Flow Field Characteristic Analysis of Cushion System of Partial Air Cushion Support Catamaran in Regular Waves

Author:

Yang Jinglei1ORCID,Sun Han-bing2,Li Xiao-wen1,Liu Xin1ORCID

Affiliation:

1. Jimei University , School of Marine Engineering , Xiamen , China

2. Harbin Engineering University , College of shipbuilding engineering , Harbin , China

Abstract

Abstract In order to study the flow field characteristics of cushion system of partial air cushion support catamaran (PACSCAT) in waves, an analysis was carried out involving flexible treatment on the bow and stern air seals to simulate air seal shape under test conditions by means of computational fluid dynamics method and fluid structure interaction (FSI) method. On this basis, the pressure conditions of the air cushion chamber and the pressurized chamber at different wavelengths and different speeds are studied and compared with experimental results. The experimental results show that: for the air cushion pressure, the nonlinear characteristics of the numerical calculation results are more subtle than the experimental values, after linear transformation, the amplitudes of the experimental values are obviously greater than the calculated values after linear transformation, but the average values are not much different; At low speed of 2.0m/s, the spatial pressure distribution of the pressurized chamber and the air cushion chamber are uniformly distributed, at high speed of 3.6m/s, except for a certain pressure jump occurred in the air cushion chamber near the stern air seal, the pressure in other spaces is also evenly distributed, it proves that the pressurized chamber type of air intake can effectively meet the air cushion pressure balance.

Publisher

Walter de Gruyter GmbH

Subject

Mechanical Engineering,Ocean Engineering

Reference20 articles.

1. 1. L. Yun, and A. Bliault, Theory and design of air cushion craft. London: Bath Press, 2000.10.1016/B978-034067650-9/50003-6

2. 2. J. Zou, Q.J. Meng, Z. Lin, and X.W. Li, “Research on the concept of PACSCAT,” Ship Science and Technology, vol. 34, no. 7, pp. 30-34, July 2012, doi: 10.3404/j.issn.1672-7649.2012.07.006

3. 3. B. Milewski, B. Connell, J. Wilson, and D. Kring, “Dynamics of ACV operating in a seaway,” in Proc. of the 9th Int. Con. on Numerical Ship Hydrodynamics, 5-8 August 2007, Ann Arbor, USA [Online]. Available: https://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.547.1611

4. 4. W.M. Milewski, B. Connell, B. Petersen, and D. Kring, “Initial validation of the ACVSIM model for dynamics of air cushion vehicles,” in Proc. of the 27th Symposium on Naval Hydrodynamics, 5-10 October 2008, Seoul, Korea, 2008. [Online]. Available: https://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.511.2009

5. 5. WAMIT Inc. WAMIT User Manual-Version 7. Chestnut Hill, 2016.

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