• 제목/요약/키워드: shift of effective centroid

검색결과 3건 처리시간 0.022초

Local buckling and shift of effective centroid of cold-formed steel columns

  • Young, Ben
    • Steel and Composite Structures
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    • 제5권2_3호
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    • pp.235-246
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    • 2005
  • Local buckling is a major consideration in the design of thin-walled cold-formed steel sections. The main effect of local buckling in plate elements under longitudinal compressive stresses is to cause a redistribution of the stresses in which the greatest portion of the load is carried near the supporting edges of the plate junctions. The redistribution produces increased stresses near the plate junctions and high bending stresses as a result of plate flexure, leading to ultimate loads below the squash load of the section. In singly symmetric cross-sections, the redistribution of longitudinal stress caused by local buckling also produces a shift of the line of action of internal force (shift of effective centroid). The fundamentally different effects of local buckling on the behaviour of pin-ended and fixed-ended singly symmetric columns lead to inconsistencies in traditional design approaches. The paper describes local buckling and shift of effective centroid of thin-walled cold-formed steel channel columns. Tests of channel columns have been described. The experimental local buckling loads were compared with the theoretical local buckling loads obtained using an elastic finite strip buckling analysis. The shift of the effective centroid was also compared with the shift predicted using the Australian/New Zealand and American specifications for cold-formed steel structures.

Envisat ASAR 원시자료를 이용한 표층 해류 속도 추출 (Extraction of Ocean Surface Current Velocity Using Envisat ASAR Raw Data)

  • 강기묵;김덕진
    • 대한원격탐사학회지
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    • 제29권1호
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    • pp.11-20
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    • 2013
  • 인공위성 Synthetic Aperture Radar(SAR)는 물리해양학적 현상을 정량적으로 관측하는데 가장 유용한 도구 중의 하나이다. SAR의 도플러 편이(Doppler shift) 현상은 센서와 해양표면 유체와의 상대적인 움직임 차이로 인해 발생될 수 있다. 따라서, 단 채널 SAR 원시자료에 기록된 도플러 정보는 해양의 유체 이동속도를 추정하는데 유용하다. 유체의 이동속도는 측정된 도플러 중심주파수(estimated Doppler centroid)와 예측된 도플러 중심주파수(predicted Doppler centroid) 사이의 차이를 측정함으로써 계산될 수 있다. 예측된 도플러 중심주파수는 표적이 움직이지 않는다고 가정했을 때의 중심주파수로서 위성의 궤도, 시선 각, 자세 등과 같은 기하모델을 통해 계산될 수 있고, 측정된 도플러 중심주파수는 실제 SAR 촬영시 표적의 움직임에 해당하는 도플러 중심주파수로서 원시자료에 기록된 정보를 이용하고 평균상관계수법(Average Cross Correlation Coefficient; ACCC)을 적용하여 추출될 수 있다. 이렇게 추출된 도플러 속도에서 브래그 공명을 일으키는 표면 장력파의 위상속도를 제거하여 좀더 정밀한 표층 해류의 속도를 추출하였다. 이러한 기법들을 동해를 촬영한 Envisat ASAR 원시자료에 적용하였으며, 추출된 해류속도를 HF-radar에서 관측한 해류속도와 비교하였다.

Characterization of the Vertical Position of the Trapped Charge in Charge-trap Flash Memory

  • Kim, Seunghyun;Kwon, Dae Woong;Lee, Sang-Ho;Park, Sang-Ku;Kim, Youngmin;Kim, Hyungmin;Kim, Young Goan;Cho, Seongjae;Park, Byung-Gook
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제17권2호
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    • pp.167-173
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    • 2017
  • In this paper, the characterization of the vertical position of trapped charges in the charge-trap flash (CTF) memory is performed in the novel CTF memory cell with gate-all-around structure using technology computer-aided design (TCAD) simulation. In the CTF memories, injected charges are not stored in the conductive poly-crystalline silicon layer in the trapping layer such as silicon nitride. Thus, a reliable technique for exactly locating the trapped charges is required for making up an accurate macro-models for CTF memory cells. When a programming operation is performed initially, the injected charges are trapped near the interface between tunneling oxide and trapping nitride layers. However, as the program voltage gets higher and a larger threshold voltage shift is resulted, additional charges are trapped near the blocking oxide interface. Intrinsic properties of nitride including trap density and effective capture cross-sectional area substantially affect the position of charge centroid. By exactly locating the charge centroid from the charge distribution in programmed cells under various operation conditions, the relation between charge centroid and program operation condition is closely investigated.