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      • KCI등재후보

        국립공원 아고산대 독립훼손지 복원식생 분포특성 및 관리방안

        김종엽(Jong-Yup Kim),윤주웅(Ju-Ung Yun),한봉호(Bong-Ho Han),곽정인(Jeong-In Kwak),박석철(Seok-Cheol Park),박수영(Su Young Park),정원옥(Won-Ok Jeong) 국립공원연구원 2022 국립공원연구지 Vol.13 No.1

        본 연구는 독립훼손지 중 아고산대에 위치한 지리산국립공원 세석평전과 노고단 복원식생지를 대상으로 현존식생 분석 및 식생분포 특성을 파악하여 중장기적인 모니터링 및 관리방안 수립을 위한 기초자료를 제공하고자 수행하였다. 현존식생 조사범위는 훼손지 일대 유역권분포 현황을 고려하여 설정하였으며, 세석평전 조사면적은 55,037㎡, 노고단 조사면적은 166,599㎡ 이었다. 세석평전은 초본층에 의한 식생피복도는 90% 이상 수준으로서 나지노출이 없었고, 관목층의 피복도가 60% 이상으로 안정화되어 있었다. 주요 출현수종은 구상나무, 사스래나무, 쇠물푸레나무, 철쭉, 털진달래, 붉은병꽃나무 등 식재수종과 자연적으로 이입한 자생수종이 생육하고 있었다. 노고단은 신갈나무, 호랑버들, 철쭉, 털진달래, 미역줄나무 등이 우점하는 관목식생지가 52%로 가장 넓게 분포하고 있었고, 전반적으로 식생활착 상태가 양호하였다. 노고단의 원식생은 신갈나무군락으로 추정되었고, 군부대철거지에는 귀화식물이 분포하고 있기 때문에 적극적인 관리가 필요하였다. 연구대상지는 장기적으로 주변 자연식생과 조화로운 식생경관으로 발달할 것으로 예측되었다. 향후 훼손지 복원모델은 인근 지역의 원식생을 고려하여 설정해야 할 것이지만, 복원 달성 목표는 실현가능한 수준의 목표를 설정해야 할 것이다. This study was conducted to provide basic data for mid-to long-term monitoring and establishment of management plans by analyzing the existing vegetation and identifying the vegetation distribution characteristics for the restored vegetation in Nogodan and Seseokpyeongjeon in Jirisan National Park located in the subalpine zone among the independent damaged areas. Actual vegetation survey range was established in consideration of the distribution of the watershed around the damaged area. The surveyed area of Seseokpyeongjeon was 55,037㎡, and the surveyed area of Nogodan was 166,599㎡. In Seseokpyeongjeon, the vegetation coverage by the herbaceous layer was almost 90% or more, there was no bare exposure, and the coverage of the shrub layer was stabilized at 60% or more. The main emerging tree species were planted species such as Abies koreana, Betula ermanii, Fraxinus sieboldiana, Rhododendron schlippenbachii, Rhododendron mucronulatum var. ciliatum, and Weigela florida as well as natively migrated native species. In Nogodan, the shrub vegetation dominated by Quercus mongolica, Salix caprea, Rhododendron schlippenbachii, Rhododendron mucronulatum var. ciliatum, and Tripterygium regelii was the most widely distributed with 52% of the area, and the overall diet was good. The native vegetation of Nogodan was presumed to be a cypress colony. Naturalized plants were distributed in the military base demolition site, so active management was required. The study site was predicted to develop into a vegetation landscape in harmony with the surrounding natural vegetation in the long term. In the future, the restoration model for damaged areas should be set in consideration of the native vegetation of the nearby area, but the goal to achieve restoration should be set at a feasible level.

