• 제목/요약/키워드: 슬레이트

검색결과 40건 처리시간 0.023초

울릉도 산지 촌락 가옥의 유형과 특성 (The Types and Characteristics of Rural Housing in Ulleungdo Mountains)

  • 이전
    • 대한지리학회지
    • /
    • 제51권3호
    • /
    • pp.441-454
    • /
    • 2016
  • 이 연구는 지붕 형태, 지붕 재료, 외벽 재료에 초점을 두고 울릉도 산지 촌락 가옥의 유형과 특성을 고찰하는 연구이다. 그리고 울릉도 산지의 촌락 가옥 유형을 제주도와 경남의 촌락 가옥 유형과 비교하면서 그 특성도 논의한다. 울릉도 산지 촌락 가옥의 지붕 형태를 보면, 팔작지붕(42.1%)이 가장 많이 나타나고, 그 다음으로는 맞배지붕(25.8%), 우진각지붕(11.8%), 단순평지붕(10.7%) 등이 많이 나타난다. 지붕 재료를 보면, 컬러강판(69.1%), 아스팔트싱글(11.8%), 시멘트(10.7%) 등이 많이 나타난다. 컬러강판을 지붕 재료로 사용한 가옥이 압도적으로 많고, 기와나 슬레이트를 지붕 재료로 사용한 가옥은 한 채도 없다. 그리고 외벽 재료에서는 시멘트(27.5%), 사이딩(21.3%), 함석(16.8%), 목재(6.7%) 등이 많이 나타난다. 지붕 형태와 지붕 재료의 결합 관계로 본 가옥 유형에서는 팔작지붕-컬러강판 가옥 유형(73채; 41.0%)이 가장 많이 나타나고, 지붕 형태를 중심으로 해서 지붕 재료와 외벽 재료의 결합 관계로 본 가옥 유형에서는 팔작지붕-컬러강판-시멘트 가옥 유형(32채; 18.0%)이 가장 많이 나타난다. 울릉도 산지 촌락 가옥의 지붕/외벽 재료로 함석을 사용하는 빈도가 높은 것, 기와나 슬레이트를 지붕 재료로 사용하지 않는 것, 적벽돌이나 석재를 외벽 재료로 사용하는 빈도가 낮은 것 등은 건축 자재의 운송비용과 관련이 있을 것이다.

  • PDF

석면 슬레이트 해체작업의 공정분석 및 위험성평가에 관한 연구 (A Study on the Process Analysis and the Risk Assessment for Removal Work of the Asbestos Cement Slate)

  • 오현수;김정민;장성록
    • 한국안전학회지
    • /
    • 제29권6호
    • /
    • pp.137-143
    • /
    • 2014
  • Asbestos is given to a variety of six naturally occurring silicate minerals. These minerals possess high tensile strength, flexibility, resistance to chemical and thermal degradation, and electrical resistance. These minerals have been used for decades in thousands of commercial products, such as insulation and fireproofing materials, automotive brakes, textile products, cement and wallboard materials. When handled, asbestos can separate into microscopic-size particles that remain in the air and are easily inhaled. It is now known that prolonged inhalation of asbestos fibers can cause serious and fatal illnesses including malignant lung cancer, mesothelioma, and asbestosis. Therefore the use of asbestos and asbestos products has dramatically decreased in recent years. Also all constructions including asbestos should be removed under strictly controlled conditions and very tightly implemented health & safety management systems. In this study, the process of the removal work of the asbestos cement slate was analyzed by IDEF-0 modeling and evaluated by 4M risk assessment method. The results show that removal work of the asbestos cement slate was classified five process and eighteen detail process. The risk of safety side the higher than the risk of health side in 4M risk assessment.

