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Yang-Gi Jo

Seoul National University · 地球惑星科学

研究室紹介

Professor Yang-Gi Jo's research lab specializes in physical oceanography and coastal ocean dynamics, focusing on regional ocean circulation, mesoscale eddies, and the transport of water masses in the Northwest Pacific marginal seas. The lab investigates the mechanisms driving ocean currents such as the East Korean Warm Current and the Yellow Sea Warm Current, with particular attention to the role of topography, tides, and atmospheric forcing in shaping circulation patterns. Using high-resolution ocean models and observational data, the lab examines climate variability, sea-level change, and biogeochemical processes like nutrient ratios in coastal and shelf seas.

ocean circulationcoastal dynamicssea-level risenutrient ratiosregional climate modeling

Research Overview

Papers
175
Total Citations
2,341
Papers (5y)
37
Primary Field
地球惑星科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
37total
2022
2023
2024
2025
2026
Citations per year (5y)
147total
20222023202420252026

Selected Papers

15
1
Article|115 citations·2000
Sea Fog around the Korean Peninsula
Yang‐Ki Cho, Moon-Ouk Kim, Byung-Choon Kim
Journal of Applied Meteorology

There are many island stations that routinely observe sea fog around the Korean peninsula. Historical daytime sea fog data were used to investigate the relationships between sea fog occurrence and its associated environmental factors. The frequency of sea fog occurrence is at its maximum in July in all seas around the Korean peninsula. The frequency shows a maximum in the west sea and a minimum in the east sea in spite of their similar latitude. The value of the air temperature minus the sea sur

OceanographyEarth and Planetary Sciences
2
Article|70 citations·2000
Branching Mechanism of the Tsushima Current in the Korea Strait
Yang‐Ki Cho, Kuh Kim
SJR Q1Journal of Physical Oceanography

Hydrographic studies show the seasonal variation of the East Korean Warm Current (EKWC), which is a branch of the Tsushima Current along the Korean coast. To understand the dynamics of the branching mechanism of the TC in the Korea Strait, a hydraulic model with two active layers was investigated in a rectangular strait with varying depth. When the lower cold water flows southward in a shallow meridional channel from the deep northern basin, it separates from the eastern boundary because of the

OceanographyEarth and Planetary Sciences
3
Article|62 citations·1998
Structure of the Korea strait bottom cold water and its seasonal variation in 1991
Yang‐Ki Cho, Kuh Kim
SJR Q1Continental Shelf Research
Ocean EngineeringEngineering
4
Article|49 citations·2009
Connectivity among straits of the northwest Pacific marginal seas
Yang‐Ki Cho, Gwang‐Ho Seo, Byoung‐Ju Choi, Sangil Kim, Young‐Gyu Kim, Yong‐Hoon Youn, E. P. Dever
SJR Q1Journal of Geophysical Research AtmospheresOA

The connectivity among straits of the northwest Pacific marginal seas is investigated with a primitive‐equation ocean circulation model simulated for 10 years from 1994 to 2003. Over the simulation interval the temporal and spatial means and variations of the model sea surface temperature are comparable to those of the satellite sea surface temperature. The model transport through the straits shows good agreement with the available observations and a high seasonality in the Taiwan Strait, the Ko

OceanographyEarth and Planetary Sciences
5
Article|38 citations·2021
Local Sea-Level Rise Caused by Climate Change in the Northwest Pacific Marginal Seas Using Dynamical Downscaling
Yong‐Yub Kim, Bong‐Gwan Kim, Kwang Young Jeong, Eunil Lee, Do‐Seong Byun, Yang‐Ki Cho
SJR Q1Frontiers in Marine ScienceOA

Global climate models (GCMs) have limited capacity in simulating spatially non-uniform sea-level rise owing to their coarse resolutions and absence of tides in the marginal seas. Here, regional ocean climate models (RCMs) that consider tides were used to address these limitations in the Northwest Pacific marginal seas through dynamical downscaling. Four GCMs that drive the RCMs were selected based on a performance evaluation along the RCM boundaries, and the latter were validated by comparing hi

Global and Planetary ChangeEnvironmental Science
6
Article|32 citations·2016
Evolution of wind‐driven flows in the Yellow Sea during winter
Yong‐Jin Tak, Yang‐Ki Cho, Gwang‐Ho Seo, Byoung‐Ju Choi
SJR Q1Journal of Geophysical Research Oceans

Abstract To examine the evolution of the wind‐driven flows in the Yellow Sea (YS) during winter, ocean circulation was simulated using a three‐dimensional ocean model with realistic topography and atmospheric forcing. The simulated sea surface temperature, ocean currents, and path of the Yellow Sea Warm Current (YSWC) agreed with observations. Southward currents along the Korean coast and the Chinese coast in winter were also effectively identified. Spectra of the daily mean winds and the YSWC v

