期刊文献+

Study on the High Precision Acoustic Measurement Techniques for Determining Temperature Field Around Seafloor Hydrothermal Vent

Study on the High Precision Acoustic Measurement Techniques for Determining Temperature Field Around Seafloor Hydrothermal Vent
下载PDF
导出
摘要 This paper presents the basis of acoustic method used for temperature field measurement of seafloor hydrothermal vent and two techniques of the parabolic interpolation and the bending compensation of propagation paths of acoustic signal are introduced. Experimental research is performed to exactly rebuild the temperature field around hot springs on the floor of Qiezishan Lake, Yunnan, China. The accuracy of the travel time estimation has been improved based on the aforementioned technique and method. At the same time, by comparison of the results of temperature field with different means, the max absolute error, the maximum relative error and the root mean square error are given. It shows that the technique and the method presented in the paper can be applied to the temperature field measurement detector around the seafloor hydrothermal vent. It also has a good accuracy. This paper presents the basis of acoustic method used for temperature field measurement of seafloor hydrothermal vent and two techniques of the parabolic interpolation and the bending compensation of propagation paths of acoustic signal are introduced. Experimental research is performed to exactly rebuild the temperature field around hot springs on the floor of Qiezishan Lake, Yunnan, China. The accuracy of the travel time estimation has been improved based on the aforementioned technique and method. At the same time, by comparison of the results of temperature field with different means, the max absolute error, the maximum relative error and the root mean square error are given. It shows that the technique and the method presented in the paper can be applied to the temperature field measurement detector around the seafloor hydrothermal vent. It also has a good accuracy.
出处 《China Ocean Engineering》 SCIE EI 2012年第4期723-732,共10页 中国海洋工程(英文版)
基金 supported by the National Science and Technology Support Program of China(Grant No.2012BAB09B02) Zhejiang Key Discipline of Marine Technology and Systems(Grant No.20120109) the National High Technology Research and Development Program of China(863Program,Grant No.2007AA09Z213)
关键词 SEAFLOOR hydrothermal vent acoustic temperature method temperature field parabolic interpolation refraction of acoustic signal seafloor hydrothermal vent acoustic temperature method temperature field parabolic interpolation refraction of acoustic signal
  • 相关文献

参考文献3

二级参考文献32

  • 1Champeney D C著 陈难先 何晓民译.《傅里叶变换及其物理应用》(Fourier transforms and their physical application)[M].北京:科学出版社(Beijing:Science Press),1980..
  • 2Kleppe J A. Engineering applications of acoustics[M]. Artech House. 1989.
  • 3Kleppe J A. Advances in acoustic pyrometry [C]. ASA 131st Meeting, Indianapolis, 1996.
  • 4Gamo T E. Nakayama K Shitashima. Hydrothermal plumes at the Rodriguez triple Junction, Indian ridge [J]. EPSL,1996,142: 261~270.
  • 5Klinkhammer G, R Rona Mgreaves. Hydrothermal manganese plumes in the Mid-Atlantic Ridge rift vally [ J].Nature, 1985,314: 727~731.
  • 6Charlou J L, P Rona and H Bougault. Methane anomaly over TAG hydrothermal field on Mid-Atlantic Ridge [J]. J Marine Res, 1987,45:461~472.
  • 7Scheier D S, E T Baker, K T Johnson. Detection of hydrothermal plumes along the Southeast Indian Ridge near the amsterdam-St [ J]. Plateau Geophy Res Lett. 1998,25,97~100.
  • 8German C R, E T Baker, C Merel. Hydrothermal, activity along the southwest Indian ridge [ J ]. Nature, 1998,395:490~493.
  • 9Ballard R D, Van Andel T H. The Galapagos rift at 86°W: Variations in volcanism, structrre and hydrothermal activity along a 30km segment of the rift valley [ J ]. J of Geophys Res, 1982,87:1149~1161.
  • 10Kimura M I. Report on DELP 1984 Cruises in the Middle Okinawa Trough, Part V: Topography and Geology of the Central Grabens and their Vicinity[J]. Bulletin of the earthquake research institute university of Tokyo, 1986,61: 269 ~310.

共引文献88

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部