• 제목/요약/키워드: Soil integrated management

검색결과 134건 처리시간 0.022초

GeoAI-Based Forest Fire Susceptibility Assessment with Integration of Forest and Soil Digital Map Data

  • Kounghoon Nam;Jong-Tae Kim;Chang-Ju Lee;Gyo-Cheol Jeong
    • 지질공학
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    • 제34권1호
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    • pp.107-115
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    • 2024
  • This study assesses forest fire susceptibility in Gangwon-do, South Korea, which hosts the largest forested area in the nation and constitutes ~21% of the country's forested land. With 81% of its terrain forested, Gangwon-do is particularly susceptible to wildfires, as evidenced by the fact that seven out of the ten most extensive wildfires in Korea have occurred in this region, with significant ecological and economic implications. Here, we analyze 480 historical wildfire occurrences in Gangwon-do between 2003 and 2019 using 17 predictor variables of wildfire occurrence. We utilized three machine learning algorithms—random forest, logistic regression, and support vector machine—to construct wildfire susceptibility prediction models and identify the best-performing model for Gangwon-do. Forest and soil map data were integrated as important indicators of wildfire susceptibility and enhanced the precision of the three models in identifying areas at high risk of wildfires. Of the three models examined, the random forest model showed the best predictive performance, with an area-under-the-curve value of 0.936. The findings of this study, especially the maps generated by the models, are expected to offer important guidance to local governments in formulating effective management and conservation strategies. These strategies aim to ensure the sustainable preservation of forest resources and to enhance the well-being of communities situated in areas adjacent to forests. Furthermore, the outcomes of this study are anticipated to contribute to the safeguarding of forest resources and biodiversity and to the development of comprehensive plans for forest resource protection, biodiversity conservation, and environmental management.

소유역의 효과적인 침식조절을 위한 유사평가 툴(SATEEC)의 개발 (Development of Sediment Assessment Tool for Effective Erosion Control (SATEEC) in Small Scale Watershed)

  • Kyoung-Jae Lim;Joong-Dae Choi;Ki-Sung Kim;Myung Sagong;Bernard A. Engel
    • 한국농공학회지
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    • 제45권5호
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    • pp.85-96
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    • 2003
  • The Revised Universal Soil Loss Equation (RUSLE) has been used in over 100 countries to estimate potential long-term soil erosion from the field. However, the RUSLE estimated soil erosion cannot be used to estimate the sediment delivered to the stream networks. For an effective erosion control, it is necessary to compute sediment delivery ratio (SDR) for watershed and sediment yield at watershed outlet. Thus, the Sediment Assessment Tool for Effective Erosion Control (SATEEC) was developed in this study to compute the sediment yield at any point in the watershed. To compute spatially distributed sediment yield map, the RUSLE was first integrated with the ArcView GIS and three area based sediment delivery ratio methods were incorporated in the SATEEC. The SATEEC was applied to the Bangdong watershed, Chuncheon, Gangwon Province to demonstrate how it can be used to estimate soil loss and sediment yield for a watershed. The sediment yield using USDA SDR method is 8,544 ton/year and 4,949 ton/year with the method by Boyce. Thus, use of watershed specific SDR is highly recommended when comparing the estimated sediment yield with the measured sediment data. The SATEEC was applied with hypothetical cropping scenario and it was found that the SATEEC can be used to assess the impacts of different management on the sediment delivered to the stream networks and to find the sediment source areas for a reach of interest. The SATEEC is an efficient tool to find the best erosion control practices with its easy-to-use interface.

Numerical Modeling of Water Transfer among Precipitation, Surface Water, Soil Moisture and Groundwater

