• 제목/요약/키워드: face stability

검색결과 435건 처리시간 0.026초

다중회귀분석을 통한 경남 지방도로 절취사면의 안정성평가 (Risk Assessment of the Road Cut Slopes in Gyeoungnam based on Multiple Regression Analysis)

  • 강태승;엄정기
    • 지질공학
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    • 제17권3호
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    • pp.393-404
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    • 2007
  • 본 연구는 절리암반사면의 현장상태 및 위험도에 대한 현장조사를 기초로 사면의 상대적 위험도를 판단 할 수 있는 토대를 마련하기 위하여 개별요인이 사면안정성에 미치는 영향을 고찰하였으며 사면붕괴에 영향을 미치는 요인들에 대한 통계적 분석을 수행하였다. 사면의 붕괴요인으로는 기존에 제시된 인장균열, 지반변형, 구조물 변형, 붕괴발생규모, 절리주향, 절리경사, 절리상태, 사면경사, 강우 및 지하수위, 절취상태, 배수조건, 보호보강상태 등 12가지 항목을 고려하였다. 본 연구를 위한 조사지역은 경상남도 지방도로에 위치한 절취사면 중 붕괴 이력이 있거나 다소 불안감을 보이는 위험 절개지 233개소이다. 조사지역의 사면안정성평가는 각각의 평가요인(붕괴요인)에 따른 사면의 결함지수와 사면위험등급에 의해 수행되었다. 조사된 총 233개소의 사면 중 토사사면을 제외한 암반사면 126개소를 선별하여, 각각의 붕괴요인들과 사면위험등급과의 통계적 연관성분석을 실시하였다. 또한, 다중회귀분석을 수행하고 적용성을 고찰하여 사면결함지수와 위험등급을 예측할 수 있는 통계모형을 제시하였다.

비대면 업무환경에서 중소제조기업의 기업경영분석 (Financial Statement Analysis of SMEs in a Non-Face-to-Face Work Environment)

  • 임헌욱
    • 문화기술의 융합
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    • 제9권2호
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    • pp.119-126
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    • 2023
  • 코로나19 현상으로 우리나라 중소기업의 1/3이상이 재택근무를 하였다. 이러한 상황에서 제조업 중 중소기업의 경영상태를 알아보고 실질적인 정책지원 방향을 찾고자 하였다. 조사자료는 한국은행의 기업경영분석 2021년 자료를 근거로 하였으며, 연구결과 중소기업의 부채는 362조원(2019년)에서 409조원(2022)으로 증가한 반면 자본은 489조(2019년)원에서 336조원(2022년) 축소되었다. 당기순손익은 14.9조원(2019년)에서 23.3조원(2021년)으로 증가하였다. 기업의 재무건정성 분석 결과, 첫째, 안정성은 전체 산업 대비 유동비율은 높고 차입금의존도가 높았으며, 둘째, 수익성은 매출액경상이익률이 3.20%(2019년)에서 4.28%(2021년)로 향상되었으나, 전산업 5.01%(2021년) 비해 낮았다. 셋째, 성장성은 총자산증가율은 12.43%(2021년)이며 전산업 7.94%(2021년) 보다 높았다. 매출액증가율도 전산업(2021년)은 (-)성장인데 반해 중소기업은 14.78%의 성장을 보였다. 넷째, 활동성은 총자산회전율이 전산업 0.73에 비해 0.96%로 높았다. 결론적으로 전산업에 비해 안정성과 수익성은 낮았고, 성장성은 높았다. 향후 중소제조업의 특성상 성장성이 높은 산업위주의 정책이 필요한 것으로 보인다.

특정 사례터널 해석 결과 및 평가

  • 이승래;오세붕;백규호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1991년도 추계학술발표회 논문집 지반공학에서의 컴퓨터 활용 COMPUTER UTILIZATION IN GEOTECHNICAL ENGINEERING
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    • pp.123-132
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    • 1991
  • The GEOKST program was used to solve the tunnel example problem. The package can solve such geotechnical problem as excavation, embankment, foundations, etc., in which the soil can be modeled by various elastoplastic geomaterial models. The main objective was to consider the effects of excavation depth to the face of the tunnel on the stability of the ground and support system. Depended on the strength of the ground materials, the limit excavation depth without any support system could be established by analyzing three-dimensional excavation problem. In this given example problem, the strengths of the ground materials were enough for the stability of the tunnel without any support system up to fairly deep excavation and the maximum tunnel section displacement was stabilized as the excavation proceed. The asymptotic value was approximately the same as that of the plane strain analysis. Thus, assuming the plain strain condition and simulation the actual excavation procedure, the maximum tunnel section displacement was caculated after final step. The maximum calculated displacement occured at the top section of the tunnel geometry and was about 8mm.

