송영근 교수
Young-Geun Song
서울대학교 환경설계학과 · 환경과학
연구실 소개
송영근 교수의 연구실은 도시와 자연의 경계에서 발생하는 환경 문제를 중심으로, 도시 외곽의 비공식 주거지와 자연생태계 간의 갈등을 분석하고 있습니다. 주로 리모트 센싱과 3D 스캐닝 기술을 활용해 산림의 수직 구조, 생태계 기능, 토지 이용 변화를 정량적으로 평가하며, 생태계 연결성과 지속 가능한 보전 전략 수립에 기여하고 있습니다. 특히, LiDAR 기반의 캐노피 구조 측정과 장기적 공간·시간적 변화 분석을 통해 도시 녹지와 자연유산 보전의 과학적 근거를 마련하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15In many metropolitan areas, the urban fringe is defined by highly sensitive habitats such as forests and wetlands. However, the explosive growth of urban areas has led to the formation of informal settlements in the urban fringe, subsequently threatening these sensitive habitats and exaggerating several social and environmental problems. We seek to improve the current understanding of informal settlements and their formation in the metropolitan fringe through a comprehensive spatiotemporal analy
Increasing development pressure on designated natural heritage areas poses a significant threat to biodiversity and ecosystems. Balancing intensive development and biodiversity conservation is crucial for achieving ecological sustainability. Ecological connectivity (EC) enhances regional ecological sustainability by promoting interactions between ecological sources and stabilizing ecosystem dynamics. Spatial conservation prioritization (SCP) is a useful approach for identifying areas requiring p
Abstract Field measurements of vertical canopy structure have been challenging for decades and still important for understanding forest ecosystems. We measured the vertical canopy structure and its seasonal changes in a temperate deciduous forest canopy in Gwangneung, Korea. Time‐series measurements of leaf area index (LAI) were collected in 2013 from a five story (4‐m vertical intervals) tower. We evaluated crown depth and species composition by height from a vegetation survey. The vertical dis
Measuring tree structure using three-dimensional (3D) mapping tools such as light detection and ranging (LiDAR) remote sensing is needed to provide well-managed and designed green spaces. The metrics used to estimate tree structure could be different depending on which LiDAR systems are used. This may lead to confusion and reduce confidence when evaluating tree structures and their derived products, such as plant area index (PAI). Therefore, studies that can determine similarities among measurem
Summary Jeju Island, designated by UNESCO as a world heritage site, continues to face the anthropogenic pressures of reckless development for regional tourism and economic revitalization purposes. Because land use/land cover (LULC) affects ecosystem services and human well-being, it is crucial to comprehensively identify the causes of changes in LULC based on long-term analyses. This study examined LULC changes on Jeju Island over 47 years from 1973 to 2019 and quantified changes in four ecosyst
Abstract. Three-dimensional distribution of plant area density (PAD) was retrieved using airborne laser scanning (ALS) data. The calculation of PAD requires the number of laser-pulses intercepted by plant materials and which are not intercepted by trees (i.e., passed laser-pulses) for the spatial unit. To estimate the passed laser-pulses at a voxel (1-m voxel in this study), we traced every laser-return by using its flight line information. The assumption was that every laser-pulse traveled on t
Understanding forest dynamics is important for assessing the health of urban forests, which experience various disturbances, both natural (e.g., treefall events) and artificial (e.g., making space for agricultural fields). Therefore, quantifying three-dimensional changes in canopies is a helpful way to manage and understand urban forests better. Multitemporal airborne light detection and ranging (LiDAR) datasets enable us to quantify the vertical and lateral growth of trees across a landscape sc
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