• 제목/요약/키워드: Wildfire

검색결과 110건 처리시간 0.028초

산불의 공간적 확산이 농촌지역경제에 미치는 영향 분석 (Analysis of Agricultural Regional Economic Effect by Spatial Dispersal of Wildfire in Korea)

  • 권영현;김의준
    • 농촌계획
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    • 제20권3호
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    • pp.67-74
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    • 2014
  • The purpose of this study is to estimate regional economic effects of spatial diffusion of wildfire using Cobb-Douglas production function of agriculture and forestry. The analysis is applied to Gangwon and Gyeongbuk provinces where are the most damaged of wildfire in Korea. The damaged areas are derived from multiplied by the occurrence probability of wildfire and diffusion areas of wildfire for micro-spatial unit level with ArcGIS techniques. The models of wildfire provides that the spatial diffusion of wildfire increases with the rising of highest temperature and average wind speed. Through the production function, value added of Agriculture and Forest sectors get damaged where the Cos-converted slope aspect of mountains are toward the South. The production model provides reductions of regional value added by increasing damaged areas of wildfire. It reveals that the most damaged region is Andong city in Gyeongbuk province, where value added loss is 1.25 billion Won, which is about 0.72% of total value added in agriculture and forestry of the city. As a view of policy makers, it needs to be considered to establish prevention policies against wildfires because regional economic losses from wildfire are depending on geographical conditions and performances of the major industry related to wildfire's diffusion such as agriculture or tourism sector according to the result of analysis.

Haines Index를 이용한 동아시아 지역 산불 확산 위험도 변화와 지표-대기 상호관계와의 연관성 연구 (Future Changes of Wildfire Danger Variability and Their Relationship with Land and Atmospheric Interactions over East Asia Using Haines Index)

  • 이미나;홍승범;박선기
    • 대기
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    • 제23권2호
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    • pp.131-141
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    • 2013
  • Many studies have related the recent variations of wildfire regime such as the increasing number of occurrances, their patterns and timing changes, and the severity of their extreme cases with global warming. However, there are only a few numbers of wildfire studies to assess how the future wildfire regime will change in the interactions between land and atmosphere with climate change especially over East Asia. This study was performed to estimate the future changing aspect of wildfire danger with global warming, using Haines Index (HI). Calculated from atmospheric instability and dryness, HI is the potential of an existing fire to become a dangerous wildfire. Using the Weather Research and Forecasting (WRF) model, two separated 5-year simulations of current (1995~1999) and far future (2095~2099) were performed and analyzed. Community Climate System Model 3 (CCSM3) model outputs were utilized for the model inputs for the past and future over East Asia; future prediction was driven under the IPCC A1B scenario. The results indicate changes of the wildfire danger regime, showing overall decreasing the wildfire danger in the future but intensified regional deviations between north and south. The overall changes of the wildfire regime seems to stem from atmospheric dryness which is sensitive to soil moisture variation. In some locations, the future wildfire danger overall decreases in summer but increases in winter or fall when the actual fire occurrence are generally peaked especially in South China.

Mapping of Post-Wildfire Burned Area Using KOMPSAT-3A and Sentinel-2 Imagery: The Case of Sokcho Wildfire, Korea

  • Nur, Arip Syaripudin;Park, Sungjae;Lee, Kwang-Jae;Moon, Jiyoon;Lee, Chang-Wook
    • 대한원격탐사학회지
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    • 제36권6_2호
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    • pp.1551-1565
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    • 2020
  • On April 4, 2019, a forest fire started in Goseong County and lasted for three days, burning the neighboring areas of Sokcho. The strong winds moved the blaze from one region to another region and declared the worst wildfire in South Korea in years. More than 1,880 facilities, including 400 homes, were burnt down. The fire burned a total area of 529 hectares (1,307 acres), which involved 13,000 rescuers and 16,500 military troops to control the fire occurrence. Thousands of people were evacuated, and two people are dead. This study generated post-wildfire maps to provide necessary data for evacuation and mitigation planning to respond to this destructive wildfire, also prevent further damage and restore the area affected by the wildfire. This study used KOMPSAT-3A and Sentinel-2 imagery to map the post-wildfire condition. The SVM showed higher accuracy (overall accuracy 95.29%) compared with ANN (overall accuracy of 94.61%) for the KOMPSAT-3A. Moreover, for Sentinel-2, the SVM attained a higher accuracy (overall accuracy of 91.52%) than the ANN algorithm (overall accuracy 90.11%). In total, four post-wildfire burned area maps were generated; these results can be used to assess the area affected by the Sokcho wildfire and wildfire mitigation planning in the future.