  • Chen, Xi;Zhang, Zhicai;Chen, Yongqin
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2006년도 학술발표회 논문집
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    • pp.2-11
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    • 2006
  • In the processes of hydrological cycle, when precipitation reaches the ground surface, water may become surface runoff or infiltrate into soil and then possibly further percolate into groundwater aquifer. A part of the water is returned to the atmosphere through evaporation and transpiration. Soil moisture dynamics driven climate fluctuations plays a key role in the simulation of water transfer among ground surface, unsaturated zone and aquifer. In this study, a one-layer canopy and a four-layer soil representation is used for a coupled soil-vegetation modeling scheme. A non-zero hydraulic diffusivity between the deepest soil layer modeled and groundwater table is used to couple the numerical equations of soil moisture and groundwater dynamics. Simulation of runoff generation is based on the mechanism of both infiltration excess overland flow and saturation overland flow nested in a numerical model of soil moisture dynamics. Thus, a comprehensive hydrological model integrating canopy, soil zone and aquifer has been developed to evaluate water resources in the plain region of Huaihe River basin in East China and simulate water transfer among precipitation, surface water, soil moisture and groundwater. The newly developed model is capable of calculating hydrological components of surface runoff, evapotranpiration from soil and aquifer, and groundwater recharge from precipitation and discharge into rivers. Regional parameterization is made by using two approaches. One is to determine most parameters representing specific physical values on the basis of characterization of soil properties in unsaturated zone and aquifer, and vegetations. The other is to calibrate the remaining few parameters on the basis of comparison between measured and simulated streamflow and groundwater tables. The integrated modeling system was successfully used in the Linhuanji catchment of Huaihe plain region. Study results demonstrate that (1) on the average 14.2% of precipitation becomes surface runoff and baseflow during a ten-year period from 1986 to 1995 and this figure fluctuates between only 3.0% in drought years of 1986, 1988, 1993 and 1994 to 24.0% in wet year of 1991; (2) groundwater directly deriving from precipitation recharge is about 15.0% t of the precipitation amount, and (3) about half of the groundwater recharge flows into rivers and loses through evaporation.

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토공 현장관리 중심의 시공관리시스템 개발에 관한 연구 (Development of Construction Project Management System Applicable to Earth-Work Field)

  • 권오용;조재익;김도근
    • 한국건설관리학회:학술대회논문집
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    • 한국건설관리학회 2008년도 정기학술발표대회 논문집
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    • pp.301-304
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    • 2008
  • 본 연구는 토공현장의 토사관리를 중심으로 토공사에 대한 시공관리시스템 구현을 목적으로 한다. 본 연구 결과는 토공사 시공관리에 대한 DB 설계 및 시스템 구현으로 구분한다. 첫째, 토공사 시공관리에 대한 DB설계는 토공사 장비에 대한 작업계획 대비 실적의 분석을 통한 시공관리와 노무관리 등 자원관리 DB를 구성하여 작업과 자원 분류체계를 연계하여 구성하였으며, 둘째 토공사 시공관리 시스템은 토공사 작업계획을 평면도에 구획단위로 구분하여 실적을 그래픽으로 표시하며, 이를 기반으로 공정 현황, 진도보고 등폭 시각적으로 표시하여 현장의 실무자간에 의사소통 및 업무 수행에 원활히 사용하도록 개발하였다. 본 연구는 토공전문회사의 토공사 업무에 특화한 시스템으로 시험적용 단계를 거쳐서 현장에 사용 가능한 시스템이다.

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인체의 위해성과 수생태계를 고려한 수질환경기준 설정에 관한 연구 (A Study on Water Quality Standard for the Protection of Human Health and Aquatic Life)

  • 이재현;김윤신
    • 한국물환경학회지
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    • 제23권6호
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    • pp.985-992
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    • 2007
  • There are about 40,000 chemicals used in Korea and 300 new types of chemicals are added to the list every year, influencing quality of air, soil and water. Water quality standards that serve as the basis for water quality management have been proved inefficient and insufficient compared to those of advanced countries. This study aims to improve the existing water quality standards. Most importantly, the water quality standards need to take into account not only protection of human health but also aquatic resources. To that end, water quality criteria need to be set by monitoring each watershed every year and conducting risk assessment. Criteria for human health are set at $10^{-6}$ cancer risk level, and for aquatic life at conservative level, adopting the methodology of the U.S. and Australia, respectively. After carrying out technical and economic feasibility studies, more conservative criteria will be used to decide final water quality standards. The development of this system to establish integrated water quality standards for both human health and aquatic resources protection is urgently needed.

