• Title/Summary/Keyword: 부지

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Development of Probabilistic Seismic Coefficients of Korea (국내 확률론적 지진계수 생성)

  • Kwak, Dong-Yeop;Jeong, Chang-Gyun;Park, Du-Hee;Lee, Hong-Sung
    • Journal of the Korean Geotechnical Society
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    • v.25 no.10
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    • pp.87-97
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    • 2009
  • The seismic site coefficients are often used with the seismic hazard maps to develop the design response spectrum at the surface. The site coefficients are most commonly developed deterministically, while the seismic hazarde maps are derived probabilistically. There is, hence, an inherent incompatibility between the two approaches. However, they are used together in the seismic design codes without a clear rational basis. To resolve the fundamental imcompatibility between the site coefficients and hazard maps, this study uses a novel probabilistic seismic hazard analysis (PSHA) technique that simulates the results of a standard PSHA at a rock outcrop, but integrates the site response analysis function to capture the site amplification effects within the PSHA platform. Another important advantage of the method is its ability to model the uncertainty, variability, and randomness of the soil properties. The new PSHA was used to develop fully probabilistic site coefficients for site classes of the seismic design code and another sets of site classes proposed in Korea. Comparisons highlight the pronounced discrepancy between the site coefficients of the seismic design code and the proposed coefficients, while another set of site coefficients show differences only at selected site classes.

A Methodology for Quality Control of Railroad Trackbed Fills Using Compressional Wave Velocities : I. Preliminary Investigation (압축파 속도를 이용한 철도 토공노반의 품질관리 방안 : I. 예비연구)

  • Park, Chul-Soo;Mok, Young-Jin;Choi, Chan-Yong;Lee, Tai-Hee
    • Journal of the Korean Geotechnical Society
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    • v.25 no.9
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    • pp.45-55
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    • 2009
  • The quality of railroad trackbed fills has been controlled by field measurements of density and bearing resistance of plate-load tests. The control measures are compatible with the design procedures whose design parameter is $k_{30}$ for both ordinary-speed railways and high-speed railways. However, one of fatal flaws of the design procedures is that there are no simple laboratory measurement procedures for the design parameters ($k_{30}$ or, $E_{v2}$ and $E_{v2}/E_{v1}$) in design stage. To overcome the defect, the compressional wave velocity was adopted as a control measure, in parallel with the advent of the new design procedure, and its measurement technique was proposed in the preliminary investigation. The key concept of the quality control procedure is that the target value for field compaction control is the compressional wave velocity determined at optimum moisture content using modified compaction test, and direct-arrival method is used for the field measurements during construction, which is simple and reliable enough for practice engineers to access. This direct-arrival method is well-suited for such a shallow and homogeneous fill lift in terms of applicability and cost effectiveness. The sensitivity of direct-arrival test results according to the compaction quality was demonstrated at a test site, and it was concluded that compressional wave velocity can be effectively used as quality control measure. The experimental background far the companion study (Park et al., 2009) was established through field and laboratory measurements of the compressional wave velocity.

Estimation Method of Key Block Size on a Large Scale Rock Slope by Simulation of 3-D Rock Joint System (3차원 절리계 모사를 통한 대규모 암반비탈면 파괴블록크기 추정방법)

  • Kim, Dong-Hee;Jung, Hyuk-Il;Kim, Seok-Ki;Lee, Woo-Jin;Ryu, Dong-Woo
    • Journal of the Korean Geotechnical Society
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    • v.23 no.10
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    • pp.97-107
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    • 2007
  • Accurate evaluation of the slope stability by assuming failure block as the entire slope is considered to be apposite for the small scale slope, whereas it is not the case for the large scale slope. Hence, appropriate estimation of a failure block size is required since the safety factor and the joint strength parameters are the function of the failure block size. In this paper, the size of failure block was investigated by generating 3-dimensional rock joint system based on statistical data of joints obtained from research slope, such as joint orientation, spacing and 3-dimensional joint intensity. The result indicates that 33 potential failure blocks exist in research slope, as large as 1.4 meters at least and 38.7 meters at most, and average block height is 15.2 meters. In addition, the data obtained from 3 dimensional joint system were directly applicable to the probability analysis and 2 and 3 dimensional discontinuity analysis.