2022년 5월 31일 발생한 밀양산불이 인근 도시 지역의 미세먼지 농도에 미치는 영향 (Effect of May 31, 2022 Miryang Forest Fire on Fine Particle Concentration in Nearby Urban Areas)

  • 전병일
    • 한국환경과학회지
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    • 제32권1호
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    • pp.37-46
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    • 2023
  • This study investigated the effect of May 31, 2022 Miryang wildfire on fine particle concentrations in Busan and Gimhae, which are neighboring urban areas. In addition, fine particle characteristics and air pollution concentrations were investigated in Miryang, where haze occurred. The Miryang city wildfire that occurred on May 31, 2022, at 0925 LST, was driven by strong north winds and increased fine particle concentrations in Dongsangdong and Jangyoodong, Gimhae City, which are approximately 35 km to the southeast and south, respectively, of the wildfire occurrence site. Furthermore, the fine particle concentration in Myeongjidong, which is approximately 50 km south-southeast of the wildfire site, exhibited a temporary increase at 1400 LST owing to the effects of wildfire smoke. On the morning of June 1, the day after the fire, the Miryang area had very bad visibility because of the smoke from the fire. Therefore the PM10 and PM2.5 concentrations in Naeildong, 3 km south of the wildfire site, were 276 ㎍/㎥ and 222 ㎍/㎥, respectively, at 1200 LST. In addition, the gases O3, CO, and SO2 showed high concentrations at the time of haze generation. This study provides insights into policy making in response to the rapid increase in fine dust when wildfire occurs near cities.

Estimating Wildfire Fuel Load of Coarse Woody Debris using National Forest Inventory Data in South Korea

  • Choi, Suwon;Lee, Jongyeol;Han, Seung Hyun;Kim, Seongjun;Son, Yowhan
    • 한국기후변화학회지
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    • 제6권3호
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    • pp.185-191
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    • 2015
  • This study presents an estimate of on-site surface fuel loadings composed of coarse woody debris (CWD) using $5^{th}$ National Forest Inventory (NFI) data in South Korea. We classified CWD data into forest type, region and decay class, and used conversion factors by decay class and tonne of oil equivalent developed in the country. In 2010, the total wildfire fuel load of CWD was estimated as 8.9 million TOE; those of coniferous, deciduous and mixed forests were 3.5 million TOE, 2.8 million TOE and 2.6 million TOE, respectively. Gangwon Province had the highest wildfire fuel load of CWD (2.3 million TOE), whereas Seoul exhibited the lowest wildfire fuel load of CWD (0.02 million TOE). Wildfire fuel loads of CWD were estimated as 2.9 million TOE, 1.9 million TOE, 2.4 million TOE and 1.7 million TOE for decay classes I, II, III and IV, respectively. The total wildfire fuel load of CWD corresponded to the calorific value of 8.2 million tons crude oil, 2.46% of that of living trees. Proportionate to the growing stock, total wildfire fuel load of CWD was in a broad distinction by region, while its TOE $ha^{-1}$ was not. This implies that there is no need to establish different guidelines by region for management of CWD. The results of this work provide a baseline study for scientific policy guidelines on preventing wildfires by proposing CWD as wildfire fuel load.

