• Title/Summary/Keyword: 일반단면

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Behavior Analysis of RMPM Applied Steel Frame Structures (반력모멘트를 이용한 라멘형 철골구조물의 거동분석)

  • Ahn, Jin Hee;Kim, Jun Hwan;Kim, Tae Yeon;Kim, Sang Hyo;Lee, Sang Woo
    • Journal of Korean Society of Steel Construction
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    • v.19 no.6
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    • pp.611-620
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    • 2007
  • The beam-column connection is the critical design section of general steel frame structures owing to the behavioral characteristics of the structural system. As most members of a frame structure are composed of rolled section beams, the cross-section of the beam members is governed by the negative bending moment near beam-column connections. Such a design concept leaves a redundant load-carrying capacity at the positive bending regions of the beam members leading to design inefficiency. Therefore, it is of utmost importance to redistribute the beam end moments and reduce the stresses at the beam-column connections for a more efficient design of steel frame structures. In this study, reaction-moment prestressing method (RMPM) was proposed for the innovative design and construction of steel frame structures. The RMPM is a prestressing method utilizing the elastic bending deformation of a beam member induced by temporary prestressing for the distribution of a relatively large bending moment to other sections for the efficient use of the beam section. By the application of the RMPM, the negative bending moment at the beam-column connections can be significantly reduced, ultimately leading to possible use of smaller beam sections. Through a series of model tests and numerical analyses of steel frame structures, the moment distributing effect and feasibility of the RMPM was verified.

Compressive Stress Distribution of High Tension Bolted Joints (고장력 볼트 이음부의 내부 압축응력 분포)

  • Kim, Sung Hoon;Lee, Seung Yong;Choi, Jun Hyeok;Chang, Dong Il
    • Journal of Korean Society of Steel Construction
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    • v.9 no.2 s.31
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    • pp.171-179
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    • 1997
  • The high-tension bolted joints are clamped by the axial force which approaches the yielding strength. The introduced axial force is transmitted to the connection members pass through washer. The transferred load in connections is balanced to the compressive stress of plates, axial force in bolts and the external loads. In this mechanism, the compressive stress and slip load we dominated by the effective stiffness of bolted joints and plates. In general the effective stiffness is specified to product to the effective area and elasticity modulus in connections. In this reason, the conic projection formular which is assumed that the axial force in bolts is distributed to the cone shape and that region is related to the elastic deformation mechanism in connections, was proposed. But it conclude what kind of formula is justified. Therefore in this paper, the fatigue tests are performed to the high tension bolted joints and inspected to the phase on the friction face. And using the FEM and numerical method, it is analyzed and approximated to the compressive stress distribution and its region. Moreover, it is estimated to the effective area and to the relation the friction area to the effective compressive distribution region.

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An Experimental Study on the dynamic behavior of 4-Span Cable-Stayed Bridge with ${\pi}$-Type Girder (${\pi}$형 거더를 가진 4경간 사장교의 동적거동에 관한 실험적 연구)

  • Cho, Jae-Young;Kim, Young-Min;Lee, Hak-Eun;Yoon, Ki-Yong
    • Journal of the Korean Society of Hazard Mitigation
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    • v.4 no.1 s.12
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    • pp.15-24
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    • 2004
  • Generally, a ${\pi}$-type girder composed of two I-type girders is known to have a significant disadvantage in wind resistance design because of aerodynamic instability. A representative bridge for this girder was Tacoma Narrows Bridge. Since Tacoma Narrows Bridge had very low stiffness of the bridge structure and its cross-section shape had aerodynamic instability, the bridge collapsed after severe torsion and vibration events in 19m/s wind speed. Aerodynamic vibration can be avoided by enhancing structural stiffness and damping factor and conducting a study of cross-section shapes. This study shows the angle of attack for the four-span cable stayed bridge having ${\pi}$-type cross-section and describes the aerodynamic characteristics of the changed cross-section with aerodynamic vibration damping additions, by carrying out two-dimension vibration tests. As a result of uniform flow and turbulent flow, the study shows that because the basic ${\pi}$-type cross-section alone can have efficient wind resistant stability, there is no need to have additional aerodynamic damping equipment. Since this four 230m-main-span bridge has a large frequency and also has a big stiffness compared to other bridges containing a similar cross-section, it has aerodynamic stability under the design wind speed.