      • KCI우수등재

        서울 도시생태 보호지역 관리계획 연구 - 백사실계곡 생태·경관보전지역을 대상으로 -

        박석철,한봉호,곽정인,Park, Seok-Cheol,Han, Bong-Ho,Kwak, Jeong-In 한국조경학회 2015 韓國造景學會誌 Vol.43 No.6

        본 연구는 백사실계곡 생태 경관보전지역의 생물다양성 확보와 건강한 생태계 유지에 필요한 정밀 자료를 구축하고, 보전지역 특성에 맞는 생태적 관리계획을 제시하고자 하였다. 연구기간은 2010년 4월부터 2013년 5월까지이다. 백사실계곡은 최근 시민들의 이용 증가와 외래식물 식재 및 확산이 되고 있어 생태계 교란이 가속화 되고 있다. 주요 연구내용은 보호지역 관리시스템 고찰, 유역권 차원의 생태적 관리 필요성 고찰, 관리계획 수립 체계 설정, 사례 대상지 현황조사 및 분석, 위협요인 도출, SWOT 분석을 통한 목표 설정, 관리 전략, 관리계획 수립이었다. 현황조사 항목은 자연기반 환경, 동 식물 현황, 이용 환경으로 구분하여 파악하였다. 백사실계곡 생태 경관보전지역의 생태적 관리계획의 목표는 양서류의 안정적인 산란 및 서식을 위한 유역권 관리, 까막딱다구리의 영구적 서식 유도를 위한 산림 식생 보전 및 복원, 대경목 느티나무 군락 경관 보전을 위한 기반 환경 관리, 보호생물의 안정적 서식을 위한 이용자 관리로 설정하였다. 세부 관리계획 내용으로 보전 계획은 상류부 점 비점오염원 관리, 자생식물 생육환경 확보, 안전한 양서류 서식처 확보, 주요 야생조류 서식지 확보를 제시하였고, 복원 계획은 인공림의 자연림 복원, 자생초본 및 외래초본 관리, 훼손된 숲길 복원을 제시하였다. This study is for constructing detailed data to secure biological diversity and maintain a healthy ecosystem in Backsasil Valley Ecological and Scenery Conservation Area, and for preparing an ecological management plan fit for the protected area. The period for this study was from April 2010 to May 2013. Recently, the increase of visitors to Baeksasil Valley, as well as the plantation and dissemination of introduced vegetable species, become factors accelerating ecological disturbance. Major research contents included the reviews of the management system of the protected areas, the necessity of ecological management at the basin level, establishing the system of a management plan, research and analysis of environment ecology, analysis of threatening factors, goal-setting, management strategies, and a plan through SWOT analysis. Survey items were the natural environment, major components of ecosystem, and human-use. The goals of ecological management were basin zone management for amphibians, conservation and restoration of forest vegetation for conservation habitat of Dryocopus martius, conservation habitat of Zelkova serrta for nature landscape, and management of users for environment protection. The conservation management plan at a basin zone level contains the management of point and non-point pollution sources in the upstream, securing growing conditions for native plants, securing safe habitats for amphibians, and securing of habitats for major wild birds. Also, restoration of natural forests, management of native plants and introduced vegetable species, and restoration of degraded forest paths are suggested for the restoration plans.

      • KCI우수등재

        도시생물다양성 지수(CBI) 중 생태네트워크 산정을 위한 도시생태현황지도 및 토지피복지도 활용 가능성 연구

        박석철,한봉호,박민진,윤형두,김명진,Park, Seok-Cheol,Han, Bong-Ho,Park, Min-Jin,Yun, Hyerngdu,Kim, Myungjin 한국조경학회 2016 韓國造景學會誌 Vol.44 No.6

