• 제목/요약/키워드: Pedestal structure

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대형 공진주 시험 장비의 적용 (Adoption of the large scale free-free resonant column test)

  • 박인범;박철수;목영진
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 춘계 학술발표회
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    • pp.626-633
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    • 2009
  • A large scale resonant column testing equipment is under development. The would-be equipment is aiming to test 150mm-diameter specimens, which can contain as large a grain size as 25mm. Such a large specimen is hardly excitated with the existing fixed-free end condition because the torsional force cannot be effectively coupled to the specimen. The specimen will be rather resonated with free-free condition and the scheme is implemented with a rotational bearing installed between coil-magnet exciter and base pedestal. Presently the equipment was assembled and is under calibration with a cylindrical brass specimen.

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경천사십층석탑 복원에 관한 연구-탑신부를 중심으로 (Study for the restoration of Ten storied pagoda of Gyeongcheonsa-A case of Pagoda Body)

  • 신은정;김사덕;강대일
    • 보존과학연구
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    • 통권24호
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    • pp.61-79
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    • 2003
  • The position of each part of the Ten storied pagoda of Gyeongcheonsa has been changed because of illegal dismantlement and assembling throughout the history. There remain carved letters in the part of pagoda, which let us know the incorrect assembling of the parts, however, we still don't know the reasons. The pagoda has been under conservation process by the conservators from Conservation Science Division in the National Research Institute of Cultural Properties. It is one of the main purposes to find an original structure of the pagoda by appropriate assembling. The existence of iconography and carved letters are very useful in the conservation process. Mis-assembled parts are mostly in the pedestal of the Chinese letter('아') and in the bodies up to third floor. The iconography of the pagoda has many similarities to the Ten storied pagoda of Wongaksaji.

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쉘 요소를 이용한 K및 X개선 용접구조물의 열변형 해석방법에 관한 연구 (A Study on the Thermal Distortion Analysis of Welded Structures having K/X Groove using shell elements)

  • 하윤석;최지원
    • Journal of Welding and Joining
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    • 제30권6호
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    • pp.120-125
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    • 2012
  • Because ships and offshore structures have very large dimensions and complicated shapes, it is difficult to determine the deformation or internal stress in the structure by simple lab tests. Thus, a rigorous analysis by using the computer simulation technology is essential for obtaining their distortions by considering the entire production process characteristics. The rapid development of computer technology made it possible to analyze the heat transfer phenomena, deformation and phase transformation in the welded joint. For large shell structures, shell elements modeling contributed primarily to this development. But if a welding is done by multi-pass, shell elements whose thickness are unchangeable can hard to describe the local situation. Recently, it was researched how to introduce the imaginary temperature for V grooved multi-layer butt welding in strain-boundary method (a kind of shrinkage methodologies). In the present study, we formulated the imaginary temperature for the double bevel and double V groove by considering the thickness change of each pass through the bead and the thickness directions simultaneously and also demonstrated the feasibility of the formula by applying it to the thermal distortion analysis of the erection process of crane pedestal.

수직형 폴리머 마이크로링 공진기 기반의 글루코스 바이오 센서 (Refractometric Glucose Biosensor Incorporating a Vertically Coupled Microring Resonator in Polymeric Waveguides)

