• Title/Summary/Keyword: 지하구조

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Reverse-time Migration for VTI and TTI Media (VTI 및 TTI 매질에서의 역시간 구조보정)

  • Kwak, Na-Eun;Min, Dong-Joo;Bae, Ho-Seuk
    • Geophysics and Geophysical Exploration
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    • v.14 no.3
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    • pp.191-202
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    • 2011
  • Reserve-time migration (RTM) using a two-way wave equation is one of the most accurate migration techniques. RTM has been conducted by assuming that subsurface media are isotropic. However, anisotropic media are commonly encountered in reality. Conventional isotropic RTM may yield inaccurate results for anisotropic media. In this paper, we develop RTM algorithms for vertical transversely isotropic media (VTI) and tilted transversely isotropic media (TTI). For this, the pseudo-acoustic wave equations are used. The modeling algorithms are based on the high-order finite-difference method (FDM). The RTM algorithms are composed using the cross-correlation imaging condition or the imaging condition using virtual sources. By applying the developed RTM algorithms to the Hess VTI and BP TTI models, we could obtain better images than those obtained by the conventional isotropic RTM.

Real-time Health Monitoring of Pipeline Structures (배관 구조물의 상시 건전성 모니터링)

  • Kim, Ju-Won;Kim, Tae-Heon;Lee, Chang-Gil;Park, Seung-Hee
    • Proceedings of the Computational Structural Engineering Institute Conference
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    • 2010.04a
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    • pp.666-669
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    • 2010
  • 여러 가지 지하시설물 중 국가 주요 자원의 수송망을 책임지는 주요구조물인 수도관, 가스관등의 배관구조물은 접근이 쉽지 않은 지하공간에 복잡하게 연결되어 있어 그 중요성에 비해 유지, 관리, 보수가 쉽지 않았다. 이러한 배관구조물을 균열, 조인트 풀림 등의 손상으로부터 보다 안전하고 효율적으로 관리하기 위하여 상시적 배관구조물 손상진단기법을 연구하였다. 이를 위해 배관 구조물 시험체에 볼트풀림, notch 등과 같은 손상에 대하여 대표적인 압전센서인 PZT와 MFC를 부착하고 임피던스기법 및 유도 초음파기법을 적용하여 볼트풀림개수, notch 손상개수 증가에 따른 출력신호를 반복 계측하였다. 객관적인 평가를 위해 계측된 신호를 신호처리기법인 웨이블렛 변환을 수행하고, RMSD 및 1-CC의 손상지수를 사용하여 구조물손상을 정량화 시켰으며 이를 토대로 구조물의 건전성의 기준이 되는 임계값을 설정함으로서 임피던스와 유도초음파 두 검색기법을 이용한 상시적 배관구조물 건전성 모니터링의 가능성을 살펴보았다.

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Structural Design Requirements and Safety Evaluation Criteria of the Spent Nuclear Fuel Disposal Canister for Deep Geological Deposition (심지층 고준위폐기물 처분용기에 대한 설계요구조건 및 구조안전성 평가기준)

  • Kwon, Young-Joo;Choi, Jong-Won
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.5 no.3
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    • pp.229-238
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    • 2007
  • In this paper, structural design requirements and safety evaluation criteria of the spent nuclear fuel disposal canister are studied for deep geological deposition. Since the spent nuclear fuel disposal canister emits high temperature heats and much radiation, its careful treatment is required. For that, a long term(usually 10,000 years) safe repository for the spent nuclear fuel disposal canister should be secured. Usually this repository is expected to locate at a depth of 500m underground. The canister which is designed for the spent nuclear fuel disposal in a deep repository in the crystalline bedrock is a solid structure with cast iron insert, corrosion resistant overpack and lid and bottom, and entails an evenly distributed load of hydrostatic pressure from underground water and high pressure from swelling of bentonite buffer. Hence, the canister must be designed to withstand these high pressure loads. If the canister is not designed for all possible external loads combinations, structural defects such as plastic deformations, cracks, and buckling etc. may occur in the canister during depositing it in the deep repository. Therefore, various structural analyses must be performed to predict these structural problems like plastic deformations, cracks, and buckling. Structural safety evaluation criteria of the canister are studied and defined for the validity of the canister design prior to the structural analysis of the canister. And structural design requirements(variables) which affect the structural safety evaluation criteria should be discussed and defined clearly. Hence this paper presents the structural design requirements(variables) and safety evaluation criteria of the spent nuclear fuel disposal canister.