Measurement of Velocity and Discharge In Natural Streams with the Electronic Float System (전자부자 시스템을 활용한 자연하천의 유속과 유량 측정)

  • Lee, Chan Joo;Kim, Won;Kim, Chi Young;Kim, Dong Gu
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.29 no.4B
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    • pp.329-337
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    • 2009
  • In this study we briefly introduce the electronic float system based on the GPS and RF communication technology and present some field application results. The system is capable of operating 15 floats simultaneously for making discharge measurement. Since the electronic floats (EFs) acquire flow paths, they can improve velocity measurement accuracy up to 10%. Additionally, measured velocities by the EFs show good agreement with those by an ADCP. Relative difference in sub-section area calculated by the electronic and conventional float methods is -79~71% and, due to convergent tendency of floats flowing along near banks, it increases much larger. It is possible to improve accuracy up to 5~6% in making discharge measurement by the electronic floats at site with irregular flow paths and section arrangement. The electronic float system is capable of calculating more accurate velocity and section area using position information based on GPS. By real-time measurement of velocity, cross-section area and discharge, the electronic float system is expected to reduce manpower and improve accuracy, rapidity and efficiency of flood discharge measurements.

Tunnel Reverse Engineering Using Terrestrial LiDAR (지상LiDAR를 이용한 터널의 Reverse Engineering)

  • Cho, Hyung Sig;Sohn, Hong Gyoo;Kim, Jong Suk;Lee, Suk Kun
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.6D
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    • pp.931-936
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    • 2008
  • Surveying by using terrestrial LiDAR(Light Detection And Ranging) is more rapid than by using total station which enables tunnel section profile surveying to be done in suitable time and minimize centerline error, occurrence of overcut and undercut. Therefore, utilization of terrestrial LiDAR has increased more and more in section profile survey and measurement field Moreover, studies of terrestrial LiDAR for accurate and efficient utilization is now ongoing vigorously. Average end area formula, which was generally used to calculate overcut and undercut, was compared with existing methods such as total station survey and photogrammetry. However, there are no criteria of spacing distance for calculating overcut and undercut through terrestrial LiDAR surveying which can acquire 3D information of whole tunnel. This research performed reverse engineering to decide optimal spacing distance when surveying tunnel section profile by comparing whole tunnel volume and tunnel volume in difference spacing distance. This result was utilized to produce CAD drawing for the test tunnel site where there is no design drawings. In addition to this, efficiency of LiDAR and accuracy of CAD drawing was compared with targetless total station surveying of tunnel section profile. Finally, error analysis of target coordinate's accuracy and incidence angle was done in order to verify the accuracy of terrestrial LiDAR technology.

Weight Reduction Behavior and Dyeing Properties of Sea-island Type PET Nanofilament Knitted Fabric (해도형 폴리에스터 초극세사 편성물의 감량 거동 및 염색 특성)

  • Lee, Jung-Jin;Kim, Hyun-Sung;Shin, Eun-Suk;Ok, Chi-Min;Kim, Hyoung-No
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2012.03a
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    • pp.27-27
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    • 2012
  • 나노필라멘트는 단면직경이 수백 나노미터에서 수십 나노미터 수준인 초극세 장섬유를 말하며, 해도형 복합방사로 얻어진 섬유를 알칼리 감량을 통해 해성분을 용출하여 도성분에 해당하는 나노필라멘트를 얻는다. 이러한 나노필라멘트사는 극세사와 마찬가지로 단위중량당 표면적이 크고, 작은 굴곡반경 및 낮은 굴곡 반발성으로 인하여 일반 합성섬유에 비하여 고가성 및 새로운 기능성을 부여하는 제품에 응용될 수 있다. 나노필라멘트 편물은 원사섬도, 편물의 조직, 밀도 및 중량 등에 따라 분할율과 용출 특성이 상이하므로 후가공 공정에 있어서 감량공정은 매우 중요하다. 또한 나노필라멘트와 같은 세사의 경우 일반사보다 비표면적이 증가하여 동일한 염색조건에서 옅은 색상을 나타낸다. 이로 인해 같은 색상을 위하여 보다 많은 염료를 투입해야 하며, 결과적으로 견뢰도 문제가 발생할 우려가 있다. 이 연구에서는 800nm급 해도형 나노필라멘트 PET 100% 또는 나노필라멘트와 일반 PET사를 복합한 편물을 이용하여 알칼리 감량거동 및 분산염료에 대한 염색성과 견뢰도를 연구하였다. 알칼리 감량이 진행됨에 따라 감량률이 증가하였으며, SEM분석, DSC분석, 양이온염료 염색법 등을 통하여 해성분 용출 및 도성분 분할이 진행되는 정도를 평가할 수 있었다. 나노필라멘트 편성물은 염료농도가 증가함에 따라 지속적으로 K/S값이 증가하였으나, 일반 극세사 편성물에 비해 낮은 K/S값을 얻었다. 또한 나노필라멘트/일반 PET 복합편물에 있어서 염색온도가 110에서 $130^{\circ}C$로 증가함에 따라 K/S값이 감소하였는데, 이는 고온에서 분산염료가 나노필라멘트로부터 일반 PET사로 이염이 더 많이 발생하였기 때문이라고 생각된다. 세탁견뢰도의 경우 양호하였으나, 일광견뢰도의 경우 1등급으로 매우 낮았다.