  • 김건덕;손근식;이학순;김기도;이상신
    • 한국광학회지
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    • 제19권2호
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    • pp.127-131
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    • 2008
  • 본 논문에서는 굴절률 감지 방식의 수직 결합형 폴리머 마이크로링 공진기 기반 글루코스 바이오 센서를 제안하고 구현하였다. 이 센서에서 상부 클래딩 역할을 하는 글루코스 분석 대상물의 농도 변화는 링 공진기의 공진파장 이동을 측정함으로써 얻어진다. 특히, 센서의 감도를 향상시키기 위해 다음과 같은 방법을 사용하였다. 첫째로, 분석 대상물에 근접한 유효굴절률을 갖는 폴리머 도파로 구조를 공진기 센서에 도입하였다. 둘째로, 분석 물질의 접촉면적을 확대하기 위해 측면 클래딩층이 충분히 식각된 pedestal 링 도파로 구조를 사용하였다. 제안된 공진기 센서는 빔전파 방법을 사용하여 설계하고 분석하였다. 사용된 코어 및 클래딩용 폴리머의 굴절률은 각각 1.430과 1.375였으며, 링 반경은 $400\;{\mu}m$였다. 이 때 얻어진 도파로의 유효굴절률은 ${\sim}1.390$였으며 글루코스 수용액의 굴절률 1.333와 매우 근접하였다. 제작된 소자의 기본적인 전달특성은 FSR(free spectral range) 0.66 nm, 대역폭 ${\sim}0.15\;nm$, Q 값 10,000 이었다. 1550 nm 광파장 대역에서 얻어진 측정 결과를 살펴보면, 센서 감도는 ${\sim}0.28\;pm$/(mg/dL)였으며, 이에 따른 굴절률 변화 감도는 ${\sim}200\;nm/RIU$였다.

1.6 M SOLAR TELESCOPE IN BIG BEAR - THE NST

  • GOODE PHILIP R.;DENKER CARSTEN.J.;DIDKOVSKY LEONID I.;KUHN J. R.;WANG HAIMIN
    • 천문학회지
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    • 제36권spc1호
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    • pp.125-133
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    • 2003
  • New Jersey Institute of Technology (NJIT), in collaboration with the University of Hawaii (UH), is upgrading Big Bear Solar Observatory (BBSO) by replacing its principal, 65 cm aperture telescope with a modern, off-axis 1.6 m clear aperture instrument from a 1.7 m blank. The new telescope offers a significant incremental improvement in ground-based infrared and high angular resolution capabilities, and enhances our continuing program to understand photospheric magneto-convection and chromospheric dynamics. These are the drivers for what is broadly called space weather - an important problem, which impacts human technologies and life on earth. This New Solar Telescope (NST) will use the existing BBSO pedestal, pier and observatory building, which will be modified to accept the larger open telescope structure. It will be operated together with our 10 inch (for larger field-of-view vector magnetograms, Ca II K and Ha observations) and Singer-Link (full disk H$\alpha$, Ca II K and white light) synoptic telescopes. The NST optical and software control design will be similar to the existing SOLARC (UH) and the planned Advanced Technology Solar Telescope (ATST) facility led by the National Solar Observatory (NSO) - all three are off-axis designs. The NST will be available to guest observers and will continue BBSO's open data policy. The polishing of the primary will be done in partnership with the University of Arizona Mirror Lab, where their proof-of-concept for figuring 8 m pieces of 20 m nighttime telescopes will be the NST's primary mirror. We plan for the NST's first light in late 2005. This new telescope will be the largest aperture solar telescope, and the largest aperture off-axis telescope, located in one of the best observing sites. It will enable new, cutting edge science. The scientific results will be extremely important to space weather and global climate change research.

CFRP (HPW193/RS1222)소재 복합재의 탄성 강성 예측 및 동적 특성 분석에 관한 연구 (A Study on Elastic Modulus Predictions and Dynamic Characteristics Analysis of Composite Structures using CFRP (HPW193/RS1222))

  • 이재은;강덕수;이병호;백주현;김중곤;황기민
    • 한국정밀공학회지
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    • 제33권10호
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    • pp.821-828
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    • 2016
  • Recently, the use of composite materials in the defense system has grown dramatically. The strength/weight and stiffness/weight ratios of composite structures are normally higher than of metals. Woven composites, especially, are increasingly considered for a variety of applications, because they offer good workability for complicated structures. HPW193/RS1222 is one of the most famous woven composites and has been used in many types of Korean military equipment, such as antenna pedestals and radar systems. In this study, we predicted the elastic modulus of HPW193/RS1222 using the principles of unidirectional composite stiffness predictions, such as ROM (Rule of Mixture), HSR (Hart Smith 10% Rule), CLA (Classical Laminate Analysis) and LAP (Laminate Analysis Program). We compared the dynamic characteristics with the experimental predictions and finite-element analysis (FEA). From our results we concluded that transversely isotropic materials are similar to isotropic materials when the shape of the composite structure is complicated.