• 제목/요약/키워드: Main-excavation

검색결과 202건 처리시간 0.022초

고창 반암리 청자요지의 보존 방안과 사적 지정 전략 (Conservation Plan and Historic Site Designation Strategy of Celadon Kiln Site in Banam-ri, Gochang)

  • 신민철
    • 헤리티지:역사와 과학
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    • 제56권1호
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    • pp.208-223
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    • 2023
  • 본 글은 시도지정기념물 고창 반암리 청자요지를 사적으로 지정하기 위한 정비 방안과 전략을 검토하기 위한 목적으로 작성되었다. 본격적 논의에 앞서 초기 청자요지로 주목받고 있는 이 유적의 높은 학술적 잠재력을 설명하면서 기념물 지정으로 인해 추진될 예산 확보, 향후 사적 지정에 대한 기대까지 검토하였다. 다음으로 고창 반암리 청자요지의 보존 현황과 정비 방안을 살펴보았다. 특히 기념물로 지정된 지 1년이 되지 않은 이 유적이 향후 사적 지정을 위한 정비를 어떠한 방향으로 수행해야 할지에 대해 현지 조사 등으로 현재의 보존상황을 검토하였다. 무엇보다 유적의 명확한 성격을 밝히기 위한 발굴조사와 문헌조사를 시행하고, 현지 조사를 토대로 관람객들을 위한 안내시설을 정비하고 이와 연계한 홍보를 수행할 필요가 있음을 주장하였다. 마지막으로 사적의 정의 및 도자기 가마의 사적 지정 현황과 함께 지정에 필요한 전략을 제시하였다. 특히 기존 사적 지정된 진안 도통리 청자요지, 고흥 운대리 분청사기요지의 사례를 검토하여 발굴조사, 문헌조사, 학술대회의 세 가지를 사적 지정의 목표 방향으로 제시하였다. 발굴조사의 결과는 완전성, 진정성, 정체성을 두루 갖춘 문화재적 가치를 가지고 있다는 것을 제시하는 근거가 된다. 문헌조사는 발굴로 밝혀지지 않은 유구의 역사적·문화적 성격을 보완하는 근거가 된다. 학술대회는 문화재가 가진 위치성과 유적의 위상, 유적과 관계 있는 사건 등 문화재의 본질과 가치를 이해할 수 있는 계기가 된다는 것을 설명하였다.

휠 굴삭기용 변속기의 클러치 마찰특성 분석 (Analysis of the Friction Characteristics of Transmission Clutch of a Wheel Excavator)

  • 이용범;김광민
    • Tribology and Lubricants
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    • 제29권1호
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    • pp.1-6
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    • 2013
  • Hydraulic transmission is the main component delivering power to the drive wheels of an excavator during forward and backward movement, and it has low speed, high torque and high speed, low torque gear change ratios as a forward/backward two-speed main function. It also has additional function of ensuring that the excavator is stably fixed on the ground with the built-in parking brake during excavation operations. In this study, optimal design specifications are determined by modeling and simulating about the multi-disc-type friction clutch, which is the main component improving the reliability of the hydraulic transmission for a 14-ton wheel excavator, and the friction properties of the transmission clutch are analyzed by performing sample tests.

경주 광명동유적 건물지의 성격에 대하여 (Study on the character of architecture remains in Gwangmyeong-dong site, Geongju)

  • 김광수
    • 건축역사연구
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    • 제23권5호
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    • pp.37-45
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    • 2014
  • It was identified by the excavation that architecture remains were confirmed buddhist temple consist of ruins of main building of a temple, auditorium site, ruins of stone pagoda, embankment, pedestrian Facilities and drainage etc. in the Gwangmyeong-dong site. The site has been held temple arrangement with 1 main building of a temple, twin Pagodas from the Unified Silla period to Goryeo dynasty. The temple constructed after that was destroyed the architecture in the Unified Silla period. It seems that aristocrat or royalty power of within group of the nearby remains of city which was constructed in the Unified Silla period build and visit the temple. Considering there are excavations, it assumes that the temple had been constructed during the last days of the Unified Silla, was closed up during the mid-Goryeo Dynasty.

Mechanical Mechanism of Main Tunnels and Cross Passage Construction - A 3D Numerical Investigation

  • Yoo, Chungsik;Shuaishuai, Cui;Ke, Wu;Qianjn, Zhang;Zheng, Zhang;Jiahui, Zhao
    • 한국지반신소재학회논문집
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    • 제18권1호
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    • pp.11-23
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    • 2019
  • This paper presents the results of a three-dimensional numerical investigation into the mechanical mechanism of main tunnels and cross passage construction. Aimed at the complex space structure composed of two main tunnels and cross passage, 3D numerical model of the structure and surrounding rock was built to analyze the influence. Comparative analysis of different buried depths were carried out. The results of the study indicate that the stress concentration was occurred in the intersecting linings, especially in the opening side lining, which leads to an unfavorable form of force that is pulled up by the upper and lower sections in the intersecting linings due to the construction of the cross passage. The excavation of the cross passage also destroys the stability of the original soil layer and causes settlement of the surface and main tunnels. Practical implications of the findings are discussed.

