Bir Konteyner Gemisi İçin Kapsamlı Yalpa Sönümü Değerlendirmesi ve Hareket Analizi

Author:

YENİLMEZ Rabia1ORCID,ÇAKICI Ferdi2ORCID

Affiliation:

1. YILDIZ TECHNICAL UNIVERSITY

2. Yıldız Teknik Üniversitesi

Abstract

The primary purpose of this study is to investigate the damping characteristics of the ship’s roll motion. The second goal is to explore the damping effects on the solution of roll motion, considering the ship’s forward speed, wave frequency, and initial roll amplitude. Roll motion is a more critical yet less understood response compared to other degrees of freedom due to the complexity arising from viscosity. Roll damping comprises several components, which are divided into five categories with the assistance of empirical formulas created as a result of experiments. Wave damping is calculated by linear diffraction/radiation theory so it is a linear damping. Lift damping is also considered linear. However, eddy making, skin friction, and bilge keel damping are not linear due to dependency on the initial roll amplitude. The effects of roll amplitude, the ship’s forward speed, and wave frequency are investigated in this paper with the empirical formulas developed by Ikeda and Himeno. Frequency domain analyses of the roll motion are also conducted for the selected cases to demonstrate the credibility of the proposed paper. All algorithms have been developed in the MATLAB environment which is embedded with the YTU DEEP Ship Motion Program.

Funder

TÜBİTAK

Publisher

TMMOB Gemi Muhendisleri Odasi

Reference10 articles.

1. Sir Wescostt, A., (1955). The papers of William Froude M.A LL.D F.R., A Memoir. The Institution of Naval Architects, 11-13.

2. Ikeda, Y., Himeno, Y., Tanaka, N., (1978a). Components of roll damping of ship at forward speed. Report No.00404, Department of Naval Architecture, University of Osaka Prefecture, Osaka, Japan.

3. Ikeda, Y., Himeno, Y., Tanaka, N., (1978b). A prediction method for ship roll damping. Report No. 00405, Department of Naval Architecture, University of Osaka Prefecture, Osaka, Japan.

4. Chakrabarti, S., (2001). Empirical calculation of roll damping for ships and barges. Ocean Engineering, 28, 915–932.

5. Himeno, Y., (1981). Prediction of ship roll damping state of the art.,Report No. 239, Department of Naval Architecture and Marine Engineering, The University of Michigan, Ann Arbor, MI. September

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