슬레이트지붕 개량사업 구조안전성 검토 (A Study on the Structural Safety of the Roof Improvement Project)

  • 강경수
    • 한국농촌건축학회논문집
    • /
    • 제20권1호
    • /
    • pp.19-26
    • /
    • 2018
  • The roof improvement project is being carried out under the government's leadership for the sake of national welfare. The project is to replace the asbestos slate roof with a metallic one. In this study, the structural safety of the improved roof was examined and the project guidelines were reviewed. The causes of the roof damage were investigated and the structural analysis was performed for the roof frame subject to wind and snow loads. Metallic roof assemblies have higher strength and load resistance capability than usual slate ones, so the structural safety is governed by the frame. The stresses of the roof frame elements caused by the wind and snow loads were analyzed according to roof frame with various spacings between the rafters and the purlins. Wind load analysis was performed by 24, 28, and 38 m/sec of the basic wind speed. Snow load analysis was carried out by 0.5, 1.0 and $2.0kN/m^2$ of the ground snow load. As the analysis result, the current spacing and the size of the lumber did not satisfy the Korean building code specification. To secure the safety of the roof improvement project, the spacing of the roof frame elements and the size of the lumber should be determined based on the analysis results by structural engineers.

슬레이트 지붕의 설치년도와 면적에 따른 공기 및 유출 빗물 중의 석면 농도 (Asbestos Concentrations in Ambient Air and Drained Rainwater from Slate Roofing by Construction Year and Roof Area)

  • 장봉기;류제영;탁현욱;송수진;이종화;이강호;최재호
    • 한국산업보건학회지
    • /
    • 제23권3호
    • /
    • pp.196-204
    • /
    • 2013
  • Objectives: The purpose of this study is to analyze the number and influence factors of asbestos fibers in the air of farmhouses with asbestos cement slate roofing, as well as in rainwater per unit area of the asbestos cement slate roofing. Methods: At a distance of 1 m from the end of asbestos cement slate roofing in 20 farmhouses, the asbestos fiber in the air was collected three times on a clear day downwind from the prevailing wind. Rainwater falling from the slate roofing was collected four times with a 1.05-m rainwater pipe on a rainy day at the 20 farmhouses, filtered with a MCE filter, and analyzed with a phase contrast microscope. Results: The geometric mean of the number of asbestos fibers in the air of farmhouses with slate roofing was 0.11 fiber/L, and no samples exceeded the recommended standard of 10 fiber/L. As a result of multiple regression analysis, a factor which gave a significant influence to the asbestos fiber content in the air was the gross area of slate roofing at the target farmhouses. The number of asbestos fibers included in rainwater collected per 1 m2 of slate roofing was 1,753 fiber/$L{\cdot}m2$. As a result of multiple regression analysis, the number of asbestos fibers contained in rainwater per 1 m2 of slate showed a significantly higher tendency as the year of slate roofing installation at the target farmhouses receded. Conclusions: It was confirmed for the first time in Korea that asbestos from asbestos cement slate roofing scatters into the air.

옥천계(沃川系) 흑색(黑色)슬레이트내(內) 부존(賦存)하는 저품질(低品質) 우라늄광석(鑛石)에 대(對)한 광물학적(鑛物學的) 연구(硏究) (Mineralogy of Low-Grade Uranium Ores in the Black Slate of the Ogcheon Group, Korea)

  • 이동진
    • 자원환경지질
    • /
    • 제19권2호
    • /
    • pp.133-146
    • /
    • 1986
  • Primary uraninite and secondary uranium minerals such as torbernite, metatorbernite, tyuyamunite, metatyuyamunite, autunite and metaautunite have been identified from various types of uranium ores. Uranium minerals occur as accessory minerals in both the primary and secondary ores. Low·grade uranium ores consist of various kinds of primary and secondary minerals. Major constituent minerals of primary uranium ores are graphite. quartz. Ba-feldspar and sericite/muscovite, and accessories are calcite, chlorite, fluorapatite, barite, diopside, sphene, rutile, biotite, laumontite, heulandite, pyrite, sphalerite and chalcopyrite, and secondary minerals consist of kaolinite, gypsum and goethite. Uraninite grains occur as microscopic very fine-grained anhedral to euhedral disseminated particles in the graphitic matrix, showing well·stratified or zonal distribution of uranium on auto-radiographs of low-grade uranium ores. Some uraninite grains are closely associated with very fine-grained pyrite aggregates, showing an elliptical form parallel to the schistosity. Some uraninite grains include extremely fine-grained pyrite particle. Sphalerite and pyrite are often associated with uraninite in graphite-fluorapatite nodule. The size of uraninite is $2{\mu}m$ to $20{\mu}m$ in diameter. Low-grade uranium ores are classified into 5 types on the basis of geometrical pattern of mineralization. They are massive, banded, nodular, quartz or sulfide veinlet-rich and cavity filling types. Well-developed alternation of uranium-rich and uranium-poor layers, concentric distribution of uranium in graphite-fluorapatite nodule and geopetal fabrics due to the load cast of the nodule suggest that the uranium was originally deposited syngenetically. Uraninite crystals might have been formed from organo-uranium complex during diagenesis and recrystallized by metamorphism. Secondary uranium minerals such as torbernite, tyuyamunite and autunite have been formed by supergene leaching of primary ores and subsequent crystallization in cavities.