        본 연구는 도시생물다양성 지수(CBI) 중 생태네트워크(지표. 2)를 국내의 현실에 맞게 변형 적용한 연구로 도시생태 현황지도와 토지피복지도의 활용 가능성을 파악하고자 하였다. 계룡시 도시생태현황지도 생태네트워크를 산출한 결과는 13,713,703(33.8%)이었고, 토지피복지도로 산출한 결과는 17,686,966(37.9%)으로 토지피복지도의 결과치가 도시생태현황도 보다 높게 산출되었다. 고양시 도시생태현황지도 생태네트워크를 산출한 결과는 4,961,922(4.9%)이었고, 토지피복지도로 산출한 결과는 4,383,207(3.7%)로 토지피복지도의 결과치가 도시생태현황도 보다 낮게 산출되었다. 주요 연구결과로 생태네트워크 산출 시 군부대시설 유형은 도시생태현황지도에서는 특수지역, 토지피복지도에서는 시가화지역과 산림지역으로 구분되는 오류가 발견되었다. 또한 중분류 토지피복지도의 경우, 산림지역 주변은 토지이용이 세분되지 않았고, 개발지역이 산림녹지로 표현되는 오류가 발견되었다. 자연요소를 선정할 때에도 도시생태현황지도의 인공형하천, 인공연못, 인공초지 등의 유형은 제외가 필요하였고, 토지피복지도의 자연나지는 자연요소로 포함해서 산출할 필요가 있었다. 앞으로 전국 단위 생태네트워크는 토지피복지도를 활용하여 개략적으로 분석이 가능할 것으로 판단되었으며, 도시생태현황지도가 구축된 도시에서는 도시생태현황지도를 활용한 생태네트워크 산정이 더 정확한 현황 진단이 될 것으로 판단되었다. This study modified and applied the ecological network(Indicator 2) from the City Biodiversity Index(CBI) to be tailored to Korea. It is calculated by utilizing a biotope map and a land cover map. The ecological network of Gyeryong-Si was 13,713,703(33.8%) with the biotope map and 17,686,966(37.9%) with the land cover map. The result of the biotope map was lower than the land cover map. The ecological network of Goyang-Si was 4,961,922(4.9%) with the biotope map and 4,383,207(3.7%) with the land cover map. The result of the land cover map was lower than the biotope map. As a main result of the research, an error was discovered in which, when calculating the ecological network, the types of the military unit facilities were distinguished into a special area on the biotope map and into an urbanization promotion area and a forest area on the land cover map. In the case of a middle-classified, land cover map, the land use in the surroundings of the forest area was not subdivided. An error in the development area expressed as a forest green was discovered. When selecting the natural elements, too, regarding the types of artificially-created rivers, artificial ponds, and artificial grasslands, etc. on a biotope map, the exclusions were necessary. Regarding the natural, bare ground on a land cover map, there was a need to calculate by including the natural elements. It was judged that, in the future, the ecological network in the unit of the entire nation can be analyzed roughly by utilizing a land cover map. It was judged that, in a city having a biotope map, the calculation of the ecological network utilizing a map of the present situation of the urban ecology will be a more accurate diagnosis of the present situation.

      • KCI우수등재
      • KCI등재

        서울시 강북구 솔밭근린공원 소나무림 답압 피해 개선사업 효과 연구

        권기영,한봉호,박석철,최진우,Kwon, Ki-Young,Han, Bong-Ho,Park, Seok-Cheol,Choi, Jin-Woo 한국조경학회 2012 韓國造景學會誌 Vol.40 No.5

