Frictional drag reduction with air lubricant over a super-water-repellent surface

被引:25
|
作者
Fukuda K. [1 ]
Tokunaga J. [1 ]
Nobunaga T. [1 ]
Nakatani T. [1 ]
Iwasaki T. [1 ]
Kunitake Y. [1 ]
机构
[1] R. and D. Headquarters, Mitsui Eng. and Shipbldg. Co., Ltd., Chuo-ku, Tokyo 104-8439
关键词
Air lubricant; Fluid frictional drag; Frictional drag reduction; Super-water-repellent surface;
D O I
10.1007/s007730070009
中图分类号
学科分类号
摘要
This paper presents a new technique for reducing frictional drag using a super-water-repellent surface and air-injection (called an SWR & A technique). Its effectiveness was examined by carrying out pressure-loss measurements with a tube of rectangular cross section, along with resistance tests on a horizontal flat plate, a 7.2-m-long tanker model, and a 12-m-long high length-to-beam-ratio model ship. These test results showed that the new technique can significantly reduce the models' frictional drag; for example, the frictional resistance on the SWR surface was reduced by 80% at a speed of 4m/s and 55% at 8m/s.
引用
收藏
页码:123 / 130
页数:7
相关论文
共 50 条
  • [21] Drag reduction with lubricant rings over a patterned liquid-infused cylinder
    Ren, Liuzhen
    Zhang, Mengzhuo
    Wen, Jun
    Bao, Luyao
    Hu, Haibao
    TRIBOLOGY INTERNATIONAL, 2024, 198
  • [22] Maintenance of air layer and drag reduction on superhydrophobic surface
    Du, Peng
    Wen, Jun
    Zhang, Zhaozhu
    Song, Dong
    Ouahsine, A.
    Hu, Haibao
    OCEAN ENGINEERING, 2017, 130 : 328 - 335
  • [23] A nature-inspired lubricant-infused surface for sustainable drag reduction
    Lee, Sang Joon
    Kim, Hae Nyeok
    Choi, Woorak
    Yoon, Gun Young
    Seo, Eunseok
    SOFT MATTER, 2019, 15 (42) : 8459 - 8467
  • [24] Numerical investigation of the effect of air layer on drag reduction in channel flow over a superhydrophobic surface
    Nguyen, Hoai-Thanh
    Lee, Sang-Wook
    Ryu, Jaiyoung
    Kim, Minjae
    Yoon, Jaemoon
    Chang, Kyoungsik
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [25] On multi-point gas injection to form an air layer for frictional drag reduction
    Makiharju, Simo A.
    Ceccio, Steven L.
    OCEAN ENGINEERING, 2018, 147 : 206 - 214
  • [26] Computational analysis of air bubble-induced frictional drag reduction on ship hulls
    Mohammadpour, Javad
    Salehi, Fatemeh
    Garaniya, Vikram
    Baalisampang, Til
    Arzaghi, Ehsan
    Roberts, Ross
    Cervella, Gio
    Newport, Jason
    Hughes, Peter
    Abbassi, Rouzbeh
    JOURNAL OF MARINE SCIENCE AND TECHNOLOGY, 2024, 29 (03) : 696 - 710
  • [27] Formation of an air layer on the water-repellent surface for aeration power reduction of a bioreactor under microgravity
    Ohira, Yuichi
    Sakon, Tsuneo
    Kuga, Yoshikazu
    Fukuda, Takashi
    Obata, Eiji
    Ando, Koji
    KAGAKU KOGAKU RONBUNSHU, 2007, 33 (05) : 463 - 467
  • [28] Drag reduction of Newtonian fluid in a circular pipe with a highly water-repellent wall
    Watanabe, K
    Yanuar
    Udagawa, H
    JOURNAL OF FLUID MECHANICS, 1999, 381 : 225 - 238
  • [29] Drag reduction of Newtonian fluid in a circular pipe with a highly water-repellent wall
    Watanabe, Keizo
    Yanuar
    Udagawa, Hiroshi
    Journal of Fluid Mechanics, 381 : 225 - 238
  • [30] Cell cultures on a super water-repellent alkylketene dimer surface
    Research Institute for Electronic Science, Hokkaido University, Sapporo 001-0021, Japan
    不详
    Int. J. Nanosci., 2006, 6 (871-876):