  • PDF

슬레이트 지붕 노후화에 따른 석면 섬유 방출량 (Releasing of asbestos fibers from the weathered asbestos cement slate roofing)

  • 김현욱;박계영;한진구;한영선;황범구;이준혁
    • 한국산업보건학회지
    • /
    • 제20권2호
    • /
    • pp.88-93
    • /
    • 2010
  • To confirm and quantify asbestos fibers released from the asbestos-cement slate roofs due to weathering, three houses, selected based on the year of built - 60's, 70, and 80's, were investigated. All of them were located in the downtown of Seoul. Rain or snow-melt water was collected from the roof in a 3.5 liter plastic bottle. A known amount of collected water was filtered on the 37 mm membrane filter, ashed in a muffle furnace, and subsequently treated with HCl to remove organic material. The treated remaining was refiltered on a 25mm membrane filter for PLM and PCM analyses. The NIOSH 7400 method was utilized for PCM counting. In addition, SEM/EDX was used to confirm the asbestos types. The results of this study showed that chrysotile fibers were confirmed by PLM in all samples analyzed. A significant amount of asbestos fibers were found in the water samples. The ranges of asbestos fibers counted from the samples collected in the 60's, 70's, and 80's were; 10,406.3~55,575.6 f/L, 5,218.8~38,126.2 f/L, and 2,906.3~7,798.6 f/L, respectively. As anticipated, concentrations of asbestos fibers increased with time of installment of the roofing material. We conclude that weathering can be a significant factor on the release of asbestos fibers from the asbestos cement products. Since asbestos fibers released into environment can be a source of significant health hazard, countermeasures, such as replacement, removal, and encapsulation of weathered asbestos slate, should be initiated immediately.

부산시내 석면슬레이트지붕 건축물로부터의 석면 노출 및 건강위해성 평가 (Health Risk Assessment and Evaluation of Asbestos Release from Asbestos-cement Slate Roofing Buildings in Busan)

  • 정재원;조순자;박근태;이상준
    • 한국환경과학회지
    • /
    • 제22권12호
    • /
    • pp.1579-1587
    • /
    • 2013
  • This study was performed to evaluate the asbestos exposure levels and to calculate excess lifetime cancer risk (ELCR) for the risk assessment of the asbestos fibers released from asbestos-cement slate roofing (ASR) building. Total number of ASR buildings was into 21,267 in Busan, and 82.03 percent of the buildings was residential houses, and 43.61 percent of the buildings was constructed in 1970s. For this study, ten buildings were selected randomly among the ASR buildings. The range of airborne asbestos concentration in the selected ten ASR buildings was from 0.0016 to 0.0067 f/mL, and the concentration around no-admitted ASR buildings was higher than that around admitted buildings. The ELCR based on US EPA IRIS (integrated risk information system) model is within 3.5E-05 ~ 1.5E-04 levels, and the ELCR of no-admitted ASR buildings was higher than 1.0E-04 (one person per million) level that is considered a more aggressive approach to mitigate risk. These results indicate that the cancer risk from ASR buildings is higher than other buildings, and systematic public management is required for control of no-admitted ASR buildings within near future.