        본 연구의 목적은 서울시 솔밭근린공원 소나무림을 대상으로 울타리 설치, 관목 및 초본식물 식재 등의 답압 피해 개선사업의 효과를 검증하는 것이다. 2005년과 2010년 현장조사를 통해 소나무 식재유형, 식재구조, 토양경도, 토양단면구조, 토양 이화학적 특성 등의 변화 상태를 분석하였다. 또한 소나무의 가지생장량과 직경생장량을 측정하여 개선사업전과 후 상태를 비교 분석하여 답압 피해지역 개선사업에 따른 효과를 고찰하였다. 식재유형 변화에서는 하층 식생이 없는 소나무림이 2005년 48.5%에서 2010년에는 6.8%로 감소하였으며, 관목 및 초본이 식재된 소나무림이 7.4%에서 46.8%로 크게 증가하였다. 식재구조 변화에서는 대부분 조사구가 하층식생이 거의 없는 소나무림에서 진달래, 철쭉꽃, 원추리, 돌단풍, 옥잠화 등 관목 및 초본식생이 넓게 피복된 소나무림으로 변화되었다. 2005년 솔밭근린공원의 토양경도는 평균 $54.8kg/cm^2$로 딱딱한 토양층이었다. 2010년 솔밭근린공원 개선사업 후 토양경도는 대부분 $4kg/cm^2$ 미만으로 식물생육에 영향이 없는 양호한 상태였다. 2005년에 토양단면구조는 답압 영향으로 인해 낙엽층이 소실되어 있었으며, 유기물층이 1.0cm로 식물이 생육하는데 적합하지 않았다. 개선사업 후 2010년에는 답압에 대한 피해가 줄어서 낙엽층이 3.0cm까지 새롭게 형성되었고, 지속적인 시비에 따라 유기물층의 깊이도 1.5~8.0cm로 증가하였다. 2005년 토양 이화학적 특성에서는 pH 5.76~6.70, 유기물 함량 7.15~10.55%, 유효인산 9.38~26.47mg/kg으로 소나무 생육 토양환경조건으로 큰 문제가 없었다. 또한 소나무 15주를 선정하여 가지생장량을 분석한 결과, 개선사업 이후 가지생장량이 점차 증가하는 경향이었다. 토양경도 등급에 따라 소나무 70주를 선정하여 직경생장량을 측정한 결과, 대부분 조사구에서 소나무가 개선사업 이후 생육이 양호해지는 것을 확인할 수 있었다. 본 연구결과를 통해 울타리 설치, 관목 및 초본식물 식재 등의 답압 피해 개선사업이 소나무 생장을 향상시키는 효과를 검증할 수 있었다. The purpose of this study is to validate the effect of improvement such measures as fence installation or planting of bush and herbaceous plants taken from Pinus densiflora forest in Solbat Neighborhood Park in Seoul, which was damaged by stamping. The study was conducted in 2005 and 2010 in order to analyze changes in planting types, planting structure of Pinus densiflora forest, soil hardness, cross-sectional structure of soil, and physicochemical characteristics of soil. It was also measured by the growth of the branches and the diameter of Pinus densiflora, comparing before and after the improvement to study the effect of restoring Pinus densiflora forest damaged by stamping. When it comes to a change in planting type, Pinus densiflora forest without underlay was reduced from 48.5% in 2005 to 6.8% in 2010. Pinus densiflora forest with bush and herbaceous plants was increased dramatically from 7.4% to 46.8%. Regarding planting structure, in most area of the subject site, Pinus densiflora forest without under layer was transformed into the one with bush and herbaceous plants including Rhododendron mucronulatum, Rhododendron schippenbachii, Hemerocallis fulva, Aceriphyllum rossii, Hosta plantaginea growing in a wide area. The soil in the Solbat Neighborhood Park was very stiff with soil hardness of $54.8kg/cm^2$ in average. After the improvement efforts made in the Park in 2010, the soil hardness was mostly less than $4kg/cm^2$, being in a good condition with little influence on the growth of plants. When it comes to the cross-sectional structure of soil, litter layer didn't exist in 2005 because of stamping and the organic matter layer was only 1.0cm thick, which provided an unfavorable condition for plant growth. However, after improvement, litter layer was formed up to 3.0cm and thickness of the organic matter layer also went up to 1.5~8.0cm in 2010 because the damage from stamping was reduced. Concerning the physicochemical characteristic of soil, in 2005 soil showed pH 5.76~6.70, organic matter content 7.15~10.55%, and available phosphorus 9.38~26.47mg/kg, having no big problems as a soil environment for growth of Pinus densiflora. 15 trees of Pinus densiflora were selected to see branch growth and it was found that the branches tended to grow better after improvement. 70 trees of Pinus densiflora from various grades of soil hardness also were selected to identify changes of diameter growth. In most cases, it was analyzed that Pinus densiflora grew better after improvement. After conducting this study, it was validated that such measures as fence installation or planting of bush and herbaceous plants to restore Pinus densiflora Forest damaged by stamping were effective in improving growth of Pinus densiflora.

      • KCI등재

        지반구조에 따른 수목 생육상태 비교 연구 - 인천광역시 만석비치타운 단지를 대상으로 -

        조성호,한봉호,박석철,Cho, Sung-Ho,Han, Bong-Ho,Park, Seok-Cheol 한국환경복원기술학회 2022 한국환경복원기술학회지 Vol.25 No.3