Development and Application of Penetration Type Field Shear Wave Apparatus (관입형 현장 전단파 측정장치의 개발 및 적용)

  • Lee, Jong-Sub;Lee, Chang-Ho;Yoon, Hyung-Koo;Lee, Woo-Jin;Kim, Hyung-Sub
    • Journal of the Korean Geotechnical Society
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    • v.22 no.12
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    • pp.67-76
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    • 2006
  • The reasonable assessment of the shear stiffness of a dredged soft ground and soft clay is difficult due to the soil disturbance. This study addresses the development and application of a new in-situ shear wave measuring apparatus (field velocity probe: FVP), which overcomes several of the limitations of conventional methods. Design concerns of this new apparatus include the disturbance of soils, cross-talking between transducers, electromagnetic coupling between cables, self acoustic insulation, the constant travel distance of S-wave, the rotation of the transducer, directly transmitted wave through a frame from transducer to transducer, and protection of the transducer and the cable. These concerns are effectively eliminated by continuous improvements through performing field and laboratory tests. The shear wave velocity of the FVP is simply calculated, without any inversion process, by using the travel distance and the first arrival time. The developed FVP Is tested in soil up to 30m in depth. The experimental results show that the FVP can produce every detailed shear wave velocity profiles in sand and clay layers. In addition, the shear wave velocity at the tested site correlates well with the cone tip resistance. This study suggests that the FVP may be an effective technique for measuring the shear wave velocity in the field to assess dynamic soil properties in soft ground.

Estimation of Weight Distribution of Rockfall Block by Joint Measurement And Study on Its Application to Rockfall Simulation (절리조사결과에 의한 현장 낙석무게분포추정 및 추정결과의 낙석시뮬레이션 적용성 검토)

  • Kim, Dong-Hee;Ryu, Dong-Woo;Kim, Su-Chul;Yoon, Sang-Kil;Lee, Woo-Jin
    • Journal of the Korean Geotechnical Society
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    • v.23 no.11
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    • pp.67-76
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    • 2007
  • The characteristics of rockfall are determined by virtually all factors and conditions e.g. the physical figure of the slope such as inclination, height, roughness, the elemental figure of the slope such as vegetation and material deposited, and the shape and weight of the rockfall itself. Although it is one of the major factors to be considered in rockfall simulation, little attention has been given to the weight of the rockfall. And, since the size of the rockfall is dominated by joint spacing, the distribution of the rockfall block weight can be predicted as a function of the joint spacing. In this study, the weight distribution of rockfall was estimated by using the method of volumetric joint count, $J_{\nu}$, based on joint spacing, and $RQD-J_{\nu}$. The results indicate that the weight distributions were analogous in two methods, and the distribution was to be $75.3{\sim}76.7%$ for 200 kilograms or lesser, $15.0{\sim}16.6%$ for $200{\sim}400$ kilograms, and $6.7{\sim}9.7%$ for 400 kilograms or more, which show good matches with the actual on-site weight distribution. Therefore, the weight distribution of rockfall suggested in this paper is able to be considered as appropriate data for rockfall simulation.

Verification of Frequency-Dependent Equivalent Linear Method (주파수 의존성을 고려한 등가선형해석기법의 검증)