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Simulation of Improvement Method for Narrow Cross-Section in Hyungsan River Using HEC-6 (HEC-6를 이용한 형산강 협착부 개선방안 모의)

  • Kim, Jung-Min;Kim, Young-Do;Lyu, Si-Wan;Lee, Nam-Joo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.953-957
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    • 2008
  • 일반적으로 하천은 오랫동안 장기간의 변화를 겪으며 안정되어 있다. 산사태나 홍수 등 자연적인 변화뿐 아니라 댐이나 교량 등 인위적인 변화에 따라 흐름이나 유사량이 변하게 되며 이런 동적변형상태를 복원하는 과정에서 침식과 퇴적이 반복적으로 이루어져 대규모 하상변동이 이루어지게 된다. 이러한 하천에서 발생하는 대규모의 하상변동에는 일반적으로 1차원 해석이 적용된다. 하천의 일정 하도구간을 고려할 경우 구간의 상류단면으로부터 유입하는 유입토사량과 하류단면에서 유출되는 유출토사량과의 비에 따라 그 구간에는 하상상승(aggradation)및 하상저하(degradation)가 발생하게 되고 이것이 거시적 측면에서 하상변동이라 할 수 있다. 이러한 장기하상변동은 경우에 따라서 이수용도의 수문 혹은 취수구가 노출되거나, 교량의 교각에 국부세굴이 발생되어 붕괴위험이 생기는 등 심각한 문제가 발생할 수가 있다. 본 연구에서는 하상변동 예측 모형 중 신뢰성 및 적용성이 우수한 것으로 인식되고 있는 HEC-6 모형을 형산강수계에 적용하여 4가지 협착부 개선방안에 따른 장기하상변동에의 영향을 검토하고자 하였다. 하천기본계획상의 횡단면도와 유사량 실측값을 이용하여 유사모의 결과를 검증하고 2020년까지의 모형의 계산 값을 이용하여 4가지 대안에 따른 모의 결과와 원안의 결과와 비교 및 분석하였다. 모의한 결과 형산강의 하상변동치가 크지 않은 것은 형산강의 하상이 어느 정도 안정되어 있어 장기적인 하상변동이 크지 않기 때문이다. 따라서 협착부 개선에 따른 대안 1, 2, 3, 4의 하상이 크게 변하지 않음을 보였다. 지형 변화에 따른 장기하상변동에의 영향이 크지 않은 것을 확인할 수 있다.

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Analysis of Aerodynamic Characteristics for determination of tunnel cross section in Honam high speed railway (호남고속철도 터널 단면선정을 위한 공기역학적 특성 분석)