Preliminary numerical analysis of controllable prestressed wale system for deep excavation

  • Lee, Chang Il;Kim, Eun Kyum;Park, Jong Sik;Lee, Yong-Joo
    • Geomechanics and Engineering
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    • 제15권5호
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    • pp.1061-1070
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    • 2018
  • The main purpose of retaining wall methods for deep excavation is to keep the construction site safe from the earth pressure acting on the backfill during the construction period. Currently used retaining wall methods include the common strut method, anchor method, slurry wall method, and raker method. However, these methods have drawbacks such as reduced workspace and intrusion into private property, and thus, efforts are being made to improve them. The most advanced retaining wall method is the prestressed wale system, so far, in which a load corresponding to the earth pressure is applied to the wale by using the tension of a prestressed (PS) strand wire. This system affords advantages such as providing sufficient workspace by lengthening the strut interval and minimizing intrusion into private properties adjacent to the site. However, this system cannot control the tension of the PS strand wire, and thus, it cannot actively cope with changes in the earth pressure due to excavation. This study conducts a preliminary numerical analysis of the field applicability of the controllable prestressed wale system (CPWS) which can adjust the tension of the PS strand wire. For the analysis, back analysis was conducted through two-dimensional (2D) and three-dimensional (3D) numerical analyses based on the field measurement data of the typical strut method, and then, the field applicability of CPWS was examined by comparing the lateral deflection of the wall and adjacent ground surface settlements under the same conditions. In addition, the displacement and settlement of the wall were predicted through numerical analysis while the prestress force of CPWS was varied, and the structural stability was analysed through load tests on model specimens.

쉴드 TBM 디스크 커터 교체 유무 판단을 위한 머신러닝 분류기법 성능 비교 (Performance comparison of machine learning classification methods for decision of disc cutter replacement of shield TBM)

  • 김윤희;홍지연;김범주
    • 한국터널지하공간학회 논문집
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    • 제22권5호
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    • pp.575-589
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    • 2020
  • 최근 국내 터널에서 지속적으로 증가하고 있는 쉴드 TBM 공법의 주된 굴착도구는 디스크 커터로 굴진과정에서 자연스럽게 마모가 발생하고 이는 TBM의 굴진효능을 현저히 저하시키기 때문에 적절한 시기에 교체하는 것이 중요하다. 따라서 본 연구에서는 디스크 커터 교체 여부를 판단할 수 있는 예측 모델을 머신러닝 기법을 사용한 방법으로 제안하였다. 이를 위해 국내 기 시공된 쉴드 TBM 현장의 데이터 중 디스크 커터 소모에 상관성이 높은 굴진데이터(TBM 기계데이터, 지반정보 등)와 교체이력을 입력데이터로 사용하여 다양한 머신러닝 분류기법 중 서포트 벡터 머신, 최근접이웃 알고리즘, 의사결정트리 알고리즘을 사용하여 최적의 예측 모델을 구축하고 모델의 성능을 평가하기 위하여 분류성능평가 지표로 비교 분석하였다.

터널 굴착면 여굴 최소화를 위한 발파암 분류(안) 및 공법 개발 연구 (A Study on the Development of the Rock Blastability Classification and the Methods for Minimizing Overbereak in Tunnel)

  • 이태노;김동현;서영화
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 가을 학술발표회 논문집
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    • pp.303-310
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    • 2002
  • Overbreak occurred inevitably in a tunnel excavation, Is the main factor for increasing cost and time in tunnel projects. Furthermore the damage to the remained rock mass related to the overbreak can give rise to a serious safety problem in tunnels. As a rule of thumb, causes for the overbreak are inaccuracy in drilling, the wrong design of blasting and selection of explosives, and heterogeneity in rock mass. Specially, the geological features of the rock mass around periphery of an excavation are very important factors, so a lot of researches have been conducted to describe these phenomena. But the quantitative geological classification of the rock mass for the overbreak and the method for decreasing the amount of the overbreak have not been established. Besides, the technical improvement of the charge method is requested as explosives for the smooth blasting have not functioned efficiently. In this study, the working face around periphery of an excavation has been continuously sectionalized to 5∼6 parts, and the new Blastability Index for the overbreak based on 6 factors of RMD(Rock Mass Description), UCS(Uniaxial Compressive Strength) JPS(Joint Plane Spacing), JPO(Joint Plane Orientation), JPA(Joint Plane Aperture) and FM(Filling Material) is proposed to classify sections of the working face. On the basis of this classification, the distance between contour holes and the charging density are determined to minimize the overbreak. For controlling the charging density and improving the function of explosives, the New Deck Charge(N.D.C) method utilizing the deck charge method and detonation transmission in hole has been developed.