        The purpose of this study is to compare growth condition of landscape woody plants growing on the different ground structures in apartment complex. I chose Manseok Beach Town Complex 2, in Manseok-dong, Seo-gu, Incheon which has both natural and artificial ground as a subject site. Analysis of three phases of soil showed that artificial ground had average liquid phase of 30.89%, artificial ground mounding 33.88% and natural ground 24.40%. It means that artificial ground has higher water content than natural ground despite having same earthiness. It is believed that artificial ground is not as well drained as natural ground even though it is connected to the natural ground and has a deep soil depth because of mounding. Comparative study between woody plants on natural ground and those on artificial ground demonstrated that trees on natural ground grew 40.4% compared to those on artificial ground(0.875mm more) in terms of diameter growth. Average diameter growth of trees on natural ground was 3.040mm against 2.165mm for those on artificial ground. All 19 tree species which were measured for root diameter growth showed similar or higher growth on natural ground than on artificial ground. When it comes to growth of height, arborvitae showed highest growth on natural ground, followed by Thuja occidentalis, Pinus strobus, Magnolia denudata, Diospyros kaki and Aesculus turbinata. I measured branch growth and rate of leaf adherence of Pinus strobus. Average annual rate of branch growth of woody plants on natural ground was twice as high as those on artificial ground. I could conclude that ground structure influences branch growth of Pinus strobus. Statistics analysis of tree damage demonstrated significant result, meaning that there is a difference in the average damage rate depending on structure of ground. In order to validate growth difference by planting ground, I conducted T-Test of growth of diameter, root diameter, branch and height on woody plants growing on natural and artificial ground. As a result, it is believed that there is a difference in the growth of trees depending on the ground structure. Putting all these results together demonstrates that woody plants on natural ground generally grow better than those on artificial ground, which means ground structure does have an influence on the environment of growth of trees.

      • KCI우수등재

        도로변 완충녹지의 식재구조에 따른 초미세먼지(PM<sub>2.5</sub>)농도 저감효과 연구 - 서울 송파구 완충녹지를 대상으로 -

        황광일,한봉호,곽정인,박석철,Hwang, Kwang-Il,Han, Bong-Ho,Kwark, Jeong-In,Park, Seok-Cheol 한국조경학회 2018 韓國造景學會誌 Vol.46 No.4

        본 연구의 목적은 도시계획시설로 조성되는 완충녹지가 $PM_{2.5}$(초미세먼지) 저감에 효과가 있는지를 규명하고, 도로변 완충녹지의 구조, 녹량(녹지용적), 식재유형에 따른 초미세먼지 변화량을 분석하여 초미세먼지 저감을 위한 완충녹지 조성 시 활용할 수 있는 요소들을 도출하는 것이었다. 연구대상지는 송파구를 선정하였고, 양재대로, 송파대로에 인접한 5개의 완충녹지에서 16개 조사구를 선정해 현장조사를 실시하였다. $PM_{2.5}$ 농도 측정결과, 조사구별 평균농도는 계절 상관없이 보도 $46.6{\mu}g/m^3$, 녹지 $45.5{\mu}g/m^3$, 주거지 $42.9{\mu}g/m^3$로 모두 도로($53.2{\mu}g/m^3$)보다 낮았으며, 주거지 농도 값이 가장 낮았다. 완충녹지의 농도 저감효과 확인을 위해 완충녹지의 녹량과 초미세먼지 상대비율간의 상관관계 분석결과, 교목과 관목 전체 녹량이 높은 그룹의 상대비율이 낮은 것으로 확인되어 완충녹지 녹량의 영향력을 증명했으며, 관목 부족형이 교목 부족형보다 농도상대비율이 더 높은 것으로 확인되어 관목의 영향이 더 큰 것으로 판단되었다. 