Understanding Deep-Sea Turbulence for Environmental Impact Assessments

Author:

Furushima Yasuo,Tanaka Mamoru,Sangekar Mehul Naresh,Lindsay Dhugal John,Fukuhara Tatsuo,Nagao Masayuki

Publisher

Springer Nature Switzerland

Reference77 articles.

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3. Drazen, J. C., Smith, C. R., Gjerde, K. M., Haddock, S. H. D., Carter, G. S., Choy, C. A., Clark, M. R., Dutrieux, P., Goetze, E., Hauton, C., Hatta, M., Koslow, J. A., Leitner, A. B., Pacini, A., Perelman, J. N., Peacock, T., Sutton, T. T., Watling, L., & Yamamoto, H. (2020). Midwater ecosystems must be considered when evaluating environmental risks of deep-sea mining. Proceedings of the National Academy of Sciences of the United States of America, 117, 17455–17460.

4. Drost, E. J. F., Lowe, R. J., Ivey, G. N., Jones, & N. L. (2018). Wave-current interactions in the continental shelf bottom boundary layer of the Australian North West Shelf during tropical cyclone conditions. Continental Shelf Research, 165, 78–92. https://doi.org/10.1016/j.csr.2018.07.006

5. Durden, J. M., Schening, T., Althaus, F., Friedman, A., Garcia, R., Glover, A. G., Greinert, J., Jacobsen Stout, N., Jones, D. O. B., Jordt, A., Kaeli, J. W., Köser, K., Kuhnz, L. A., Lindsay, D., Morris, K. J., Nattkemper, T. W., Osterloff, J., Ruhl, H. A., Singh, H., Tran, M., & Bett, B. J. (2016). Perspectives in visual imaging for marine biology and ecology: From acquisition to understanding. Oceanography and Marine Biology: An Annual Review, 54, 1–72.

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