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2D Prestack Generalized-screen Migration (2차원 중합전 일반화된-막 구조보정)

  • Song, Ho-Cheol;Seol, Soon-Jee;Byun, Joong-Moo
    • Geophysics and Geophysical Exploration
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    • v.13 no.4
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    • pp.315-322
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    • 2010
  • The phase-screen and the split-step Fourier migrations, which are implemented in both the frequency-wavenumber and frequency-space domains by using one-way scalar wave equation, allow imaging in laterally heterogeneous media with less computing time and efficiency. The generalized-screen migration employs the series expansion of the exponential, unlike the phase-screen and the split-step Fourier migrations which assume the vertical propagation in frequency-wavenumber domain. In addition, since the generalized-screen migration generalizes the series expansion of the vertical slowness, it can utilize higher-order terms of that series expansion. As a result, the generalized-screen migration has higher accuracy in computing the propagation with wide angles than the phase-screen and split-step Fourier migrations for media with large and rapid lateral velocity variations. In this study, we developed a 2D prestack generalized-screen migration module for imaging a complex subsurface efficiently, which includes various dips and large lateral variations. We compared the generalized-screen propagator with the phase-screen propagator for a constant perturbation model and the SEG/EAGE salt dome model. The generalized-screen propagator was more accurate than the phase-screen propagator in computing the propagation with wide angles. Furthermore, the more the higher-order terms were added for the generalized-screen propagator, the more the accuracy was increased. Finally, we compared the results of the generalizedscreen migration with those of the phase-screen migration for a model which included various dips and large lateral velocity variations and the synthetic data of the SEG/EAGE salt dome model. In the generalized-screen migration section, reflectors were positioned more accurately than in the phase-screen migration section.

Experimental study on the tunnel behavior induced by the excavation and the structure construction above existing tunnel (기존터널 상부지반 굴착 후 구조물 설치에 따른 터널거동에 관한 실험적 연구)

  • Cha, Seok-Kyu;Lee, Sangduk
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.20 no.3
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    • pp.640-655
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    • 2018
  • Recently, the construction of the urban area has been rapidly increasing, and the excavation work of the ground has been frequently performed at the upper part of the existing underground structures. Especially, when the structure is constructed after the excavation of the ground, the loading and unloading process in the ground under the excavation basement can affect the existing underground structures. Therefore, in order to maintain the stability of the existing underground structure due to the excavation of the ground, it is necessary to accurately grasp the influence of the excavation and the structure load in the adjoining part. In this study, the effect of the excavation of the ground and the new structure load on the existing tunnel was experimentally implemented and the influence of the adjacent construction on the existing tunnel was investigated. For this purpose a large testing model with 1/5 scale of the actual size was manufactured. The influence of ground excavation, width of the load due to new structure, and distance between centers of tunnel and of excavation on the existing tunnel was investigated. In this study, it was confirmed that the influence on the existing tunnel gets larger, as the excavation depth get deeper. At the same distance, it was confirmed that the tunnel displacement increased up to three times according to the increase of the building load width. That is, the load width influences the existing tunnel larger than the excavation depth. As the impact of the distance between centers of tunnel and of excavation, it was confirmed that tunnel crown displacement decreased by 48%. The result showed that a tunnel is located in the range of 1D (D: tunnel diameter) from the center of excavation, the effect of excavation is the largest.