OceanographyEarth and Planetary Sciences
7
Article|32 citations·2005
Temporal and spatial variabilities in the sediment temperature on the Baeksu tidal flat, Korea
Yang‐Ki Cho, Tae‐Wan Kim, Kwang‐Woo You, Lae-Hwan Park, Hyung-Tae Moon, Sang‐Ho Lee, Yong‐Hoon Youn
SJR Q1Estuarine Coastal and Shelf Science
EcologyEnvironmental Science
8
Article|31 citations·2012
Contribution of ocean current to the increase in N abundance in the Northwestern Pacific marginal seas
Seung‐Kyu Kim, Kyung‐Il Chang, Bong-Guk Kim, Yang‐Ki Cho
SJR Q1Geophysical Research LettersOA

Abstract In the northwestern Pacific marginal seas, there has been a rapid temporal increase and spatial variability in the relative abundance of dissolved inorganic nitrogen over dissolved inorganic phosphate. The cause and mechanisms of this temporal and spatial variation is under debate. Recently, atmospheric deposition of nitrogen has been shown to be the major cause of the spatio‐temporal variation in the concentration ratio of dissolved nitrogen and phosphate. We show that the transport by

OceanographyEarth and Planetary Sciences
9
Article|28 citations·2014
Climate change projection in the Northwest Pacific marginal seas through dynamic downscaling
Gwang‐Ho Seo, Yang‐Ki Cho, Byoung‐Ju Choi, Kwang‐Yul Kim, Bong-Guk Kim, Yong‐Jin Tak
SJR Q1Journal of Geophysical Research OceansOA

Abstract This study presents future climate change projections in the Northwest Pacific (NWP) marginal seas using dynamic downscaling from global climate models (GCMs). A regional climate model (RCM) for the Northwest Pacific Ocean was setup and integrated over the period from 2001 to 2100. The model used forcing fields from three different GCM simulations to downscale the effect of global climate change. MIROC, ECHAM, and HADCM were selected to provide climate change signals for the RCM. These

OceanographyEarth and Planetary Sciences
10
Article|26 citations·2004
Multi-layer structure in the Youngsan Estuary, Korea
Yang‐Ki Cho, Lae-Hwan Park, Cheol Cho, In Tae Lee, Park Kyung-Yang, Chul‐Woong Oh
SJR Q1Estuarine Coastal and Shelf Science
Ocean EngineeringEngineering
11
Article|24 citations·2011
Calculation of heat flux in a macrotidal flat using FVCOM
Tae‐Wan Kim, Yang‐Ki Cho
SJR Q1Journal of Geophysical Research AtmospheresOA

[1] To understand the effect of a tidal flat on the seawater temperature near a macrotidal flat, the heat flux was calculated using the unstructured grid, finite-volume coastal ocean model (FVCOM). For this study, a code for calculating the sediment temperature was added to include the heat exchange between seawater and the seabed. Seawater provides heat to the seabed at the intertidal zone (tidal flat) during the morning flood tide and gains heat from the seabed during the afternoon flood tide.

OceanographyEarth and Planetary Sciences
12
Article|23 citations·2020
Persistence of coastal upwelling after a plunge in upwelling-favourable wind
Jihun Jung, Yang‐Ki Cho
SJR Q1Scientific ReportsOA

Unprecedented coastal upwelling off the southern coast of the Korean Peninsula was reported during the summer of 2013. The upwelling continued for more than a month after a plunge in upwelling-favourable winds and had serious impacts on fisheries. This is a rare phenomenon, as most coastal upwelling events relax a few days after the wind weakens. In this study, observational data and numerical modelling results were analysed to investigate the cause of the upwelling and the reason behind it bein

OceanographyEarth and Planetary Sciences
13
Article|22 citations·2000
10.1016/s0967-0653(97)83305-4
Yang‐Ki Cho, Kuh Kim
Time to knit
Ocean EngineeringEngineering
14
Article|19 citations·2013
Improving a prediction system for oil spills in the Yellow Sea: Effect of tides on subtidal flow
Chang-Sin Kim, Yang‐Ki Cho, Byoung‐Ju Choi, Kyung Tae Jung, Sung Hyup You
SJR Q1Marine Pollution Bulletin
OceanographyEarth and Planetary Sciences
15
Article|18 citations·2013
Role of wind stress in causing maximum transport through the Korea Strait in autumn
Yang‐Ki Cho, Gwang‐Ho Seo, Chang-Sin Kim, Byoung‐Ju Choi, Dinesh Chandra Shaha
SJR Q1Journal of Marine Systems
OceanographyEarth and Planetary Sciences

Research Areas

OceanographyAtmospheric ScienceGlobal and Planetary ChangeOcean EngineeringAerospace EngineeringEcology

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