교목과 관목의 식재구조에 따른 녹피율과 녹지용적계수가 복합적으로 $PM_{2.5}$ 농도 저감에 영향을 미치고 있었으며, 교목의 열수와 관목의 층위구조가 $PM_{2.5}$ 농도 저감에 중요한 영향요인으로 판단되었다. 특히, 초미세먼지 농도가 높은 겨울철 완충녹지의 $PM_{2.5}$ 농도저감 특성 분석결과, 관목의 녹피율이 중요한 요인이었다. This study aims to verify the effect of green buffers, built as urban planning facilities on the reduction of ultra-fine particulate($PM_{2.5}$) and analyze changes in ultra-fine particles by structure, green volume and planting types of wayside green buffers, thus drawing the factors that can be used when green buffers are built to reduce ultra-fine particulate based on the results. This study selected Songpa-gu, and investigated 16 sites on 5 green buffers adjacent to two of Songpa-gu's main roads, 'Yangjaedaero' and 'Songpadaero'. This study divided all the green spaces into three different types-slope type, plain type and mounding type, and analyzed the mean green volume. As a result of measuring the concentration of $PM_{2.5}$, this study found that it was $55.5{\mu}g/m^3$ on average in winter, which was a harmful level according to the integrated environmental index provided by Seoul City, saying that levels above $50{\mu}g/m^3$ may have a harmful effect on sensitive groups of people. Particularly, the concentration of $PM_{2.5}$ was $38.6{\mu}g/m^3$ on average in spring, which exceeded the mean concentration of $PM_{2.5}$ in Seoul City in 2015. The mean concentrations of $PM_{2.5}$ in every investigation spot were $46.6{\mu}g/m^3$ for sidewalks, $45.5{\mu}g/m^3$ for green spaces and $42.9{\mu}g/m^3$ for residential areas, all of which were lower than $53.2{\mu}g/m^3$ for roads, regardless of the season. The concentration of $PM_{2.5}$ for residential areas was the lowest. In the stage of confirming the effect of green buffers, this study analyzed the correlation between the green volume of vegetation and the fluctuated rate of ultra-fine particles. As a result, it was found that the green coverage rate of trees and shrubs was related to the crown volume in every investigation spot but were mutually and complexly affected by each other. Therefore, this study judged that the greater the number of layers of shrubs that are made, the more effective it is in reducing the concentration of $PM_{2.5}$. As for seasonal characteristics, this study analyzed the correlation between the concentration of $PM_{2.5}$ for residential areas in winter and the green coverage rate of each green space type. As a result, this study found that there was a negative correlation showing that the higher the shrub green coverage rate is, the lower the concentration value becomes in all the slope-type, plain-type and mounding-type green spaces. This study confirmed that the number of tree rows and the number of shrub layers have negative correlations with the fluctuated concentration rate of $PM_{2.5}$. Especially, it was judged that the shrub green volume has greater effect than any other factor, and each green space type shows a negative correlation with the shrub coverage rate in winter.

