• Title/Summary/Keyword: vertical displacement

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치환공법을 적용한 연약지반에 시공된 보강토옹벽의 거동해석 (Analysis of the Behavior of Reinforced Earth Retaining Walls Constructed on Soft Ground Using the Replacement Method)

  • 기완서;주승완;김선학
    • 지질공학
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    • 제17권4호
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    • pp.601-613
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    • 2007
  • 연약지반에 보강토옹벽을 시공 시 거동에 영향을 주는 인자로 기본적인 물성뿐만 아니라 보강토옹벽에 의한 하중증가와 압밀기간, 간극수압 등의 영향을 받는 것으로 보고되고 있다. 본 연구에서는 보강토옹벽과 연약지반의 거동해석에 지반해석 프로그램인 SAGE CRISP를 이용하여 수행하였다. 첫 번째로 보강토옹벽의 과도변위를 개선하기 위한 치환공법의 거동 개선 효과를 검토하였으며, 두 번째로 치환공법을 적용 후 보강토옹벽의 배면에 보강재 수직설치간격이 지반의 거동에 미치는 영향을 비교 분석하였다. 마지막으로 치환공법을 적용 시 적정 치환 폭과 깊이를 제안하고자 하였다. 치환공법이 보강토옹벽의 거동 개선에 상당한 효과가 있음을 알 수 있었으며, 보강재 수직설치간격은 옹벽상단의 수평변위 개선효과가 있는 것으로 나타났으나 하단의 수평변위와 옹벽배면의 수직변위 개선효과는 미소한 것으로 나타났다. 또한 치환폭의 증가에 따른 수평 수직변 개선효과는 크지 않은 것으로 나타나 치환폭의 증가는 불필요함을 알 수 있었으며, 적정 치환깊이는 연약층의 두께에 대한 옹벽높이의 비(H/T)에 따라 옹벽높이에 대한 치환깊이의 비(D/H)로 제안하였다.

형상기억합금 호선의 역학적 해석 (MECHANICAL ANALYSIS ON THE SHAPE-MEMORY ARCH WIRE)

  • 이진형;남동석
    • 대한치과교정학회지
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    • 제24권3호
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    • pp.735-758
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    • 1994
  • This study was designed to investigate the displacements and reaction forces of teeth caused by the application of the rectangular shape-memory arch wires with curve of Spee. Computer-aided three dimensional finite element method was adopted. This finite element model consists of brick element for teeth, beam element for the wire, and contact element for the periodontal ligament. And the application of the MEAW(Multiloop Edgewise Arch Wire) was also studied so that the results of the two methods can be compared each other. Total number of the nodes and elements were found to be 5925 and 4031, repectively. In addition, several types of elastics and corresponding displacements and reaction forces were examined. The findings of this study were as follows: 1. When the rectangular shape-memory arch wire with curve of Sun was used alone, the intrusion and labioversion was noticeable on the upper incisors, while the upper molars showed less intrusion. With MEAW, the intrusion and labioversion of the upper incisors were slightly larger than those when the shape-memory arch wire was used, but on the upper molars the opposite result was obtained with respect to the intrusion. 2. The shape-memory arch wire with the vertical elastics caused the larger downward displacement on the upper canine than that when the MEAW was used with the vertical elastics. However, the downward displacement of the upper incisors was larger in MEAW. The uprighting and buccoversion of the molars were observed in both cases. 3. The use of the Class II or III elastics showed the extrusion and changes in torque of the corresponding teeth. The downward displacement of the upper canine was increased when the Class II and vertical elastics were applied simultaneously, but it was decreased when both of the Class III and vertical elastics were used.

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기상과 재료 특성에 의한 공항 콘크리트 포장 팽창줄눈 간격의 적정성 검토 (Propriety Examination of Expansion Joint Spacing of Airport Concrete Pavement by Weather and Material Characteristics)

  • 박해원;정진훈
    • 한국도로학회논문집
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    • 제20권3호
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    • pp.65-73
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    • 2018
  • PURPOSES : In this study, the propriety of expansion joint spacing of airport concrete pavement was examined by using weather and material characteristics. METHODS : A finite element model for simulating airport concrete pavement was developed and blowup occurrence due to temperature increase was analyzed. The critical temperature causing the expansion of concrete slab and blow up at the expansion joint was calculated according to the initial vertical displacement at the joint. The amount of expansion that can occur in the concrete slab for 20 years of design life was calculated by summing the expansion and contraction by temperature, alkali-silica reaction, and drying shrinkage. The effective expansion of pavement section between adjacent expansion joints was calculated by subtracting the effective width of expansion joint from the summation of the expansion of the pavement section. The temperature change causing the effective expansion of pavement section was also calculated. The effective expansion equivalent temperature change was compared to the critical temperature, which causes the blowup, according to expansion joint spacing to verify the propriety of expansion joint applied to the airport concrete pavement. RESULTS : When an initial vertical displacement of the expansion joint was 3mm or less, the blowup never occurred for 300m of joint spacing which is used in Korean airports currently. But, there was a risk of blow-up when an initial vertical displacement of the expansion joint was 5mm or more due to the weather or material characteristics. CONCLUSIONS : It was confirmed that the intial vertical displacement at the expansion joint could be managed below 3mm from the previous research results. Accordingly it was concluded that the 300m of current expansion joint spacing of Korean airports could be used without blowup by controling the alkali-silica reaction below its allowable limit.