Evaluation of the performance of encapsulated lifting system composting technology with a GORE(R) cover membrane: Physico-chemical properties and spectroscopic analysis

  • Al-Alawi, Mutaz;El Fels, Loubna;Benjreid, Ramadan;Szegi, Tamas;Hafidi, Mohamed;Simon, Barbara;Gulyas, Miklos
    • Environmental Engineering Research
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    • 제25권3호
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    • pp.299-308
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    • 2020
  • Composting is among the most effective integrated waste management strategies used to recycle sewage sludge (SS) waste and generate a useful product. An encapsulated lifting system is a relatively new industrial-scale composting technology. The objective of this study was to evaluate the effectiveness of composting dewatered stabilized SS mixed with green waste using this new technology. The composting process was monitored by changes in the physico-chemical properties, UV-visible spectra, and fourier transform infrared (FTIR) spectra. The composting temperature was steady in the thermophilic range for 24 and 12 d in the intensive and maturation phases, respectively, which fulfilled the disinfection requirement. Moreover, the temperature increased rapidly to 76.8℃ within three days, and the thermophilic temperatures peaked twice and lasted longer than in traditional composting, which accelerated SS degradation and decreased the composting period necessary to obtain mature compost. FTIR spectroscopic analysis showed a diminished in methyl group derived from methylene C-H aliphatic groups because of organic matter degradation by microorganisms and an increased number of aromatic chains. The new technology may be a viable and sustainable alternative for SS management that converts waste into compost that is useful as a soil amendment.

국내외 흰개미 방제 기술의 발달 과정과 목조건축문화재의 흰개미 피해 저감을 위한 방안 (A History of Termite Control and Improvements to Prevent Termites in Wooden Architectural Heritage)

  • 이상빈;임익균;김시현
    • 헤리티지:역사와 과학
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    • 제54권2호
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    • pp.194-215
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    • 2021
  • 이 논문에서는 흰개미 방제의 발달 과정과 최근 연구 동향, 국내 목조건축문화재의 흰개미 피해 현황과 조사 및 방제 등을 살펴보고 목조건축문화재의 흰개미 피해 예방을 위한 방안을 제시하고자 하였다. 목재는 건축 재료로 다양한 장점이 있어 우리나라에서도 다수의 목조건축문화재가 남아 있다. 목조건축문화재의 다양한 손상 요인 중 흰개미에 의한 피해가 다수 확인되고 있으며, 우리나라에서 확인된 3종의 흰개미 중 Reticulitermes speratus kyushuensis가 전국적으로 서식하며 목조건축문화재를 가해한다. 흰개미 방제의 발달 과정을 1900년대 초반부터 살펴보면 이 시기에는 비소 등 무기살충제가 주로 사용되다가 1940년대 유기염소계 살충제가 개발되어 흰개미 방제에도 사용되었다. 이후 이 약제들의 인축과 환경에 대한 독성이 알려짐에 따라 1960년대 유기인계 살충제, 1970년대 카바메이트계 살충제, 1980년대 피레스로이드계 살충제와 곤충 생장 조절제, 1990년대 페닐피라졸계 살충제, 네오니코티네이드계 살충제 등이 개발되어 흰개미 방제에 사용되었다. 이와 별도로 흰개미의 생태적 특징을 이용한 흰개미 군체 제거제가 1990년대 개발되어 상용화되었으며, 특히 키틴 합성 저해제가 널리 사용되고 있다. 2000년대 이후에는 살충제를 이용한 토양 처리와 군체 제거제의 특성을 규명하고 효율성을 향상시키거나, 새로운 제형의 약제를 개발하거나, 종합적 유해 생물 관리(IPM) 개념을 차용한 통합적 흰개미 관리(ITM)을 적용하거나, 개별 건물이 아닌 목조건축물군을 보호하는 방향으로 흰개미 방제 연구가 수행되고 있다. 국내 목조건축문화재의 흰개미 피해는 1980년대부터 발견되기 시작하였으며 1990년대 후반 유네스코 세계유산인 종묘 정전, 해인사 장경판전 주변에서 흰개미 피해가 확인되어 관심을 받게 되었다. 이후 지정문화재를 중심으로 흰개미 피해 현황이 조사되었으며 2010년대에는 국립문화재연구소와 문화재돌봄사업단이 지정문화재를 중심으로 정기적인 흰개미 피해 조사를 수행하고 있다. 목조건축문화재의 흰개미 피해를 줄이기 위한 방안으로 피해 건물의 긴급 방제 실시, 다양한 토양 처리법의 선택적 적용, 건물 기단 상면의 토양 처리 실시, 고내구성 흰개미 군체 제거제의 개발과 적용, 다수의 목조건축물을 포괄하는 방제 계획의 수립과 시행, 통합적 흰개미 관리(ITM)의 문화재 적용, 문화재 소유자와 관리자에 대한 교육 등을 제안하였다.

