Skip to main content

Dae-Hyun Kim

Seoul National University · 環境科学

研究室紹介

Professor Dae-Hyun Kim's research lab specializes in macroecology and biogeography, focusing on the spatial dynamics of species distributions and vegetation patterns in coastal and salt marsh ecosystems. The lab investigates scale-dependent relationships between environmental gradients—such as elevation, salinity, and geomorphological processes—and biological responses, with particular emphasis on the roles of long-term sea-level rise and short-term hydrological events. A central theme is the integration of spatial statistical methods to account for spatial autocorrelation in ecological modeling, enhancing the accuracy of predictions and inferences in environmental change studies. The lab combines field observations, long-term monitoring data, and hierarchical spatial analysis to understand ecosystem responses across multiple spatial and temporal scales.

biogeographyspatial autocorrelationsalt marshvegetation dynamicsscale dependence

Research Overview

Papers
139
Total Citations
1,239
Papers (5y)
49
Primary Field
環境科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
49total
2022
2023
2024
2025
2026
Citations per year (5y)
149total
20222023202420252026

Selected Papers

15
1
Review|89 citations·2019
Residual spatial autocorrelation in macroecological and biogeographical modeling: a review
Guetchine Gaspard, Daehyun Kim, Yongwan Chun
SJR Q2Journal of Ecology and EnvironmentOA

Macroecologists and biogeographers continue to predict the distribution of species across space based on the relationship between biotic processes and environmental variables. This approach uses data related to, for example, species abundance or presence/absence, climate, geomorphology, and soils. Researchers have acknowledged in their statistical analyses the importance of accounting for the effects of spatial autocorrelation (SAC), which indicates a degree of dependence between pairs of nearby

Economics and EconometricsEconomics, Econometrics and Finance
2
Article|88 citations·2008
A conceptual model of coastal dune ecology synthesizing spatial gradients of vegetation, soil, and geomorphology
Daehyun Kim, Keun Bae Yu
SJR Q1Plant Ecology
Environmental EngineeringEnvironmental Science
3
Article|39 citations·2017
The effect of patent protection on firms’ market value: The case of the renewable energy sector
Daehyun Kim, Namil Kim, Wonjoon Kim
SJR Q1Renewable and Sustainable Energy Reviews
Management of Technology and InnovationBusiness, Management and Accounting
4
Article|37 citations·2011
Scale-dependent predictability of DEM-based landform attributes for soil spatial variability in a coastal dune system
Daehyun Kim, Yanbing Zheng
SJR Q1Geoderma
Environmental EngineeringEnvironmental Science
5
Article|36 citations·2020
Coexistence of plant species under harsh environmental conditions: an evaluation of niche differentiation and stochasticity along salt marsh creeks
Daehyun Kim, Sewon Ohr
SJR Q2Journal of Ecology and EnvironmentOA

Abstract Background Ecologists have achieved much progress in the study of mechanisms that maintain species coexistence and diversity. In this paper, we reviewed a wide range of past research related to these topics, focusing on five theoretical bodies: (1) coexistence by niche differentiation, (2) coexistence without niche differentiation, (3) coexistence along environmental stress gradients, (4) coexistence under non-equilibrium versus equilibrium conditions, and (5) modern perspectives. Resul

Nature and Landscape ConservationEnvironmental Science
6
Article|32 citations·2015
Spatial autocorrelation potentially indicates the degree of changes in the predictive power of environmental factors for plant diversity
Daehyun Kim, Young Ho Shin
SJR Q1Ecological Indicators
Nature and Landscape ConservationEnvironmental Science
7
Article|30 citations·2010
Environmental Controls on Multiscale Spatial Patterns of Salt Marsh Vegetation
Daehyun Kim, David M. Cairns, Jesper Bartholdy
SJR Q2Physical Geography

In coastal environments, biogeographic patterns are generally influenced by surface elevation and horizontal distance from sea water. However, it is still unclear whether these major topographic factors are significant controls of vegetation patterns across spatial scales at which different physical processes operate. This study investigated such a topography-vegetation relationship in a Danish salt marsh, focusing upon two scales: a macro-scale (ca. 500 m) across the marsh platform, encompassin

EcologyEnvironmental Science
8
Article|29 citations·2011
Scale-Dependent Correspondence of Floristic and Edaphic Gradients across Salt Marsh Creeks
Daehyun Kim, David M. Cairns, Jesper Bartholdy, Cristine L.S. Morgan
Annals of the Association of American Geographers

Biogeographers emphasize the presence of scale-dependence in vegetation–environment relationships. This research addresses the issue of scale-dependence, focusing on spatial correspondence of floristic and edaphic gradients across salt marsh creeks at Skallingen, Denmark. We employed a hierarchical approach, which compared vegetation and soil gradients at both fine and coarse scales. At the fine scale, we used ordination techniques to identify the gradient structure of vegetation and soil data a