Seismic response of a high-rise flexible structure under H-V-R ground motion

  • We, Wenhui;Hu, Ying;Jiang, Zhihan
    • Earthquakes and Structures
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    • 제23권2호
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    • pp.169-181
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    • 2022
  • To research the dynamic response of the high-rise structure under the rocking ground motion, which we believed that the effect cannot be ignored, especially accompanied by vertical ground motion. Theoretical analysis and shaking table seismic simulation tests were used to study the response of a high-rise structure to excitation of a H-V-R ground motion that included horizontal, vertical, and rocking components. The use of a wavelet analysis filtering technique to extract the rocking component from data for the primary horizontal component in the first part, based on the principle of horizontal pendulum seismogram and the use of a wavelet analysis filtering technique. The dynamic equation of motion for a high-rise structure under H-V-R ground motion was developed in the second part, with extra P-△ effect due to ground rocking displacement was included in the external load excitation terms of the equation of motion, and the influence of the vertical component on the high-rise structure P-△ effect was also included. Shaking table tests were performed for H-V-R ground motion using a scale model of a high-rise TV tower structure in the third part, while the results of the shaking table tests and theoretical calculation were compared in the last part, and the following conclusions were made. The results of the shaking table test were consistent with the theoretical calculation results, which verified the accuracy of the theoretical analysis. The rocking component of ground motion significantly increased the displacement of the structure and caused an asymmetric displacement of the structure. Thus, the seismic design of an engineering structure should consider the additional P-△ effect due to the rocking component. Moreover, introducing the vertical component caused the geometric stiffness of the structure to change with time, and the influence of the rocking component on the structure was amplified due to this effect.

지중 박스구조물의 지진시 거동 해석 (Numerical Analysis for Buried Box Structures during Earthquake)

  • 박성진
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2000년도 추계 학술발표회 논문집 Proceedings of EESK Conference-Fall 2000
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    • pp.108-115
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    • 2000
  • Numerical analysis of slop stability is presented using seismic displacement, response seismic coefficient, and earthquake response analysis methods. In seismic displacement and response seismic coefficient methods, horizontal static seismic force is considered as 0.2g while vertical static seismic force is not considered in analysis. For earthquake response analysis Hahinoha-wave is applied, It is found from result that analysis using response seismic coefficient method is much more conservative than that using seismic displacement method Also, analysis result using earthquake response analysis method is somewhat less conservative about 25% when compared with that using seismic displacement method.

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복합지반상 교대변위 및 지반 측방유동에 관한 원심모델링 (Centrifuge Modeling on Lateral Flow of Soft Soils and Displacement of Bridge Abutment on the Composite Ground)

  • 허열;박성훈;윤석현;권선욱
    • 한국지반환경공학회 논문집
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    • 제8권5호
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    • pp.39-46
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    • 2007
  • 본 연구에서는 모래다짐말뚝(SCP)로 개량된 복합 지반상의 고성토 지반 및 교대의 측방유동과 안정성을 파악하기 위하여 원심모형실험을 수행하였다. 원심모형실험은 교대배면구간을 EPS로 성토한 경우(Case 1)와 교대 배면구간을 토사로 성토한 경우(Case 2)에 대하여 수행하였으며, 모형실험시 성토체 상부와 교대구간에 Potentiometer를 설치하여 단계 성토별 성토체 수직변위 및 단계별 개량지반내 변형 양상과 교대상부에서 발생되는 수직 및 수평 변위를 측정하였다. 실험결과, 교대배면 성토부에서 수직변위는 최대 2.10m 정도(현장조건)로 성토고 대비 약 12%로 나타났다. 교대배면구간을 토사로 성토한 경우(Case 2) 교대 상부에서 측정된 수직 및 수평변위는 각각 10cm와 1.1m 정도로 허용기준을 크게 초과하였다. 반면, EPS로 뒷채움을 하는 경우(Case 1) 교대의 수직변위는 거의 발생하지 않았으며, 수평변위는 1.4cm 정도로 나타났다. 따라서, 연약지반상 도로 시공시 성토체의 안정성 확보를 위한 SCP공법 및 교대의 측방유동을 방지할 목적으로 채택된 SCP 개량 + EPS 성토공법의 효과는 매우 우수한 것으로 판단된다.

