Estimation of geostrophic current calculated from sea surface topography in east sea

동해의 해면지형 계산에 의한 지형류의 흐름 추정
Citations

SCOPUS

2

초록

This paper deals with the estimation of geostrophic current using the sea surface topography calculated from the geoidal height from EGM96 geopotential model and the mean sea surface height from CLS-SHOM mean sea surface model. The CLS-SHOM model was developed using the altimetry data set. The estimation of geostrophic current is available in the characteristic research of ocean in many country, while for East Sea a few studies were done. The goal of this study is basically to provide the characteristics of geostrophic current in East Sea. The results show that the mean sea surface topography (SST) in East Sea is about 0.37 m and the mean geostrophic velocity is -0.028 m/sec. The Pacific water enters into the East Sea through the Korea Strait and after passing the strait, this inflow splits into two branches: one flows northward along the Korean coast and another outflows into Pacific ocean through Tsugaru and Soya strait passing the east-northeastward along the Japanese outer shelf, and outflows into Okhotsk ocean.

키워드

Geoidal heightGeostrpohic velocityMean sea surface modelSea surface topography
제목
Estimation of geostrophic current calculated from sea surface topography in east sea
제목 (타언어)
동해의 해면지형 계산에 의한 지형류의 흐름 추정
저자
Yun, HongsikLee, Dong Ha
발행일
2006
유형
Article
저널명
한국측량학회지
24
2
페이지
159 ~ 165