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고압가스배관의 기계적 충격(타공사)에 대한 실험적 연구 (An Experimental Study on the Mechanical Impact (Third Party Damage) of High Pressure Gas Pipe)

  • 이경은;김정환;하유진;길성희
    • 한국가스학회지
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    • 제21권6호
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    • pp.8-14
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    • 2017
  • 가스배관 사고의 대표적인 원인 중 하나는 기계적 충격(타공사 등)으로 인한 사고이다. 이는 국내 주요 산업단지에 매설되어 있는 고압가스배관의 대다수가 매설 시기가 20년 이상인 노후 배관이기 때문에 사고 발생 시 별도의 검사 및 보강 시간 없이 대형 사고로 이어질 가능성이 높다. 본 연구에서는 타공사(굴착공사) 실험을 통해 기계적 충격 시 배관에 미치는 결함 정도에 대해 연구하였다. 실제 산업단지에서 굴착공사 시 사용되고 있는 21 ton 굴착기와 ASTM A106 Grade.B와 ASTM A53 Grade.B 배관을 이용해 타격실험을 진행하였다. 그 결과 굴착기 작업에 이용되는 버켓 중 톱니 버켓 일 때 결함의 정도가 더 컷으며, 매설되어 있는 배관의 관경이 작을수록 결함의 깊이 및 길이가 큰 것을 확인하였다. 굴착기 작업 중 타격 높이는 매설 배관의 결함에 아무런 영향을 미치지 않는 것을 확인하였다.

Structure damage estimation due to tunnel excavation based on indoor model test

  • Nam, Kyoungmin;Kim, Jungjoo;Kwak, Dongyoup;Rehman, Hafeezur;Yoo, Hankyu
    • Geomechanics and Engineering
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    • 제21권2호
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    • pp.95-102
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    • 2020
  • Population concentration in urban areas has led traffic management a central issue. To mitigate traffic congestions, the government has planned to construct large-cross-section tunnels deep underground. This study focuses on estimating the damage caused to frame structures owing to tunnel excavation. When constructing a tunnel network deep underground, it is necessary to divide the main tunnel and connect the divergence tunnel to the ground surface. Ground settlement is caused by excavation of the adjacent divergence tunnel. Therefore, predicting ground settlement using diverse variables is necessary before performing damage estimation. We used the volume loss and cover-tunnel diameter ratio as the variables in this study. Applying the ground settlement values to the settlement induction device, we measured the extent of damage to frame structures due to displacement at specific points. The vertical and horizontal displacements that occur at these points were measured using preattached LVDT (Linear variable differential transformer), and the lateral strain and angular distortion were calculated using these displacements. The lateral strain and angular distortion are key parameters for structural damage estimation. A damage assessment chart comprises the "Negligible", "Very Slight Damage", "Slight Damage", "Moderate to Severe Damage", and "Severe to Very Severe Damage" categories was developed. This table was applied to steel frame and concrete frame structures for comparison.

The July 2, 2017, Lantian landslide in Leibo, China: mechanisms and mitigation measures

  • He, Kun;Ma, Guotao;Hu, Xiewen;Liu, Bo;Han, Mei
    • Geomechanics and Engineering
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    • 제28권3호
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    • pp.283-298
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    • 2022
  • Landslides triggered by the combination of heavy precipitation and anthropological disturbance in hilly areas cause severe damage to human lives, properties, and infrastructure constructions. A comprehensive investigation of the influencing factors and failure mechanisms of landslides are significant for disaster mitigation and prevention. This paper utilized the combination of detailed geological investigation, physical experimental testing as well as numerical modelling to determine the failure mechanism, and proposed a countermeasures of the Lantian landslide occurred on 2, July 2017. The results reveal that the Lantian landslide is a catastrophic reactivated slide which occurred in an active tectonic region in Southwest China. Because of the unique geological settings, the fully to highly weathered basalts in the study area with well-developed fractures favored the rainwater infiltration, which is the beneficial to slide reactivation. Engineering excavation and heavy precipitation are the main triggering factors to activate the slide motion. Two failure stages have been identified in the landslide. The first phase involves a shallow mass collapse originated at the upper slopes, which extends from the road to platform at rear part, which is triggered by excavation in the landslide region. Subjected to the following prolonged rainfall from 19 June to 2 July, 2017, the pore water pressure of the slope continually increased, and the groundwater table successively rise, resulting in a significant decrease of soil strength which leads to successive large-scale deep slide. Thereinto, the shallow collapse played a significant role in the formation of the deep slide. Based on the formation mechanisms of the landslide, detailed engineering mitigation measures, involving slope cutting, anchor cable frame, shotcrete and anchorage, retaining wall and intercepting ditch were suggested to reduce the future failure risk of the landslide.