed that hull resistance could be predicted from position between the each hull. The design optimization of the hull form could be considered by minimizing resistance, which is generally the sum of the viscous resistance and the wave making resistance of the ship model. This paper presents an investigation of pentamaran hull form with chine hull form to the effects of outriggers position, asymmetry, and deadrise angles on the resistance characteristics. This research investigated the resistance characteristics by modeling pentamaran hull form using chine with symmetrical main hull and asymmetric outboard on the variation deadrise angles: 25 o , 30 o , 35 o and Froude number 0,1 to 0,7. We examined the calm water resistance characteristics of six pentamaran models with chine-hull form by variation of deadrise angles using Ansys CFD. Increasing the deadrise angle of chine hull form contribute to the resistance due to the interaction of the wave systems produced by each demihull. Strong interaction effect on the resistance coefficient component was found for change in the hull length as well. Compared to the wigley hull form, the maximum drag reduction of the chine hull form was reduced by 18.05% in deadrise 25 0 , 16.1% in deadrise 30 0 , and 18.19% in deadrise 35 0 . While the smallest value of total resistance coefficient was generated from chine 35 0 at R/L:1/14 and R/L:1/7. Optimum hull form for minimum resistance has been obtained, so it is interesting to continue with angle of entrance and stem angle of hull for further research.
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