Histogram Matching of Sentinel-2 Spectral Information to Enhance Planetscope Imagery for Effective Wildfire Damage Assessment

  • Kim, Minho;Jung, Minyoung;Kim, Yongil
    • 대한원격탐사학회지
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    • 제35권4호
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    • pp.517-534
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    • 2019
  • In abrupt fire disturbances, high quality images suitable for wildfire damage assessment can be difficult to acquire. Quantifying wildfire burn area and severity are essential measures for quick short-term disaster response and efficient long-term disaster restoration. Planetscope (PS) imagery offers 3 m spatial and daily temporal resolution, which can overcome the spatio-temporal resolution tradeoff of conventional satellites, albeit at the cost of spectral resolution. This study investigated the potential of augmenting PS imagery by integrating the spectral information from Sentinel-2 (S2) differenced Normalized Burn Ratio (dNBR) to PS differenced Normalized Difference Vegetation Index (dNDVI) using histogram matching,specifically for wildfire burn area and severity assessment of the Okgye wildfire which occurred on April 4th, 2019. Due to the difficulty in acquiring reference data, the results of the study were compared to the wildfire burn area reported by Ministry of the Interior and Safety. The burn area estimates from this study demonstrated that the histogram-matched (HM) PS dNDVI image produced more accurate burn area estimates and more descriptive burn severity intervals in contrast to conventional methods using S2. The HM PS dNDVI image returned an error of only 0.691% whereas the S2 dNDVI and dNBR images overestimated the wildfire burn area by 5.32% and 106%, respectively. These improvements using PS were largely due to the higher spatial resolution, allowing for the detection of sparsely distributed patches of land and narrow roads, which were indistinguishable using S2 dNBR. In addition, the integration of spectral information from S2 in the PS image resolved saturation effects in areas of low and high burn severity.

A Machine Learning-Driven Approach for Wildfire Detection Using Hybrid-Sentinel Data: A Case Study of the 2022 Uljin Wildfire, South Korea

  • Linh Nguyen Van;Min Ho Yeon;Jin Hyeong Lee;Gi Ha Lee
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.175-175
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    • 2023
  • Detection and monitoring of wildfires are essential for limiting their harmful effects on ecosystems, human lives, and property. In this research, we propose a novel method running in the Google Earth Engine platform for identifying and characterizing burnt regions using a hybrid of Sentinel-1 (C-band synthetic aperture radar) and Sentinel-2 (multispectral photography) images. The 2022 Uljin wildfire, the severest event in South Korean history, is the primary area of our investigation. Given its documented success in remote sensing and land cover categorization applications, we select the Random Forest (RF) method as our primary classifier. Next, we evaluate the performance of our model using multiple accuracy measures, including overall accuracy (OA), Kappa coefficient, and area under the curve (AUC). The proposed method shows the accuracy and resilience of wildfire identification compared to traditional methods that depend on survey data. These results have significant implications for the development of efficient and dependable wildfire monitoring systems and add to our knowledge of how machine learning and remote sensing-based approaches may be combined to improve environmental monitoring and management applications.

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Fuel Management and Experimental Wildfire Effects on Forest Structure, Tree Mortality and Soil Chemistry in Tropical Dry Forests in Ghana

  • Barnes, Victor R;Swaine, Mike D;Pinard, Michelle A;Kyereh, Boateng
    • Journal of Forest and Environmental Science
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    • 제33권3호
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    • pp.172-186
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    • 2017
  • The effects of application of fuel-reduction treatment in wildfire management has not been tested in dry forests of Ghana. Therefore, the short-term ecological effects of prescribed burning and hand thinning treatments followed by experimental wildfire were investigated in degraded forests and Tectona grandis forest plantations in two forest reserves of different levels of dryness in Ghana. The results showed that more trees were killed in prescribed burning (average of 41% in degraded forest and 18% in plantations) than hand thinning (7.2% in degraded forests and 8% in plantation). More tree seedlings were also killed in prescribed burning (72%) than hand thinning (47%). The mortality of trees and seedlings were greater in Worobong South forest, a less dry forest reserve than the Afram Headwaters forest, a drier forest reserve. Fuel treatment especially prescribed burning compared to the control reduced wildfire effects on forest canopy particularly in the less dry forest and tree mortality especially in the drier forest. Prescribed burning temporarily increased pH, exchangeable potassium (52%) and available phosphorus (82%) in the surface soils of the entire plots. The two fuel treatment methods did not have much influence on basal area, organic matter and total nitrogen. Nevertheless, they were able to reduce the adverse wildfire effects on soil pH, exchangeable potassium, available phosphorus, organic matter and total nitrogen concentrations. Fuel treatments therefore have potential application in dry forest management in Ghana due to their ability to retain important forest ecological traits after a wildfire incidence.