지역별·시기별 농촌주택의 재료 및 구법 특징 변화 연구 (The changing characteristics of Material and Structure of Rural Housing in the aspect of Period and Region)

  • 배웅규;주대관;정동섭;윤용우
    • 한국산학기술학회논문지
    • /
    • 제14권12호
    • /
    • pp.6504-6513
    • /
    • 2013
  • 본 연구에서 농촌주택을 대상으로 농촌주택의 구법과 재료의 지역별 시기별 변화 특징 분석결과, 지붕형태는 팔작지붕/우진각지붕(1970)-평지붕(1980)-맞배지붕(1990), 지붕구조재료는 한식목조/간이한식목조-파라펫눈썹지붕/경사슬래브-양식목조-경량철골조, 지붕마감재료는 초가/한식기와-슬레이트-시멘트/강판-아스팔트슁글/샌드위치패널/몰탈방수, 벽체구조재는 한식목조/간이한식목조-시멘트조적조-RC조-경량철골조/양식목조, 벽체마감재료는 흘미장/회벽-치장벽돌쌓기/시멘트미장위 페인트마감-자연석치장/사이딩/타일, 담장재료는 전시기별로 돌담과 시멘트블록, 마당재료는 흙바닥, 콘크리트가 사용된 것으로 나타났다. 지역별 변화특징으로 주택구조, 지붕형태, 지붕구조재료, 벽체마감재료, 외부공간에서 담장재료와 마당재료는 북부지역, 중부지역, 남부지역별로 농촌주택 특징변화의 차이가 나타났으며, 지붕구조재료, 벽체구조재료는 지역별로 유사한 변화양상이 나타나는 것으로 분석되었다.

공장과 주택 슬레이트지붕의 석면 노출특성 비교 (Comparison on the Releasing Characteristics of Asbestos Fiber from Plant Slate Roof and House Slate Roof)

  • 정재원;유은철;이상준;박근태
    • 한국환경과학회지
    • /
    • 제24권7호
    • /
    • pp.927-937
    • /
    • 2015
  • This study was performed to identify and quantify the asbestos fibers released from two types of asbestos-cement slate roofs. One is a plant roof installed in 1987 which contained 15% chrysotile, and the other is a residential roof installed before 1983 which contained 12% chrysotile. The concentrations of asbestos fibers in air surrounding asbestos-cement slate roofs and in the falling water harvested from the same roofs on rainy days ranged from 0.0012 to 0.0018 f/mL and from 1,764 f/L to 10,584 f/L, respectively. The concentration of inorganic fibers in the soil around asbestos-cement slate roofs was from 217 to 348 f/g. With the above results, the excess lifetime cancer risk (ELCR) for the risk assessment of the asbestos fibers released from asbestos-cement slate based on US EPA IRIS (Integrated risk information system) model is within 5.5E-06 ~ 6.5E-06 levels which indicates that the levels do not exceed "the acceptable risk(1.0E-05)" recommended by WHO. The asbestos concentration in air, drained rainfall and soil around the plant slate roof was higher than that around residential slate roof, but the excess lifetime cancer risk (ELCR) from residential slate was higher than that from plant slate. This suggested that the enclose and encapsulation of residential roofs have priority in removal policy to minimize the exposure risk.

무해화 처리 폐석면의 재활용에 관한 기초연구 (A Study on the Recycling of Detoxified Waste Asbestos)

  • 김태형;송태협;신현규;장경필
    • 한국건설순환자원학회논문집
    • /
    • 제8권2호
    • /
    • pp.161-166
    • /
    • 2020
  • 현재의 석면의 문제는 사용단계에서의 공기 중 석면의 비산 없이 안정적으로 사용하는 문제, 해체단계에서 석면 비산을 최소화하여 해체하는 문제, 해체된 폐석면 건축자재를 안정적으로 최종 처리 하느냐의 문제이다. 석면 폐기물의 처리는 매립 또는 부분적 응용처리 등과 같이 구분할 수 있다. 석면 건축자재를 무해화 하면, 이를 일반 폐기물로 분류하거나 또는 재활용 가능 폐기물로 분류가 가능할 것이다. 따라서 본 연구는 무해화 처리한 폐석면 분체의 물리, 화학적 특성 분석 이를 활용한 2차 제품 적용성을 평가하였다. 본 연구를 통하여 중 저온 화학적 처리를 통핸 석면 무해화 시 촉매반응을 위한 적정한 온도와 압력을 가하는 것이 가장 중요한 요소인 것으로 나타났다.