      • KCI우수등재

        고속도로 휴게소 환경개선을 위한 기능 증진 방안 연구 - 수도권 휴게소를 중심으로 -

        이원명,한봉호,김종엽,박석철,Lee, Won-Myoung,Han, Bong-Ho,Kim, Jong-Yup,Park, Seok-Cheol 한국조경학회 2015 韓國造景學會誌 Vol.43 No.3

        This study was carried out to suggest improvement plans for problems with the landscape areas of highway service areas. The survey factors were land use, placement of green area and land coverage in terms of spatial and environmental property. Noise and topographic structure in detached green areas were surveyed in terms of impact factor. The status of the planting area around each service area was analysed in regards to planting structure and planting landscape. As a result, the mean of rations of land use were 81.6% building and 18.4% green areas, which were composed of 5.4% landscape area, 9.1% buffer area, etc. Planting areas as usable space accounted for only 0.7%, and the result of noise measurement was different according to the distribution of highway and service area and type of detached green area. The mean of ratio of planting area was 18.4%, which consists of 6.7% landscape planting, 3.4% other green area, 4.6% buffer area, 2.0% buffer and landscape area, 1.1% shade planting and 0.5% landscape and shade planting. Most planting areas aim at landscape appreciation and areas in which visitors can relax and gain recreation were insufficient. The planting structures of service areas were 52.2% canopy layer, 11.8% shrubs and 9.4% canopy and shrub layers, and most of the planting areas were a single layer of green area. Multi-layered planting structures in the landscape and buffer areas were required and a shade planting area was needed to improve amenities as planting canopy layered trees. This study suggested improvement methods for based environments, spatial function and planting function in landscape areas. 본 연구는 수도권에 설치된 고속도로 휴게소 5개소를 대상으로 휴게소 공간 및 환경 특성, 식재현황을 조사 분석하여 휴게소 조경공간의 문제점과 개선방안을 제시하였다. 공간 및 환경 특성에서는 토지이용, 녹지 배치, 토지피복과 환경영향 요인으로 소음 현황, 분리녹지대 지형 구조를 조사 분석하였다. 식재현황에서는 식재개념, 식재구조, 식생경관을 조사 분석하였다. 토지이용 현황은 건물 등 시설지가 81.6%, 녹지는 18.4%이었으며, 녹지는 경관공간 5.4%, 완충공간 9.1%, 녹음공간 0.7%이었다. 녹지 배치는 분리녹지대, 건물 좌 우측, 진 출입부, 휴게소 건물 후면에 주로 배치되어 있었다. 토지피복 현황으로 평균 불투수포장율은 79.3%, 평균 투수포장율은 20.7%이었다. 소음 측정 결과는 소음원인 고속도로와 휴게소의 배치, 분리녹지대의 유형 및 규격에 따라 차이가 있었다. 식재개념 현황은 경관식재 6.7%, 기타녹지 3.4%, 완충식재 4.6%, 완충+경관식재 2.0%, 녹음식재 1.1%, 경관+녹음식재 0.5%로 조경공간 대부분이 감상을 위한 공간 위주로 조성되어 있었으며, 이용자의 휴식, 위락 공간 등 적극적 이용 가능 공간은 부족하였다. 식재구조는 교목층식재 52.2%, 관목층식재 11.8%, 교목층+관목층식재 9.4%로 대부분 단층구조이었다. 식생경관은 조사지점에 따라 식재밀도, 식재구조, 생육상태의 영향을 받고 있었다. 고속도로 휴게소 환경 개선 방안은 기반환경 개선, 공간기능 개선, 식재기능 개선으로 구분하여 제시하였다. 기반환경 개선은 휴게소 소음 개선을 위한 분리녹지대 기능 강화, 물순환 체계 개선, 비점오염 저감을 위한 시설물 설치를 제시하였다. 공간기능 개선은 휴게공간 접근성 향상을 위하여 건물 좌우측에 조성되는 녹지를 건물 전면에 배치하는 휴게공간 배치 개선과 주차장 내 녹지섬 조성을 통한 열섬현상 완화 및 보행자 안전 확보를 위한 식재 및 조성 방안을 제안하였다. 식재기능에서는 분리녹지대 완충기능 강화를 위하여 다층형 수림대 조성, 외곽녹지 완충기능 확보를 위한 상록교목+낙엽교목+관목층의 식재구조를 제시하였다. 건물 전면과 이용 선호도가 높은 건물 좌측공간에 녹음공간을 조성하고, 주제 설정을 통한 경관공간 식재방안을 제시하였다.

