Effects of Infilling a Sea Caldron on Tidal Currents and Seaweed and Seagrass Bed Habitats

Author:

Izumi Tomoki1,Kitada Toshiaki2,Kanaguchi Takaaki3,Fujihara Masayuki4

Affiliation:

1. Graduate school of Agriculture, Ehime University

2. Penta-Ocean Construction Co., Ltd.

3. Incorporated Administrative Agency Japan Water Agency Gunma Canal System Management Office

4. Graduate School of Agriculture, Kyoto University

Publisher

Journal of Rainwater Catchment Systems

Reference10 articles.

1. [1] Fujihara M., Akeda S., and Takeuchi T. (1997): A numerical experiment on structure-induced upwelling in steady flow field, Transactions of Japan Society of Irrigation, Drainage and Rural Engineering, 65 (5), pp. 117-126.

2. [2] Hasegawa K., Yamamoto M., Kitano S., and Okamoto S. (2007): Examination of the HSI model applicability for seaweed habitat suitability, Fisheries Engineering, 43 (3), pp. 207-210, (in Japanese with English abstract).

3. [3] Izumi T., Kanaguchi T., and Fujihara M. (2014): Numerical investigation of seaweed expansion by constructing grounds on a filled sea caldron, Proceedings of the 11th International Conference of Hydroscience & Engineering, pp. 853-858.

4. [4] Izumi T., Kanaguchi T., and Fujihara M. (2015): A numerical assessment for the effect of filling a sea caldron on seaweed expansion and habitat environment for aquatic species, Proceedings of the 36th IAHR World Congress, 7p.

5. [5] Kanaguchi T., Izumi T., and Fujihara M. (2015): Evaluation for the effect of filling a sea caldron on habitat of Branchiostoma japonicum, Fisheries Engineering, 52 (2), pp. 95-101, (in Japanese with English abstract).

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