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Relationship between Class III malocclusion and hyoid bone displacement during swallowing: a cine-magnetic resonance imaging study

  • Gokce, Sila Mermut;Gokce, Hasan Suat;Gorgulu, Serkan;Karacay, Seniz;Akca, Eralp;Olmez, Huseyin
    • 대한치과교정학회지
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    • 제42권4호
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    • pp.190-200
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    • 2012
  • Objective: The displacement of the hyoid bone (HB) is a critical biomechanical component of the swallowing function. The aim of this study was to evaluate the swallowing-induced vertical and horizontal displacements of the HB in subjects with 2 different magnitudes of skeletal Class III malocclusion, by means of real-time, balanced turbo-field-echo (B-TFE) cine-magnetic resonance imaging. Methods: The study population comprised 19 patients with mild skeletal Class III malocclusion, 16 with severe skeletal Class III malocclusion, and 20 with a skeletal Class I relationship. Before the commencement of the study, all subjects underwent cephalometric analysis to identify the nature of skeletal malformations. B-TFE images were obtained for the 4 consecutive stages of deglutition as each patient swallowed 10 mL of water, and the vertical and horizontal displacements of the HB were measured at each stage. Results: At all stages of swallowing, the vertical position of the HB in the severe Class III malocclusion group was significantly lower than those in the mild Class III and Class I malocclusion groups. Similarly, the horizontal displacement of the HB was found to be significantly associated with the severity of malocclusion, i.e., the degree of Class III malocclusion, while the amount of anterior displacement of the HB decreased with an increase in the severity of the Class III deformity. Conclusions: Our findings indicate the existence of a relationship between the magnitude of Class III malocclusion and HB displacement during swallowing.

연약지반의 변형억제 효과에 대한 2차원 모형실험 및 수치계산 (An Experimental and Numerical Sutdy oft Restraint Effects of Deformation in Model Foundation(1))

  • 박병기;남진희
    • 한국지반공학회지:지반
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    • 제6권3호
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    • pp.53-64
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    • 1990
  • 본문은 0.5kgf/cm2, 1kgf/cm2로 추밀된 모형점토지반(140*25*80cm)에 Sand Mat나 Geotextiles 의 크기를 변화시켜 포설한 뒤에 강주기초와 요성기초를 설치하는 10종의 모형기초에 재하시험을 실시한 것이다. 재하시험을 통해 얻어진 수평, 수직변위위 기초형태별 변음을 고찰하고 또한 이들 변형을 예측하는 전산 프로그램에 의해 수치계산을 수행한 것이다. 그 결과 변형을 예측하는 수치계산은 매우 양호한 정도를 보였고 지반지지력은 강성기초가 더 유리하며, 수평, 수직 양변위에 대응하기 위해서는 Sand Mat, Geotextile의 양 공법을 병용하는 것이 효과적임을 알았다. 또한 Sand Mat만 단독으로 이용할 경우는 수직변위의 억제효과가 크며 똑같이 Geotextile만 쓴 경우는 수평변위의 억제효과가 크다.

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Effects of traffic-induced vibrations on bridge-mounted overhead sign structures

  • Kim, Janghwan;Kang, Jun Won;Jung, Hieyoung;Pack, Seung-woo
    • Structural Engineering and Mechanics
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    • 제55권2호
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    • pp.365-377
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    • 2015
  • Large-amplitude vibration of overhead sign structures can cause unfavorable psychological responses in motorists, interfere with readability of the signs, and lead to fatigue cracking in the sign structures. Field experience in Texas suggests that an overhead sign structure can vibrate excessively when supported within the span of a highway bridge instead of at a bent. This study used finite element modeling to analyze the dynamic displacement response of three hypothetical sign structures subjected to truck-passage-induced vertical oscillations recorded for the girders from four actual bridges. The modeled sign bridge structures included several span lengths based on standard design practices in Texas and were mounted on precast concrete I-girder bridges. Results revealed that resonance with bridge girder vertical vibrations can amplify the dynamic displacement of sign structures, and a specific range of frequency ratios subject to undesirable amplification was identified. Based on these findings, it is suggested that this type of sign structure be located at a bridge bent if its vertical motion frequency is within the identified range of bridge structure excitation frequencies. Several alternatives are investigated for cases where this is not possible, including increasing sign structure stiffness, reducing sign mass, and installing mechanical dampers.

유한요소해석을 이용한 연직배수재의 타설범위에 따른 개량효과에 관한 연구 (A Study on the Effect of Improvement Boundary of Vertical Drain Method by Finite Element Analysis)

  • 장용채;김주한;이진수
    • 한국지반환경공학회 논문집
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    • 제5권1호
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    • pp.5-12
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    • 2004
  • 우리나라의 서 남해안 지역과 내륙의 하천 인근 지역은 상당한 범위에 걸쳐 점성토 지반이 형성되어 있다. 연약지반상의 제체는 지지지반의 지지력 부족으로 인하여 변위를 일으킨다. 장기적인 압밀은 구조체의 침하나 전단파괴를 가져올 수 있다. 따라서, 지반의 파괴와 과다변형을 억제하기 위해서 건설현장에 다양한 연직배수공법을 적용한다. 이 연구는 지반개량의 범위에 기초하여 연직배수재를 연직 및 수평방향으로 변화시켜 효율적인 개량 범위의 형태를 결정하고자 한다. 제체의 가장자리로부터 거리에 따른 강도의 변화는 제체 사면의 현장 값으로부터 해석되어진다.

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