Study on the high precision acoustic measurement techniques for determining temperature field around seafloor hydrothermal vent

Yong Cai1,2, Wei Fan1, Yan Zhou3, Xian-qiao Fu2, Hui Fang2, Jin Tao2
1Institute of Mechatronic Engineering, Hangzhou Dianzi University, Hangzhou, China
2Ocean Research Center of Zhoushan, Zhejiang University, Zhoushan, China
3Zhejiang Jinying Food Machinery Co., Ltd., Zhoushan, China

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Tài liệu tham khảo

Baker, E. T., Lavelle, J. W. and Massoth, G. J., 1985. Hydrothermal particle plumes over the southern Juan de Fuca Ridge, Nature, 316, 342–344.

Bemis, K. G., Rona, P. A., Jackson, D. and Jones, C. D., 2003. Time-averaging fluctuating seafloor hydrothermal plumes: measurements by remote acoustic sensing, Geophysical Research Abstracts, 5, 6–11.

Corliss, J. B., Dymond, J., Gordon, L. I., Edmond, J. M., von Herzen, R. P., Ballard, R. D., Green, K., Williams, D., Bainbridge, A., Crane, K. and van Andel, T. H., 1979. Submarine thermal springs on the Galapagos Rift, Science, 203, 1073–1083.

Du, T. J., Zhai, S. K. and Ren, J. G., 2002. Studies on the seafloor hydrothermal activity and ocean science, Journal of Ocean University of Qingdao, 32(4): 597–602. (in Chinese)

Dushaw, B. D., Worcester, P. F. and Cornuelle, B. D., 1993. On equations for the speed of sound in seawater, J. Acoust. Soc. Am., 93(1): 255–275.

Fan, W., 2010. Research on Acoustic Measurement Techniques for Determining the Temperature Distribution Around Seafloor Hydrothermal Vents, Ph. D. thesis, Zhejiang University. (in Chinese)

Fan, W., Chen, Y., Pan, H. C., Ye, Y., Cai, Y. and Zhang, Z. J., 2010a. Experimental study on underwater acoustic imaging of 2-D temperature distribution around hot springs on floor of Lake Qiezishan, China, Experimental Thermal and Fluid Science, 34(8): 1334–1345.

Fan, W., Pan, H. C., Pan, Y. W., Wu, M. Z. and Chen, Y., 2010b. On optimal frequencies of acoustic in-situ detector for seafloor hydrothermal vents, China Ocean Eng., 24(2): 343–351.

Jackson, D. R., Jones, C. D., Rona, P. A. and Bemis, K. G., 2003. A method for Doppler acoustic measurement of black smoker flow fields, Geochemistry Geophysics Geosystems, 4(11): 1095–1102.

Li, Y. D., Wang, B. Q. and Wu, Y. J., 2007. Research on arithmetic of ultrasonic wind-metering based on cross-correlation theory, Journal of Electronic Measurement and Instrument, Supplement, 179–182. (in Chinese)

Lu, J., Wakai, K., Takahashi, S. and Shimizu, S., 2000. Acoustic computer tomographic pyrometry for two-dimensional measurement of gases taking into account the effect of refraction of sound wave paths, Measurement Science and Technology, 11(6): 692–697.

Luan, X. W. and Qin, W. S., 2002. Survey methods of modern hydrothermal activity, Progress in Geophysics, 17(4): 592–597. (in Chinese)

Pan, H. C., Chen, Y., Mao, J., Fan, W., Pan, Y. W., Wu, Y. F. and Wu, M. Z., 2008. Progress in developing a device for measuring heat flux from the hydrothermal vent in deep ocean using acoustic method, Oceans 2008, 1–5.

Rona, P. A., Bemis, K. G., Silver, D. and Jones, C. D., 2002. Acoustic imaging, visualization, and quantification of buoyant hydrothermal plumes in the Ocean, Marine Geophysical Researches, 23(2): 147–168.

Spiess, F. N., Macdonald, K. C., Atwater, T., Ballard, R., Carranza, A., Cordoba, D., Cox, C., Diaz Garcia, V. M., Francheteau, J., Guerrero, J., Hawkins, J., Haymon, R., Hessler, R., Juteau, T., Kastner, M., Larson, R., Luyendyk, B., Macdougall, J. D., Miller, S., Normark, W., Orcutt, J. and Rangin, C., 1980. East Pacific Rise: Hot springs and geophysical experiments, Science, 207(4438): 1421–1433.

Yang, W. Q. and Beck, M. S., 1997. An intelligent cross correlator for pipeline flow velocity measurement, Flow Measurement and Instrument, 8(2): 77–84.

Zhang, X. D., Gao, B. and Song, Z. P, 2003. The research of acoustic measuring of gas temperature employing cross-correlation algorithm, Proceedings of the Chinese Society for Electrical Engineering, 23(4): 185–189. (in Chinese)