Plant ScienceAgricultural and Biological Sciences
9
Article|26 citations·2011
Wind-Driven Sea-Level Variation Influences Dynamics of Salt Marsh Vegetation
Daehyun Kim, David M. Cairns, Jesper Bartholdy
Annals of the Association of American Geographers

Long-term variation of mean sea level has been considered the primary exogenous factor of vegetation dynamics in salt marshes. In this study, we address the importance of short-term, wind-induced rise of the sea surface in such biogeographic changes. There was an unusual opportunity for examining field data on plant species frequency, sea-level variation, and sedimentation acquired from the Skallingen salt marsh in Denmark since the 1930s. The environmental and floristic history of Skallingen wa

EcologyEnvironmental Science
10
Article|26 citations·2018
Accounting for and Predicting the Influence of Spatial Autocorrelation in Water Quality Modeling
Lorrayne Miralha, Daehyun Kim
SJR Q1ISPRS International Journal of Geo-InformationOA

Several studies in the hydrology field have reported differences in outcomes between models in which spatial autocorrelation (SAC) is accounted for and those in which SAC is not. However, the capacity to predict the magnitude of such differences is still ambiguous. In this study, we hypothesized that SAC, inherently possessed by a response variable, influences spatial modeling outcomes. We selected ten watersheds in the USA and analyzed if water quality variables with higher Moran’s I values und

Economics and EconometricsEconomics, Econometrics and Finance
11
Article|25 citations·2008
Identification and Visualization of Complex Spatial Pattern of Coastal Dune Soil Properties Using GIS-Based Terrain Analysis and Geostatistics
Daehyun Kim, Keun Bae Yu, Soo Jin Park
Journal of Coastal Research

Coastal dunes display complex relationships among soil properties, vegetation, and geomorphology driven by marine and atmospheric dynamics. Considering topography as a fundamental control of the relations, this study investigated its influence on the spatial pattern of soil attributes in a coastal dune. We systematically collected 193 soil samples at intervals of 20 m from the Sindu coastal dunefield, South Korea, and analyzed 11 soil attributes. Principal component analysis extracted four main

Earth-Surface ProcessesEarth and Planetary Sciences
12
Article|25 citations·2013
Tidal Creek Morphology and Sediment Type Influence Spatial Trends in Salt Marsh Vegetation
Daehyun Kim, David M. Cairns, Jesper Bartholdy
SJR Q2The Professional Geographer

Zonal patterns of salt marsh plants and physical conditions have been addressed primarily across the elevation gradient from inland to coastline rather than across tidal creeks in relation to their hydro-geomorphic processes such as bar formation and bank erosion. We found at a Danish marsh that by shaping major geomorphic features and providing sediments to the adjacent sites, fluvial-geomorphic processes of tidal creeks exert fundamental controls on the cross-channel distribution of abiotic an

EcologyEnvironmental Science
13
Article|23 citations·2021
Predicting the magnitude of residual spatial autocorrelation in geographical ecology
Daehyun Kim
SJR Q1EcographyOA

The level of spatial autocorrelation (SAC) present in model residuals can have a detrimental influence on statistical inferences in geographical ecology. There has been significant progress in understanding the nature and causes of residual SAC and developing new methods to reduce the SAC. However, ecologists have not yet found a suitable answer as to when the level of residual autocorrelation is likely to magnify and whether its shift through spatial regression (i.e. the difference in the resid

Economics and EconometricsEconomics, Econometrics and Finance
14
Article|21 citations·2013
Incorporation of multi-scale spatial autocorrelation in soil moisture–landscape modeling
Daehyun Kim
SJR Q2Physical Geography

Effects of spatial autocorrelation (SAC), or spatial structure, have often been neglected in the conventional models of pedogeomorphological processes. Based on soil, vegetation, and topographic data collected in a coastal dunefield in western Korea, this research developed three soil moisture–landscape models, each incorporating SAC at fine, broad, and multiple scales, respectively, into a non-spatial ordinary least squares (OLS) model. All of these spatially explicit models showed better perfo

Global and Planetary ChangeEnvironmental Science
15
Article|19 citations·2016
Tri-Variate Relationships among Vegetation, Soil, and Topography along Gradients of Fluvial Biogeomorphic Succession
Daehyun Kim, John A. Kupfer
SJR Q1PLoS ONEOA

This research investigated how the strength of vegetation-soil-topography couplings varied along a gradient of biogeomorphic succession in two distinct fluvial systems: a forested river floodplain and a coastal salt marsh creek. The strength of couplings was quantified as tri-variance, which was calculated by correlating three singular axes, one each extracted using three-block partial least squares from vegetation, soil, and topography data blocks. Within each system, tri-variance was examined

Nature and Landscape ConservationEnvironmental Science

Research Areas

EcologyGlobal and Planetary ChangeMechanical EngineeringEnvironmental EngineeringEconomics and EconometricsNature and Landscape Conservation

Dae-Hyun Kimの研究をNubintでさらに深く

この研究室の論文をアプリで開き、AIと共に読み、要約し、引用しましょう。