      • KCI등재

        송이 생육환경 특성을 고려한 소나무비오톱지도 작성 연구 -강원도 양양군을 사례로-

        한봉호 ( Bong Ho Han ),박석철 ( Seok Cheol Park ),곽정인 ( Jeong In Kwak ),김보현 ( Bo Hyun Kim ),이경재 ( Kyong Jae Lee ) 한국환경생태학회 2011 한국환경생태학회지 Vol.25 No.2

        본 연구는 효과적인 송이산 관리를 위한 기초자료 확보를 위하여 강원도 양양군을 사례로 송이 생육환경특성을 고려한 소나무비오톱지도 작성을 목적으로 수행하였다. 연구방법은 송이와 관련한 국내·외 관련연구 고찰을 통해 송이 생육환경 특성을 도출하고, 송이 생산지의 식물군집구조와 토양환경을 파악하여 소나무비오톱 지도화 기준을 도출하였다. 지도화 기준은 송이가 발생할 수 있는 중요 요인을 지형 조건과 토양 조건, 식생 조건으로 구분하여 도출하였다. 전체 비오톱유형은 송이생산 가능지, 송이생산 잠재지로 크게 구분하였으며, 송이생산 가능지는 송이생산이 가능한 지형구조 및 토양구조 내 분포하는 소나무 비오톱으로 관목층에 기타 관목성상의 수종이 우점하는 흉고직경 30㎝ 미만의 단층구조의 소나무 비오톱과 아교목층에 소나무가 우점하는 다층구조의 소나무비오톱이 해당되었다. 송이생산 잠재지는 송이생산이 가능한 지형구조 내에 분포하고 있으나 흉고직경 30㎝이상의 노령화된 소나무가 우점하는 단층구조의 소나무비오톱, 아교목층에 참나무류가 우점하는 소나무 비오톱, 관목층에 참나무류가 우점하는 단층구조의 소나무 비오톱 등 식생구조가 부적절한 지역으로 향후 식생관리를 통해 송이 발생 유도가 가능한 지역이었다. 연구결과 소나무비오톱은 송이생산 가능지 6개 유형, 송이생산 잠재지 9개 유형, 송이생산 불가능지 등 총 16개 유형으로 구분되었다. 송이생산 가능지는 전체 소나무림 중 총 9.8㎢, 15.48%이었고, 송이생산 잠재지는 20.52㎢, 32.42%이었으며, 송이생산 불가능지는 32.97㎢, 52.10%이었다. The purpose of this paper was to ensure the basis for effective management of Tricholoma matsutake mountain province, to perform biotope mapping of Pinus densiflora based on growth environment of Tricholoma matsutake, target a cluster of Yangyang-gun, Kang Won-do. Study Methods were to review on growth and environmental characteristics of Tricholoma matsutake through internal and external documents and to identify vegetational structure and soil characteristics. This paper studied growth structure and soil environment of Pinus densiflora forest where a farm of production area for Tricholoma matsutake of in order to set the standard of Pinus densiflora biotope. Mapping standards were derived by separating of landform conditions, soil conditions, vegetation conditions. Biotope types were divided into possible production area for Tricholoma matsutake and potential production area for Tricholoma matsutake, possible production area for Tricholoma matsutake were Pinus densiflora biotope in landform and soil structure that enables Tricholoma matsutake production and Single-layered Pinus densiflora biotope of less than 30㎝(DBH)-Tree species that other shrub is dominant in shrub layer, Multi-layered Pinus densiflora biotope that Pinus densiflora forest was predominant in understrory layer. Potential production area for Tricholoma matsutake were single-layered Pinus densiflora biotope of more than 30㎝(DBH) in landform that enables Tricholoma matsutake production, Pinus densiflora biotope with Quercus predominant in the understrory layer, single-layered Pinus densiflora biotope with Quercus predominant in shrub layer, inappropriate vegetation structure area that the induction of production of Tricholoma matsutake was possible through future vegetation management. According to the research results, Pinus densiflora forest were divided into 16 types; 6 types of possible Tricholoma matsutake production areas, 9 potential Tricholoma matsutake production areas and 16 types of areas where Tricholoma matsutake production was impossible. Possible production areas account for 15.48%, or 9.8㎢out of the total Pinus densiflora forest while potential production areas take up 32.42%, or 20.52㎢, and areas where Tricholoma matsutake production was impossible was 52.10%, or 32.97㎢.

      • KCI등재

        도시계획 수립에 있어 도시생태현황지도 활용방안 연구 - 용도지역과 시가화예정용지를 중심으로 -

        권전오 ( Kwon¸ J Eon-o ),박석철 ( Park¸ Seok-cheol ),백승아 ( Baek¸ Seung-a ) 한국환경복원기술학회 2021 한국환경복원기술학회지 Vol.24 No.4

        In South Korea, there is a growing domestic need for a biotope map which contains ecological and environmental geographic information of a city. After the production of a Urban Ecological Maps(biotope map) by the Seoul metropolitan government in 2000, Natural Environment Conservation Act was revised in 2017 to make it mandatory for a local government to draw up its own urban ecological map. The aim of the present study was to find out ways to utilize an urban ecological map as a mean of communication between natural environment planning and urban planning sectors in a preliminary stage before introducing a big framework of ‘environmental and ecological planning.' The northern area of Incheon metropolitan city was selected as the target area for this study. The major research content includes a comparative analysis of special-purpose zones, urban planning zones, restricted development zones, and conservation forests with focus on biotope types and Grades 1 of ‘Biotope Type Assessment.' Farmland biotopes and forest biotopes within an area designated as an urban zone (residential, commercial and industrial zones) need to be redesignated as a zone which can conserve them. Especially considering a high possibility of damage to a large scale of natural green areas, these areas need to be readjusted immediately. If the entire area designated as an urban planning zone is to be developed, it is likely to cause serious damage to natural biotopes in the area (56.2%), including farmland biotope (30.4%), forest biotope (15.0%) and grassland biotope (10.8%), and thus, readjustment is needed. In case of a conservation forest, as it can possibly be damaged by the designation of special-purpose zones, it is necessary to match the designation of conservation forests or a special-purpose zones with their biotope types. In conclusion, we present a variety of thematic maps for utilization of an urban ecological map and propose a phase-specific environmental and ecological plan. Phase 1 is the establishment of a urban plan in consideration of ecological status; Phase 2 is the independent establishment of an environmental and ecological plan by an environment department; Phase 3 is an integrated management of ecological planning system and urban planning system.

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