학술논문

DEVELOPMENT AND APPLICATION OF NUMERICAL ECOSYSTEM MODEL WITH FINITE VOLUME COMMUNITY OCEAN MODEL: FVCOM / 有限体積法沿岸海洋モデルFVCOMに基づく数値生態系モデルの高精度化
Document Type
Journal Article
Source
土木学会論文集A2(応用力学) / Journal of Japan Society of Civil Engineers, Ser. A2 (Applied Mechanics (AM)). 2018, 74(1):92
Subject
Ariake Sea
FVCOM
ecosystem model
hypoxia
oyster reef
pressure gradient
Language
Japanese
ISSN
2185-4661
Abstract
This paper describes the applicability of a numerical ecosystem model that was developed by the authors on the basis of the finite volume community ocean model, i.e., FVCOM. We summarize the inhibition effects of oyster reef on the hypoxic water formation in Ariake Sea, Japan, which was investigated by using the developed ecosystem model. The results showed that oyster reef decreased the concentration of phyto-plankton and particulate organic carbon through its filtration activity, and increased the dissolved oxygen (DO) concentration in the bottom layer over a wide area. In addition, we explain an appropriate discretization method for decreasing the pressure gradient force (PGF) errors associated with the application of the terrain-following (σ) coordinate system to estuarine modeling based on FVCOM. The validations of the standard second-order scheme and the z-levels scheme for the PGF errors, were made under the conditions of horizontally-uniform stratification without external forcing, and a realistic stratification with external forcing. The comparison of the numerical results with field observations showed that the z-level scheme can greatly improve the accuracy of the numerical simulation, suggesting the importance of using the appropriate scheme for the PGF errors even in the estuarine modeling with high grid resolution.

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