• 제목/요약/키워드: Jeabok

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Imputation Methods for the Population and Housing Census 2000 in Korea

  • Kim, Young-Won;Ryu, Jeabok;Park, Jinwoo;Lee, Jaewon
    • Communications for Statistical Applications and Methods
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    • 제10권2호
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    • pp.575-583
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    • 2003
  • We proposed imputation strategies for the Population and Housing Census 2000 in Korea. The total area of floor space and marital status which have relatively high non-response rates in the Census are considered to develope the effective missing value imputation procedures. The Classification and Regression Tree(CART) is employed to construct the imputation cells for hot-deck imputation, as well as to predict missing value by model-based approach. We compare three imputation methods which include CART model-based imputation, hot-deck imputation based on CART and logical hot-deck imputation proposed by The Korea National Statistical Office. The results suggest that the proposed hot-deck imputation based on CART is very efficient and strongly recommendable.

조선시대 남자복식에 나타난 목판당코깃 연구 (A Study on the Mokpan-Dangkogit which was appeared on Male Clothing in the Lee Dynasty)

  • 구남옥
    • 복식
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    • 제55권3호
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    • pp.47-58
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    • 2005
  • Mokpan-dangkogit was one pattern of collars normally attached to female clothing in Lee Dynasty and it was very rare that a collar of Mokpan-dangkogit was found in male clothing particularly under the Confucianism-dominated society. The detailed procedures of the study are as follows: To summarize a systematic classification on collar of Lee Dynasty along with characteristics of each collar in literature review; To exam various types of Mokpan-dangkogit found in male clothing in the era of Lee Dynasty through relics of the past; and To analyze a period of time which Mokpan-dangkogit first appeared in the process of clothing history of Lee Dynasty and those who wore it. In conclusion, a relationship between female Mokpan-dangkogit and male counterpart was discussed.

강한 전단 해류 환경에서 동적 전력케이블의 VIV 피로해석 절차에 관한 기초 연구 (A Fundamental Study of VIV Fatigue Analysis Procedure for Dynamic Power Cables Subjected to Severely Sheared Currents)

  • 심천식;김민석;김철민;노유호;이재복;채광수;김강호;정다슬
    • 대한조선학회논문집
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    • 제60권5호
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    • pp.375-387
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    • 2023
  • The subsea power cables are increasingly important for harvesting renewable energies as we develop offshore wind farms located at a long distance from shore. Particularly, the continuous flexural motion of inter-array dynamic power cable of floating offshore wind turbine causes tremendous fatigue damages on the cable. As the subsea power cable consists of the helical structures with various components unlike a mooring line and a steel pipe riser, the fatigue analysis of the cables should be performed using special procedures that consider stick/slip phenomenon. This phenomenon occurs between inner helically wound components when they are tensioned or compressed by environmental loads and the floater motions. In particular, Vortex-induced vibration (VIV) can be generated by currents and have significant impacts on the fatigue life of the cable. In this study, the procedure for VIV fatigue analysis of the dynamic power cable has been established. Additionally, the respective roles of programs employed and required inputs and outputs are explained in detail. Demonstrations of case studies are provided under severely sheared currents to investigate the influences on amplitude variations of dynamic power cables caused by the excitation of high mode numbers. Finally, sensitivity studies have been performed to compare dynamic cable design parameters, specifically, structural damping ratio, higher order harmonics, and lift coefficients tables. In the future, one of the fundamental assumptions to assess the VIV response will be examined in detail, namely a narrow-banded Gaussian process derived from the VIV amplitudes. Although this approach is consistent with current industry standards, the level of consistency and the potential errors between the Gaussian process and the fatigue damage generated from deterministic time-domain results are to be confirmed to verify VIV fatigue analysis procedure for slender marine structures.