  • Jeong, Chang-Gyun;Kwak, Dong-Yeop;Park, Du-Hee
    • Journal of the Korean Geotechnical Society
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    • v.24 no.12
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    • pp.113-120
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    • 2008
  • One-dimensional site response analysis is widely used to simulate the seismic site effects. The equivalent linear analysis, which is the most widely used type of site response analysis, is essentially a linear method. The method applies constant shear modulus and damping throughout the frequency range of the input motion, ignoring the dependence of the soil response on the loading frequency. A new type of equivalent linear analysis method that can simulate the frequency dependence of the soil behavior via frequency-strain curve was developed. Various forms of frequency-strain curves were proposed, and all curves were asserted to increase the accuracy of the solution. However, its validity has not been extensively proven and the effect of the shape of the frequency-strain curve is not known. This paper used two previously proposed frequency-strain curves and three additional curves developed in this study to evaluate the accuracy of the frequency-dependent equivalent linear method and the influence of the shape of the frequency-strain curves. In the evaluation, six recordings from three case histories were used. The results of the case study indicated that the shape of the frequency-strain curve has a dominant influence on the calculated response, and that the frequency dependent analysis can enhance the accuracy of the solution. However, a curve that results in the best match for all case histories did not exist and the optimum curve varied for each case. Since the optimum frequency-strain curve can not be defined, it is recommended that a suite of curves be used in the analysis.

The Utilization of Military Welfare Facilities by Private Sectors (군 복지시설의 민간활용 연구)

  • Syung uk Lee;Jinsoo Ko
    • Land and Housing Review
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    • v.14 no.2
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    • pp.83-95
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    • 2023
  • The purpose of this study is to improve the private utilization of military welfare facilities that are aging or underutilized in urban areas. It also aims to develop ways to strengthen cooperative win-win strategies between the military and local communities. The use of military welfare facilities by the private sector refers to activities where the private sector generates additional benefits or added value by allowing the use of these facilities, including both private use and improvements to facilities or development of land through private sector involvement. From the perspective of the city and the locals, military welfare facilities are perceived as resident-friendly and excellent urban resources that can promote reciprocal satisfaction between the military and local communities. From the perspective of the military, military welfare facilities are important for enhancing the welfare of military personnel. However, they often face limitations in providing various welfare services due to the aging of facilities and limited operations with a single purpose. The improvement of private utilization of military welfare facilities will bring diverse reciprocal benefits to the military, the city, and the locals. Above all, improving the private utilization of military welfare facilities can help the military and local communities jointly address diverse urban issues. To establish cooperative governance and find flexible and diverse development strategies that can promote the welfare of the military and enhance the quality of life for the locals, it is important that both the military and local communities make continuous efforts.

A study on the field composition for making of windbreak forest in Saemangeum reclaimed land (새만금 방풍림 조성을 위한 식생기반 조성기법에 관한 연구)

  • JI, Dallim;Choi, Kangwon;Noh, Kyunghwan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.177-177
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    • 2020
  • 새만금 간척지는 1989년 '새만금간척사업'이 발표된 이래 1991년에 방조제 공사를 시작으로 2006년 물막기 공사를 완료하였고, 2009년 이후 방조제를 완공하여 현재는 40,100ha의 간척지가 조성되었다. 하지만 간척지는 장기적으로 환경에 악영향을 미치며 특히 간척으로 인한 해안경관의 가치 상실, 생태계 파괴 및 교란에 따른 변화가 크기 때문에 이에 대한 대책이 필요하다. 적극적인 식생의 도입이 그 대책의 하나가 될 수 있는데 이는 자연적으로 식물천이를 유도하고 동물들을 유인하여 생태적으로 건강한 환경을 조성하는데 기여할 수 있다. 따라서 본 연구에서는 새만금간척지의 대표적인 수목생육 제한 요인으로 판단되는 염분, 배수 및 통기성에 대한 시험연구를 진행하고자 '09~'11까지 초기에 김제광활에서 2ha의 시험포를 운영하였고, '12부터는 군산옥구에서 2ha의 시험포를 운영하고 있다. 수목을 심을 포지를 구획하기 전에 토양의 염분값을 낮추기 위해서 군산옥구의 경우, 2ha의 시험포를 포함한 전체 묘목장 부지(100ha) 중에서 일부구간(38ha)을 '09 부터 자연강우 담수제염을 통해서 제염을 진행하였다. 이를 통해 초기 염분 값이 18ds/m~20ds/m에서 8ds/m~10ds/m로 낮아졌다. 이렇게 수목이 자랄 수 있는 정도의 제염이 이루어진 이후에는 배수 및 통기성 부분에 초점을 맞추어 포지를 구획하였다. 단지1의 경우, 사전제염작업을 하지 않고, 5M간격의 암거를 설치하였고, 단지2의 경우, 사전강우제염을 진행하고, 10M간격의 암거를 설치하였다. 단지3의 경우, 사전강우제염을 진행하고 그 위에 0.4M의 준설토를 성토하여 포지를 조성하고 일부구간에 5M, 10M암거를 설치하였다. 2년 간의 수목 생존률 및 생장 모니터링을 통해서 각 단지에서의 수목생장의 적합성의 정도를 간접적으로 판단할 수 있었다. 단지3이 암거설치 간격 및 설치유무에 관계없이 수목이 자라는데 가장 적합했다. 다음으로 단지2, 단지1 순으로 나타났다. 염분 값을 낮추기 위한 자연강우 담수제염의 경우에는 문제가 되지 않지만 배수 및 통기성 개선을 위한 암거설치의 경우는 새만금 전체 식재구역에 적용하기에는 경제성이 떨어지므로 배수 및 통기성을 위한 별도의 방안이 요구된다. 또한 각 단지에서의 수목 생장모니터링을 지속적으로 시행하여 보다 장기적인 측면에서의 식재기반 조성기법을 고려할 필요가 있다.