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진주지역 중생대 암반절토사면 지반특성 (Geoengineering Characteristics of the Cretaceous Rock Cut Slopes in Jinju area)

  • 김승현;이정엽;이종현;구호본
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 춘계 학술발표회 논문집
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    • pp.652-661
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    • 2006
  • The cut slopes in Jinju area constitute the Cretaceous Sedimentary rock which is one of the most poor ground conditions. The geological rocks of the cut slopes are correlated with Jinju Formation. Most of the rocks consist of Black Shale layer, but the lower parts consist of Alkorsic White Sandstone. So, It is characteristic of the differential weathering due to the difference of rock species. Moreover, vertical joints which concentrate on the released rock and weak rock fragments are accompanied with minor faults. We make out face mapping about each slopes through the detailed field-study and deduce RMR and SMR from the field data. The strength properties of rocks were obtained from references, indoor tests, and Back Analysis method. And, choosing properties were used in the stability analysis as stereographic projection and limit equilibrium analysis and we establish the countermeasures for the cut slopes.

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경부고속철도(대구-부산) 도심통과 노반신설 공사중 기존 지하철 터널구간의 구조적 안정성 검토 (Structure stability study for existing subway tunnel segment of Seoul-Busan high-speed railroad (Daegu - Busan) construction)

  • 공병승;김민호
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.1752-1759
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    • 2007
  • In the new Seoul-Busan high speed railroad construction specially city center passage roadbed establishment is recommended the staibility for the existing subway tunnel segments of Busan subway line No. 1 and No.2. regarding the appearance condition, a quality condition and the durability of the objective facility site exact inspection, and it evaluates the numerical analysis which uses MIDAS GTS it leads and there is the objective of the place where the stability of the objective facility and this tunnel it investigates. To immediacy of the on-the-spot inspection result whole facility it is a condition where the reinforcement which is simple not to be hindrance is necessary, 2nd Line case it is a condition which transfer is good but the general defect and the damage which occur from the tunnel of NATM type were confirmed part. While roadbed establishment constructing that the continuous maintenance is necessary, it is judged. The result of 1st, 2nd Line maximum sinkage, unequal sinkage and the lining stress of numerical analysis are within permission and the damage degree is appearing with the fact that the degree it will can disregard it is slight. But it enforces necessary Pre-grouting in order to minimize an actual tunnel face conduct and when the tunnel is excavated it is judged with the fact that necessary to minimize the outflow possibility.

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일차파괴된 암반사면의 전단강도 및 보강설계법 고찰 (A study on the determination of shear strength and the support design of pre-failed rock slope)

  • 조태진;김영호
    • 터널과지하공간
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    • 제5권2호
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    • pp.104-113
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    • 1995
  • Shear strength of the discontinuity on which the pre-failure of rock slope was occurred during surface excavation was measured through the direct shear test using core samples obtained in-situ. Internal friction angle was increased as the roughness of discontinuity surface(JRC) was increased. Results of the tilt test using core samples of higher JRC also showed very similar trend as those of the direct shear test. When the samples replicated from natural cores were used int he tilt test, results of friction angles showed almost perfect continuation of the residual friction angles from the direct shear test. However, when the gouge material existed in the discontinuity the internal friction angle strongly depended upon the rate of filling thickness to the height of asperity irrespective of the JRC. Based on the results of both direct shear test and tilt test internal friction angle and cohesion of discontinuity, which reflect the in-situ conditions fo pre-sliding failure and also can be used for the optimum design of support system, were assessed. Two kinds of support measures which were expected to increase the stability of rock slope were considered; lowering of slope face angle and installation of rock cable. But, it was found that the first method might lead to more unstable conditions of rock slope when the cohesion of discontinuity plane was negligibly low and in that case the support systems of any kind which could exert actual resisting force were needed to ensure the permanent stability of rock slope.