한반도 지역 산불 발생 위험도 예측에 TVDI 적용 가능성 고찰 (A Feasibility Study on the Application of TVDI on Accessing Wildfire Danger in the Korean Peninsula)

  • 김광년;김승희;원명수;장근창;최원준;이윤곤
    • 대한원격탐사학회지
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    • 제35권6_3호
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    • pp.1197-1208
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    • 2019
  • 산림지역에서의 관측은 평지에서의 관측에 비해 지상관측에 있어서 어려움을 가지고, 위성 관측자료는 지상의 지점기반 관측자료에 비해 높은 공간 해상도를 가진다. 이러한 이점을 이용하여 위성 관측자료는 산불발생 위험도를 추정하는 연구에 활용되어왔다. 위성 관측자료를 사용하는 여러 산불 관련 지수 중 TVDI(Temperature Vegetation Dryness Index)는 정규식생지수(Normalized Difference Vegetation Index; NDVI)와 지표면 온도(Land Surface Temperature; LST)를 기반으로 산불발생 위험도를 평가한다. TVDI가 기상과 식생의 건조도를 모두 고려하는 장점을 가지고 있지만 선행 연구에 따르면 TVDI는 여러 산불 관련 지수들에 비하여 한반도에서의 산불발생에 민감하지 않은 것으로 나타났다. 본 연구에서는 한반도에서 TVDI의 산불발생 위험도 표현능력을 향상시키기위해 여러가지 개선방법을 적용하였다. 지상에서 측정한 기온을 적용하여 TVDI의 정확도를 향상시키고, 월별로 최대, 최소 온도 회귀선을 구하여 TVDI에 계절효과를 적용하고자 했으며, 각 지역별로 TVDI를 계산하여 식생 유형 및 지역 기후를 고려하였다. 개선된 TVDI는 선정된 산불사례들을 통해 평가되었으며 산불발생 위험도 측면에서 향상된 성능을 보여주었다.

강원도 강릉시 일대 산불지역 분류를 위한 Landsat ETM 영상 분류지수의 활용 (Application of Landsat ETM Image Indices to Classify the Wildfire Area of Gangneung, Gangweon Province, Korea)

  • 양동윤;김주용;전공수;이진영
    • 한국지구과학회지
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    • 제25권8호
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    • pp.754-763
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    • 2004
  • 본 연구는 강원도 강릉지역 산불지역의 피해분석을 위한 피해지 지표분류를 목적으로 Landsat Enhanced Thematic Mapper Plus (ETM+) 영상에서 활용할 수 있는 분류지수의 적용을 검토하였다. 연구지역 산불지역을 대상으로 Landsat TM 영상을 활용하기 위해 개발된 식생지수(NDVI)와 토양을 고려한 식생지수(SAVI), Tasseled Cap 변환으로 억을 수 있는 밝기지수(brightness), 습윤지수(wetness), 녹색지수(greenness)를 야외조사 결과와 비교하였다. 분석 결과 식생지수와 토양을 고려한 식생지수는 산불발생지역과 산불이 발생하지 않은 지역에 대한 구분이 뚜렷하였으나, 산불발생지역내에서 피해지역 구분에는 적절하지 않은 것으로 파악되었다. 산불방생지역내에서는 Tasseled Cap 변화에서 나타나는 토양평면을 활용할 때 침식피해와 관련한 야외조사 결과와 가장 근접한 분류 결과를 얻을 수 있었다. Tasseled Cap 변환에서 건조지수와 녹색지수를 더하여 선형함수로 활용하면 신속하고 효율적으로 산불지역을 분류가 가능 할 것으로 기대된다.