  • Kim, Seon-Hong;Moon, Yeon-Oh;Seok, Jin-Ho;Jo, Hyeong-Jae;Yoo, Ho-Sik;Choi, Jeong-Hwan;Rim, Hyoung-Gyu
    • Proceedings of the KSR Conference
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    • 2007.11a
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    • pp.313-336
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    • 2007
  • Unlike a conventional railway system, a high-speed rail system experiences various aerodynamic problems in tunnel sections. Trains running at a high speed in a small tunnel, when compared with the open field, face significant air pressure, resulting in reduced operating stability and fast change in pressure inside the tunnel. These phenomena further cause some unexpected problems such as the passengers onboard feeling an aural discomfort and an impulsive noise at the tunnel exit. To solve these problems, this paper introduces analysis of aerodynamic characteristics for determination of tunnel cross section. The optimum cross-section that satisfies the criteria of aural discomfort was reviewed through lots of numerical simulation analysis. Also, the pressure inside the passenger car of a train operating on Kyungbu HSR line was measured, and the pressure inside the tunnel and the micro-pressure waves at tunnel exit were measured at Hwashin 5 Tunnel. At the same time, a test of train operation model was performed and then the measurement results and test results were compared to verify that various parameters used as input conditions for the numerical simulations were appropriate.

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Skin Friction Mobilized on Pack Micropiles Subjected to Uplift Force (인발력을 받는 팩마이크로파일의 주면마찰력)

  • Hong, Won-Pyo;Cho, Sam-Deok;Choi, Chang-Ho;Lee, Choong-Min
    • Journal of the Korean Geotechnical Society
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    • v.28 no.6
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    • pp.19-29
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    • 2012
  • Pack micropiles were recently developed to improve pile capacity of general micropiles. Pack micropiles were made by warping thread bar or steel pipe of general micropile by geotexlile pack and grouting inside the pack with pressure. According to the pressure, the boring hole could be enlarged. A series of pile uplift tests were performed on three micropiles. Two out of the three piles were the pack micropiles and the other was the general micropile, in which a thread bar was used in the boring hole. According to the pressure applied to the pack micropiles, the diameter of boring hole was enlarged from 152 mm to 220 mm. Unit skin friction mobilized on side surfaces of micropiles increased with displacement of pile head and reached on a constant value, which represents that the relative displacement between piles (or thread bar) and soils was reached on critical state. And the uplift resistance of pack micropile was higher than that of general micropile. Two reasons can be considered: One is that the frictional surface increases due to enlarging diameter of boring holes and the other is that the unit skin friction could increase due to compressing effect of surrounding soils by soil displacement as much as the enlarging volume of boring hole. The compression effect appeared at deeper layer rather than surface layer. The unit skin friction mobilized on micropiles with small diameter was higher than the ones on large bored piles.

A plan by practically using Low-Energy Compected-Flow mixing installation to improve sendimental and removal efficiency (저에너지형 CF혼화장치를 활용한 침전제거효율 개선 방안)

  • Choi, Gye-Woon;Lee, Joo-Kyung;Ahn, Kyung-Hun;Han, Man-Shin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.842-846
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    • 2008
  • 원수의 탁질 중에서 입경이 $10^{-1}$mm이상인 것은 보통침전으로 제거가 가능하지만, 입경이��$10^{-3}mm$이하가 되면 일반적으로 콜로이드입자라고 총칭하며 그대로의 상태로서는 거의 침강되지 않을 뿐만 아니라 급속여과기구에서도 포착되지 않는다. 따라서 급속여과 방식에서는 이와 같은 탁질을 효과적으로 제거하기 위한 전처리로서 응집조작으로 인한 콜로이드상의 탁질을 플록화하여 약품침전이나 급속여과에서 포착되도록 탁질의 성상을 변화시키는 조작이 반드시 필요하다. 또한 양호한 플록을 효과적으로 형성시키는 약품혼화와 플록형성 등을 강구해야 한다. 이에 본 연구에서는 현재 국내에서 운영하고 있는 정수처리시스템의 일부인 혼화지내에 혼화지점의 단면적을 축소시켜 약품혼화효과를 극대화하고 혼화기의 소요동력을 감소시켜 혼화효과를 개선하며 혼화지내 혼화기 운용의 비용 절감 효과를 증가시키기 위한 저에너지형 CF혼화장치를 개발하는데 연구 목적이 있다. 연구결과 CF혼화장치의 설치시 약품 투입 위치에 따라 $2{\sim}6%$정도의 탁도제거율의 상승과 슬러지 높이의 차이를 보이는 것으로 나타났으며 이 실험 결과 약품투입장소에서 혼화지의 Compact화로 인해 급속 혼화를 이룰 경우 더 많은 플록화로 인해 탁도 제거율이 높아지는 것을 알 수 있다.

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