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조립질 입자크기가 전단강도에 미치는 영향 (A Study on Shear Strength of Granular Due to The Various Particle Size)

  • 이승호;서현길
    • 한국지반환경공학회 논문집
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    • 제13권4호
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    • pp.71-76
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    • 2012
  • 흙의 전단강도는 흙 속의 임의의 면을 따라 발생하는 파괴와 활동에 저항하는 힘으로 흙의 공학적 특성 중에 가장 중요한 요소 중의 하나이다. 전단강도는 앝은 기초나 말뚝의 지지력 해석방법과 같은 기초공학의 문제나 댐 및 절 성토 후의 사면안정, 그리고 토류 구조물의 횡토압과 같은 흙의 안정 문제 해석 등에 이용된다. 본 연구는 화강풍화토에서 점성토 성분을 제거하고 건조시킨 후, 2 00mm(10번체)와 0 85mm(20번체), 0 475mm(40번체)로 분류한 시료로 직접전단시험기를 이용하여 전단강도 변화를 파악하고자 하였으며, 또한 산호모래를 선정하여 비교 시험을 실시하였다. 따라서 본 연구는 입자의 크기에 따른 전단강도 특성을 비교한 연구에 도움이 될 것으로 판단된다.

목질.시멘트보드의 물리.기계적 성질, 열전도성 및 내화성 (Physical and Mechanical Properties, Thermal Conductivity and Fire-Proof Performance of Wood-Cement Board)

  • 서진석;박종영
    • 한국가구학회지
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    • 제14권2호
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    • pp.31-38
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    • 2003
  • This study was carried out to investigate characteristics of wood-based panels and wood-cement board for the possible uses as flooring and wall materials. The optimum cement/wood ratio(C/W ratio) of wood~cement board manufactured by clamp-pressing was from 2.7 to 3.2. The dimesional stability was superior in the C/W ratio of 3.2. Particularly, the dimensional stability of cement board using fine particle for particleboard face layer was favorable through three levels of C/W ratio. According to types of wooden material, bending strength of cement board using coarse particle for particleboard core layer or old newspaper(ONP) fiber was relatively higher than others. Thermal conductivities of wood-cement boards were no lower than that of gypsum board, and higher than those of plywood and boards. In case of wood-cement board of the C/W ratio of 2.7, the fire-proof performances of cement composite boards were greater than that of gypsum board, and weight loss reached to about a half of gypsum board. Then, wood-cement boards showed superior fire-proof performance compared to wood-based panels.

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Prediction and control of buildings with sensor actuators of fuzzy EB algorithm

  • Chen, Tim;Bird, Alex;Muhammad, John Mazhar;Cao, S. Bhaskara;Melvilled, Charles;Cheng, C.Y.J.
    • Earthquakes and Structures
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    • 제17권3호
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    • pp.307-315
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    • 2019
  • Building prediction and control theory have been drawing the attention of many scientists over the past few years because design and control efficiency consumes the most financial and energy. In the literature, many methods have been proposed to achieve this goal by trying different control theorems, but all of these methods face some problems in correctly solving the problem. The Evolutionary Bat (EB) Algorithm is one of the recently introduced optimization methods and providing researchers to solve different types of optimization problems. This paper applies EB to the optimization of building control design. The optimized parameter is the input to the fuzzy controller, which gives the status response as an output, which in turn changes the state of the associated actuator. The novel control criterion for guarantee of the stability of the system is also derived for the demonstration in the analysis. This systematic and simplified controller design approach is the contribution for solving complex dynamic engineering system subjected to external disturbances. The experimental results show that the method achieves effective results in the design of closed-loop system. Therefore, by establishing the stability of the closed-loop system, the behavior of the closed-loop building system can be precisely predicted and stabilized.

고성능 섬유형 슈퍼커패시터를 위한 탄소섬유의 표면 기능화 (Surface Functionalization of Carbon Fiber for High-Performance Fibrous Supercapacitor)

  • 이영근;안건형
    • 한국재료학회지
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    • 제32권2호
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    • pp.107-113
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    • 2022
  • Fibrous supercapacitors (FSs), owing to their high power density, good safety characteristic, and high flexibility, have recently been in the spotlight as energy storage devices for wearable electronics. However, despite these advantages, FCs face many challenges related to their active material of carbon fiber (CF). CF has low surface area and poor wettability between electrode and electrolyte, which result in low capacitance and poor long-term stability at high current densities. To overcome these limits, fibrous supercapacitors made using surface-activated CF (FS-SACF) are here suggested; these materials have improved specific surface area and better wettability, obtained by introducing porous structure and oxygen-containing functional groups on the CF surface, respectively, through surface engineering. The FS-SACF shows an improved ion diffusion coefficient and better electrochemical performance, including high specific capacity of 223.6 mF cm-2 at current density of 10 ㎂ cm-2, high-rate performance of 171.2 mF cm-2 at current density of 50.0 ㎂ cm-2, and remarkable, ultrafast cycling stability (96.2 % after 1,000 cycles at current density of 250.0 ㎂ cm-2). The excellent electrochemical performance is definitely due to the effects of surface functionalization on CF, leading to improved specific surface area and superior ion diffusion capability.