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볼트접합 앵글을 사용한 PSRC 합성기둥의 편심 압축실험
김현진,황현종,박홍근,김동관,양종민,Kim, Hyeon Jin,Hwang, Hyeon Jong,Park, Hong Gun,Kim, Dong Kwan,Yang, Jong Min 한국강구조학회 2017 韓國鋼構造學會 論文集 Vol.29 No.3
볼트접합 앵글을 사용한 선조립-SRC 합성기둥(이하 PSRC 합성기둥)의 구조성능을 평가하기 위하여 PSRC 기둥실험체 6개와 일반 SRC 기둥실험체 2개에 대하여 편심축 압축실험을 수행하였다. 횡보강재의 수직간격 및 단면형상과 축하중의 편심율을 실험변수로 고려하였다. 실험결과, 편심율이 큰 경우 PSRC 실험체는 단면 코너에 위치한 고강성 앵글로 인하여 압축하중 재하능력 및 변형능력이 기존 SRC 실험체보다 향상되었다. PSRC 기둥 실험체에서 횡방향 강판의 좁은 횡보강 간격과 Z형 단면의 횡방향 강판은 우수한 횡구속력을 제공하였으며, 하중재 하능력을 향상시켰다. 실험 및 수치해석을 통한 합성기둥의 휨 압축 강도는 현행설계기준에 의한 휨-압축 상관도를 상회하였다. 수치해석결과는 각 실험체의 강성, 최대강도, 최대하중 이후 강도감소거동을 비교적 잘 예측하였다. In order to investigate the structural performance of a novel prefabricated-SRC column using bolt-connected steel angles(PSRC column), eccentric axial loading tests were performed for six PSRC column specimens and two conventional SRC column specimens. The test parameters were the spacing and sectional configurations of lateral reinforcement, and eccentricity ratio of axial load. The test results showed that, due to high axial-stiffness of the angles located at the corners of the cross section, the compressive load-carrying capacity and deformation capacity of the PSRC specimens were greater than those of the SRC specimens in the large eccentricity ratio of axial load. Closely spaced lateral steel plates and Z-shaped lateral steel plates improved lateral confinement, which increased the load-carrying capacity of the PSRC specimens. The combined flexural and axial load-carrying capacity of the specimens by tests and nonlinear numerical analysis were greater than the predictions by current design codes. The numerical analysis agreed well with the test results including the initial stiffness, peak strength, and post-peak strength degradation.
김현진,황현종,박홍근,김동관,양종민,Kim, Hyeon Jin,Hwang, Hyeon Jong,Park, Hong Gun,Kim, Dong Kwan,Yang, Jong Min 한국강구조학회 2017 韓國鋼構造學會 論文集 Vol.29 No.2
본 연구에서는 볼트조립 앵글을 적용한 선조립 합성기둥(이하 PSRC 합성기둥)의 압축성능을 연구하였다. 2/3 축소비율의 PSRC 기둥실험체 4개와 기존 SRC 기둥실험체 2개에 대하여 중심축 압축실험을 수행하였다. 횡보강재의 수직간격 및 단면형상과 앵글의 단면형상을 실험변수로 고려하였다. 실험결과, PSRC 기둥실험체는 기존 SRC 기둥실험체와 비교하여 비슷한 압축하중 재하능력 및 변형능력을 발휘하였다. PSRC 합성기둥의 경우, 횡방향 강판의 좁은 횡보강 간격과 Z형 단면의 강판이 압축강도 및 변형능력 향상에 효과적인 것으로 나타났다. 또한 PSRC 합성기둥은 현행설계기준에 의한 공칭 압축강도보다 큰 압축하중 재하능력을 나타내었다. 실험체들에 대한 수치해석결과는 피복 콘크리트 탈락으로 인한 하중감소를 제외하고 초기강성 및 하중재하능력을 비교적 잘 예측하였다. The present study focused on the structural performance of newly developed prefabricated composite columns (PSRC composite column) using bolt-connected steel angles. Concentric axial loading tests were performed for four 2/3 scaled PSRC column specimens and two conventional SRC column specimens. The test parameters were the spacing and sectional configurations of lateral reinforcement, and width-to-thickness ratio of steel angles. The test results showed that the axial load-carrying capacity and deformation capacity of the PSRC column specimens were comparable to those of the conventional SRC column specimens. Closely spaced steel plates and Z-shaped steel plates for lateral reinforcement increased the deformation capacity of the PSRC column specimens. The load-carrying capacity was greater than the prediction by current design codes. Numerical analysis was performed for the specimens. The results agreed well with the test results in terms of initial stiffness, load-carrying capacity, except for strength degradation due to cover concrete spalling.
음파 가진을 이용한 2차원 웨이크 유동 제어에 관한 연구
김현진,김재호,김명균,Kim, Hyeon-Jin,Kim, Jae-Ho,Kim, Myeong-Gyun 대한기계학회 1998 大韓機械學會論文集B Vol.22 No.6
In a low speed open-type wind tunnel, a group of parallel wakes downstream of two dimensional grid model consisting of several circular cylinders were experimentally investigated to study the response of the wake flows to the acoustic excitation, in hoping to promote the understanding of the underlying mechanism behind the gross flow change due to artificial excitation. In the unexcited wake flows, the development of the individual wakes behind cylinders was almost uniform for the ratio of the spacing to the cylinder diameter of s/d.geq.1.5. For smaller s/d, however, the jet streams issued through the gaps between the cylinders became biased in one side and the cylinders had wakes of different sizes. At s/d=1.25, the gap flow directions change in time, leading to unstable wake patterns. Further reduction in s/d made this unstable flip-flopping of the jets stable. The most effective excitation frequency was found to be in the Strouhal number range of St=0.5-0.6. This frequency was related to the vortex shedding. At s/d=1.75, the excitation frequency was 2 or 4 times the vortex shedding frequency. When the flow was excited at this frequency, the vortex sheddings were energized, and pairings between neighboring vortices were generated. Also, the merging process between individual wakes was accelerated. The unstable and unbalanced wake patterns at s/d=2.15 were made stable and balanced. The unstable and unbalanced wake patterns at s/d=2.15 were made stable and balanced. For smaller spacing of s/d .leq,1.0, the acoustic excitation became less effective in controlling the flow.
김현진,박태원,정란,Kim, Hyeon-Jin,Park, Tae-Won,Jeong, Ran 한국건설안전협회 2009 建設 安全技術 Vol.49 No.-
Earthquake is one of the hazard so hard because it is difficult predicted occurred time, scale and characters. Due to a recent Sichuan earthquake in China with a magnitude of 7.8, it is worried about having a major earthquake in Korea peninsula in near future. The earthquake in Kobe, Japan showed that the damages were concentrated on the buildings which were not considered to be protected from the earthquakes. In this study, apartment structures in Korea analyze about earthquake hazard and evaluate seismic performance. Through the this study we have notice of earthquake hazard for apartment structures which live a lot of population of Korea and suppose necessary for seismic retrofit.