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Analysis on Propagation of Highway Traffic Flow Turbulence at Entrance-Ramp Junctions (교통류 난류현상을 이용한 고속도로 합류부의 영향권 분석)

  • Lee, Ki Yoon;Roh, Chang Gyun;Son, BongSoo;Chung, Jin-Hyuk
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.29 no.2D
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    • pp.167-173
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    • 2009
  • In general, an influenced area of merging section is defined as 500 m including 100 m upstream and 400 m downstream. However, from an observation of the actual traffic flow, it is found that merging effect influences more on downstream than upstream. In this study, an influenced area of merging section on freeway is analyzed by using turbulence which is defined as conflicts between vehicles. In order to overcome the limits of existing traffic flow detection system established with intervals of about 500 m, this study uses raw data collected from the detectors which are established in entrance ramps with similar road conditions. To divide data of each point into similar road conditions, the data of total 72 hours is sorted by Level of Service. An influenced area analyzed by standard deviation of speed is 700 m section of highway, including 300 m upstream and 400 m downstream, for both right and left ramps. It is the result including upstream 200 m more than previous studies.

Side Shear Resistance of Drilled Shafts in Weathered Rock (풍화된 암반에 근입된 현장타설말뚝의 주면지지력)

  • Kwon, Oh Sung;Kim, Myoung Mo
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.4C
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    • pp.205-212
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    • 2008
  • In this research, the effect of rock mass weathering on the side shear resistance of drilled shaft socketed into igneous-metamorphic rock was investigated. For that, 23 cast-in-place concrete piles with diameters varying from 400mm to 1,500mm were constructed at four different sites, and the static axial load tests were performed to examine the resistant behavior of the piles. A comprehensive field/laboratory testing program at the field test site was also performed to describe the in situ rock mass conditions quantitatively. The side shear resistance of rock socketed piles was found to have no intimate correlation with the compressive strength of the intact rock. However, the global rock mass strength, which was calculated by the Hoek and Brown criteria, was found to closely correlate to the side shear resistance. The ground investigation data regarding the rock mass conditions (e.g. $E_m$, $E_{ur}$, $p_{lm}$, RMR, RQD, j) were also found to be highly correlated with the side shear resistance, showing the coefficients of correlation greater than 0.75 in most cases. Additionally, the applicability of existing methods for the side shear resistance of weathered granite-gneiss was verified by comparison with the field test data. The existing methods which consider the effect of rock mass condition were modified and/or extended for weathered rock mass where mass factor j is lower than 0.15, and RQD is below 50%.