지하투과레이다(GPR)를 활용한 천부 충적 대수층 퇴적상 연구

  • 김형수;이철우;백건하
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2002.09a
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    • pp.144-147
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    • 2002
  • 효과적인 국내 충적층 지하수의 이용을 위해서는, 충적 대수층의 내부 구조를 정밀하게 평가하여야 한다. 특히, 강변여과, 인공 침투지 등의 적극적인 충적 대수층의 활용을 위해서는 충적 대수층의 퇴적 환경에 대한 이해가 요구된다. 국내 충적층의 대부분은 하천 둔치 주변에서 하도의 수평 이동에 의해 형성된 경사 지층으로, 니질 박층이 협재하므로 내부의 분균일성에 의해 인접한 취수 공간에도 지하수체의 이동 특성 및 화학적 특성이 달라질 수 있다. 본 연구는 이러한 불균질성을 박히기 위해 지하투과레이다(GPR)를 이용하여 부여 군수리 지역의 천부 충적층에 대한 퇴적학적 분석을 시도하였다. 군수리 지역은 크게 상하 두 개의 충적층으로 구분되며, 상부 수평층은 범람에 의해 형성된 것으로 수직 불균질성이 크고 수평 불균질성은 낮다. 하부 경사층은 수평, 수직 불균질성이 모두 크다. 특히 하부 경사층내에 발달한 하도곡은 인접한 충적층과 분리되어 이 층내의 지하수체 이동은 제한적일 것이고 수질 특성 또한 크게 다를 것으로 판단된다. 본 연구는 충적 대수층에 대한 물리 화학적 특성의 정확한 해석을 위해서 퇴적학적 해석이 선행되어야 함을 시사한다.

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전국 콩나물 원료콩 사용실태

  • 배광옥
    • 두채산업
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    • s.8
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    • pp.10-17
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    • 1990
  • 콩나물을 재배하는 과정에 있어 원료콩의 선택은 매우 중요하다. 재배장의 환경이나 내부구조, 공급지역의 소비취향, 자신의 재배방법 등을 품종결정의 이유로 삼고 있으나 결정적인 것은 재배에 이용되는 지하수질에 의하여 거의 결정된다고 봐야할 것이다. 각 지방별로 천차만별한 기후조건, 또는 지하수질, 그리고 같은 지역이라 해도 재배상 환경등이 모두 다를 수 뿐이 없는데 여기에는 어떤 콩을 사용하고 있는지 알아보자.

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절리에서의 주입재 유동특성에 관한 연구

  • 김문상;문현구
    • Proceedings of the Korean Society for Rock Mechanics Conference
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    • 1995.03a
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    • pp.48-55
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    • 1995
  • 주입공법은 지하공간을 개발할 때 굴착면의 붕괴와 지하수의 유입으로 인한 지하 공동의 불안정성을 방지하고 지반 침하를 최소화하여 지상 구조물에 미치는 피해를 줄이는 목적에 사용되고 있다. 또한 주입공법은 설비가 간단하고 소규모이기 때문에 협소한 장소나 공간에서도 시공할 수 있고 진동 및 소음에 대한 영향이 적기 때문에 공사현장에서 요긴하게 사용되는 공법이다. $^{(1)}$ (중략)

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A Study on the Underground Structure of Underground Storage Cavern by Seismic Surveying (탄성파측양에 의한 지하저장시설의 지하구조조사에 관한 연구)

  • Yeu, Bock-Mo;Kwon, Hyon;Kim, Joong-Hyun
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.2 no.1
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    • pp.34-45
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    • 1984
  • The condition of underground basic rock and the location of cavern site can be found by means of seismic surveying is one of the physical exploration methods by which the prelimirary investigation of underground storage constructions are made in order to maximize the use of a land. This study is valuable in the point of showing a method for the decision of the property of a underground facilities estabilishment, by analying the elastic wave velocity and the distribution of a lower velocity zone and by grasping the weak zone of the basic rock.

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