프랙탈 차원 해석을 통한 인위토양과 자연토양 비교 (Comparison between natural and anthropogenic soils through fractal dimension analysis)

  • 신국식;오택근;허승오;현병근;조현준;손연규
    • 농업과학연구
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    • 제41권4호
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    • pp.379-384
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    • 2014
  • In general, fractal analysis which is based on self-similarity as a basic theory has been mainly used to define the characteristics of complex mathematical figures, however, considering its basic theory, it can be also used to analyze the surface ununiformity of unknown materials. In this study, the soil samples were collected from the reclaimed (remodelled) agricultural fields which mean that the external soil is artificially piled up (mainly up to 1m) on the lands, Naju, Jellanam-do and Gumi, Gyeongsangbuk-do, and the conventional agricultural fields, Anseong, Gyeonggi-do and Hwasoon, Jellanam-do, and compared using fractal dimension analysis on the basis of the results of chemical properties. The score of fractal dimension ($D_0$) for organic matter was lower in Hwasoon (1.46) and Naju (1.58) than Anseong (1.86) and Gumi (1.96), and this trend showed similarly in soil pH. On the basis of the results of chemical properties, fine textured-soils (Hwasoon and Naju) and conventional agricultural fields were chemically uniform compared to coarse textured-soils (Anseong and Gumi) and the reclaimed. Therefore, it is required to develop technical methods for integrated soil management to the reclaimed lands.

국내 농업용 지하댐의 현황 및 활용 사례 (Current Status and Application of Agricultural Subsurface Dams in Korea)

  • 용환호;송성호;명우호;안중기;홍순욱
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권3호
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    • pp.18-26
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    • 2017
  • The increasing frequency of droughts has been increasing the necessity of utilizing subsurface dams as reliable groundwater resources in areas where it is difficult to supply adequate agricultural water using only surface water. In this study, we analyzed the current status and actual conditions of five agricultural subsurface dams as well as the effect of obtaining additional groundwater from subsurface dams operated as one aspect of the sustainable integrated water management system. Based on the construction methods and functions of each subsurface dam, the five subsurface dams are classified into three types such as those that derive water from rivers, those that prevent seawater intrusion, and those that link to a main irrigation canal. The classification is based on various conditions including topography, reservoir location, irrigation facilities, and river and alluvial deposit distributions. Agricultural groundwater upstream of subsurface dams is obtained from four to five radial collector wells. From the study, the total amount of groundwater recovered from the subsurface dam is turned out to be about 29~44% of the total irrigation water demand, which is higher than that of general agricultural groundwater of about 4.6%.

Contribution of Rice Mill Ash and Press Mud with Inorganic Fertilizers to Sugarcane Production in Old Himalayan Piedmont Plain Soils of Bangladesh

  • Paul G. C.;Rahman M.;Khan N. U.;Rahman A. B. M. M.
    • 한국작물학회지
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    • 제50권2호
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    • pp.108-111
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    • 2005
  • A field study was conducted to develop an economically suitable combination of organic and inorganic fertilizers for sugarcane cultivation in sandy acidic soil of a commercial sugarcane farm under Old Himalayan Piedmont Plain of Bangladesh. Results revealed that the treatment $T_4$ which received $75\%$ of Recommended fertilizers (N 120, P 35, K 100, S 25, Zn 2 kg $ha^{-1}$) + 10 Mg $ha^{-1}$ Rice mill ash + Mg $ha^{-1}$ press mud significantly produced higher sugarcane yield (72.34 Mg $ha^{-1}$) among all the treatments except $T_5$ having $100\%$ of Recommended fertilizers + 10 Mg $ha^{-1}$ Rice mill ash + 10 Mg $ha^{-1}$ press mud, which was identical. $T_4$ also gave the highest net economic benefit at Bangladesh Taka 15,920.47 per hectare from the added nutrient management. Thus, the integrated use with organic and inorganic fertilizer is highly essential for sustainable production of sugarcane in commercial farm of the region in Bangladesh, where it has been grown year after year.