<listing id="l9bhj"><var id="l9bhj"></var></listing>
<var id="l9bhj"><strike id="l9bhj"></strike></var>
<menuitem id="l9bhj"></menuitem>
<cite id="l9bhj"><strike id="l9bhj"></strike></cite>
<cite id="l9bhj"><strike id="l9bhj"></strike></cite>
<var id="l9bhj"></var><cite id="l9bhj"><video id="l9bhj"></video></cite>
<menuitem id="l9bhj"></menuitem>
<cite id="l9bhj"><strike id="l9bhj"><listing id="l9bhj"></listing></strike></cite><cite id="l9bhj"><span id="l9bhj"><menuitem id="l9bhj"></menuitem></span></cite>
<var id="l9bhj"></var>
<var id="l9bhj"></var>
<var id="l9bhj"></var>
<var id="l9bhj"><strike id="l9bhj"></strike></var>
<ins id="l9bhj"><span id="l9bhj"></span></ins>
Volume 39 Issue 5
May  2017
Turn off MathJax
Article Contents
HAO Qi, ZHAO Hai-ming, JI Ya-qian, WANG Yan-li. Experimental device for simulating reverberation environment in deep sea mining[J]. Chinese Journal of Engineering, 2017, 39(5): 655-662. doi: 10.13374/j.issn2095-9389.2017.05.002
Citation: HAO Qi, ZHAO Hai-ming, JI Ya-qian, WANG Yan-li. Experimental device for simulating reverberation environment in deep sea mining[J]. Chinese Journal of Engineering, 2017, 39(5): 655-662. doi: 10.13374/j.issn2095-9389.2017.05.002

Experimental device for simulating reverberation environment in deep sea mining

doi: 10.13374/j.issn2095-9389.2017.05.002
  • Received Date: 2016-07-12
  • To solve the difficult problem of ultrasonic signal acquisition with respect to real-time tiny terrain detection in the deep-sea mining environment, an experimental ultrasonic detection system was designed and built that can simulate the real deep-sea mining reverberation environment. Using a simplified structure for the spiral mining head as a basis, Fluent software was used to simulate the impact of a spiral mining head and a multiple-impeller on the underwater flow field. A comparison of the results shows that the impeller model can realistically reflect the mining environment. Then, based on the impeller model, the vertical distribution of the sediment volume fractions is experimentally determined and the correctness of the design model is verified. Finally, an ultrasonic detection experiment is conducted and the results show that suspended sediment can generate viscosity and absorb sound waves, thereby causing serious reverberation interference. By implementing time-gain compensation in the ultrasonic detection system, the reverberation interference can be effectively suppressed and the probability of target detection increases. The results of this study provide a basis for studying ultrasonic microtopography detection in the deep sea mining reverberation environment.

     

  • loading
  • [5]
    Zhao H M, Ji Y Q, Hong Y J, et al. A Volterra series-based method for extracting target echoes in the seafloor mining environment. Ultrason, 2016, 71:29
    [6]
    Zhao H M, Hong Y J, Xia Y M, et al. Chaos analysis of reverberation from short distance acoustic detection in deep-sea mining environment//Fifth International Conference on Measuring Technology and Mechatronics Automation. Hong Kong, 2013:361
    [7]
    Halkyard J E. Technology for mining cobalt rich manganese crusts from seamounts//Oceans'85-Ocean Engineering and the Environment. New York, 1985:352
    [8]
    Xia Y M, Zhang Z H, Shen B. Optimal design of cobalt crust cutting head structure parameter based on genetic algorithm. Adv Mater Res, 2012, 468-471:2370
    [10]
    Xia Y M, Wu F, Cheng L, et al. Optimal design of disc cutter structure parameter based on Genetic Algorithm. Appl Mech Mater, 2011, 130-134:919
    [11]
    Xia Y M, Zhang G Q, Nie S J, et al. Optimal control of cobalt crust seabed mining parameters based on simulated annealing genetic algorithm. J Cent South Univ Technol, 2011, 18(3):650
    [15]
    Yamazaki T, Sharma R. Morphological features of Co-rich manganese deposits and their relation to seabed slopes. Marine Georesources Geotechnol, 2000, 18(1):43
  • 加載中

Catalog

    通訊作者: 陳斌, bchen63@163.com
    • 1. 

      沈陽化工大學材料科學與工程學院 沈陽 110142

    1. 本站搜索
    2. 百度學術搜索
    3. 萬方數據庫搜索
    4. CNKI搜索
    Article views (736) PDF downloads(12) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return
    久色视频