• Title/Summary/Keyword: 마제형 와

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Experimental Analysis of Effect of Unsteadiness of Horseshoe Vortex on Local Pier Scour (국부교각세굴에서 마제형와의 부정류적 특성에 관한 실험적 해석)

  • Lee, Seung Oh;Kim, Hyung-Jun;Cho, Yong-Sik
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.2B
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    • pp.169-175
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    • 2008
  • The clear-water scour experiments were conducted to shed light on the unsteadiness of the horseshoe vortex around a bridge pier since the fluctuations of velocity components and unsteadiness of the horseshoe vortex can be considered as one of the main factors on local scour. The characteristics of the flow speed and turbulence around a bridge pier was examined using an Acoustic Doppler Velocimeter (ADV) and the flow visualization with kaolin clay particles upstream of a bridge pier. The outcomes of this study on the turbulence characteristics related with scour mechanism were presented with the quadrant analysis, the integral time scales, and the bed shear stresses before and after scouring, respectively. The bed shear stress before scouring was approximately quadruple times higher than that of the equilibriums state. It implies that the unsteadiness of the horseshoe vortex would play a significant role in the initial development of scour depth. Therefore, the bimodal distribution of flow velocity was identified as one of the mechanical properties of the horseshoe vortex and the unsteadiness of horseshoe vortex can be one of the major characteristics to understand the flow sturucture and local pier scour.

Pharyngeal Teeth and Masticatory Process of the Basioccipital Bone in Korean Bitterlings (Teleostomi : Cyprinidae) (韓國産 납자루아과어류(亞科魚類)의 인두치(咽頭齒)와 저작돌기(咀嚼突起))

  • Suzuki, Nobuhiro;Jeon, Sang-Rin
    • Korean Journal of Ichthyology
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    • v.1 no.1_2
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    • pp.83-92
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    • 1989
  • The pharyngeal teeth and the masticatory process of the basioccipital bone were compared in ten species of Korean bitterlings. Three species, Acheilognathus lanceolata, A. limbatus, A. signifier and Rhodeus ocellatus, which are characterized by the absence of serrations on the side of the pharyngeal teeth, are found to, have reduced occlusal grooves on the outside of occlusal margin, Among Korean bitterlings, differences are found in the developmental degrees of the anterior part of the masticatory process, the grooves on the occlusal surface and the chewing area on the pharyngeal first tooth. The occlusal grooves in herbivorous species are considered to be more developed than those in omnivorous species. Considering these findings, the combination of developmental degrees in the three pharyngeal elements suggests generally the phylogenetic relationships among the Korean bitterlings.

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Measurement and Analysis of Propagation Characteristics in Curved Subway Tunnel Environments (곡선형 지하철 터널환경에서 전파 특성의 측정과 분석)

  • 정회동;박노준;강영진;송문규
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.29 no.8A
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    • pp.950-961
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    • 2004
  • In this paper, we measured and analyzed propagation characteristics in a subway tunnel that is recently increasingly becoming one of the radio communication environments. The measurements are carried out in a subway tunnel with frequency bands of 2.45㎓ and 5.8㎓. The length of tunnel we used for this study is 175m of LOS (Line-of-sight) and 270m of NLOS (Non Line-of-Sight). The subway tunnel is curved and its cross section is horseshoe type. The measurement systems we employ in this study are a narrow-band system and a wide-band system. The narrow-band system is used to get path loss measurement and the wide-band system is used to figure out delay profile measurement. In particular, the wide-band system consists of 1023 length PN sequence generator using a chip rate of 80MHz based on a sliding correlation technique. The omni-directional antennas and directional antennas are used to analyze propagation characteristics for beam type of antenna. The path loss displays only pure path loss of a tunnel environment. The delay profile indicates the mean excess delay and RMS (root mean square) delay spread.