• 제목/요약/키워드: Double Poling

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국가대표 크로스컨트리 스키 선수들의 Double Poling 기술의 운동학적 분석 (A Kinematic Analysis of the National Elite Cross-Country Skiers' Double Poling Technique)

  • 최슬비;류재균
    • 한국운동역학회지
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    • 제21권3호
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    • pp.259-268
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    • 2011
  • This study aimed to examine the kinematic characteristics of the national elite cross-country skiers' double poling technique and to provide the quantitative data for better performance. Four male elite cross-country roller skiers skied maximum velocity with Double Pole technique. The cycle characteristics with angles of elbow, hip, and knee joint were analyzed. The results showed that CM velocity of the body was increased with the third cycle, the cycle time and length were also increased. The poling time and recovery time rate showed with 32.79%, 67.44% respectively. The joint angles with elbow, hip and knee were $106^{\circ}$, $133.14^{\circ}$ $156.87^{\circ}$ at pole in event, $158.94^{\circ}$, $65.7^{\circ}$, $140.19^{\circ}$ at pole out event. Elite skiers should decrease double poling time rate and increase recovery time rate in order to improve the double poling performance. The cycle length and velocity of the double poling should be increased for the better performance. The elbow angle should be minimized at pole in event with maximum extension until pole out event. The hip and knee angles should be increased for the recovery phase.

국가대표 크로스컨트리 스키 선수들의 Start & Finish 구간에 대한 Double poling 기술의 운동학적 분석 (The Kinematic Analysis about Double Poling Technique of National Cross-Country Skiers at Start & Finish Phases)

  • 최슬비;류재균
    • 한국운동역학회지
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    • 제22권1호
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    • pp.95-104
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    • 2012
  • The purpose of this study targeted to national cross-country skiers representatives was to implement hypothetical experiment on their patterns of the movements and analysis on kinematic variables occurred while double polling was conducted between starting and finishing phase of 56 meters. Furthermore, it aimed to provide a set of quantitative data to illustrate how to improve one's skill and performance of sprint. In our experiments, we conducted 3-dimension analysis of cycle characteristics, joint angle(hip, knee and elbow), and pole angle. The results showed that at the starting phase, the players did not show a significant difference in attributes of time and distance. In heat 1 where elbow angle and polling starts, the pole angle was noticeably high in heat 1. At the finishing phase, there was a considerable distinction with a high frequency in performing a short polling time and high speed in heat 3. The players showed large extension between the flexion and of the hip angle which indicates high contribution given from the movement of lower body(hip, knee).

Efficiency assessment of L-profiles and pipe fore-poling pre-support systems in difficult geological conditions: a case study

  • Elyasi, Ayub;Moradi, Taher;Moharrami, Javad;Parnian, Saeid;Mousazadeh, Akbar;Nasseh, Sepideh
    • Structural Engineering and Mechanics
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    • 제57권6호
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    • pp.1125-1142
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    • 2016
  • Tunneling is one of the challenging tasks in civil engineering because it involves a variety of decision making and engineering judgment based on knowledge and experience. One of the challenges is to construct tunnels in risky areas under shallow overburden. In order to prevent the collapse of ceilings and walls of a large tunnels, in such conditions, either a sequential excavation method (SEM) or ground reinforcing method, or a combination of both, can be utilized. This research deals with the numerical modeling of L-profiles and pipe fore-poling pre-support systems in the adit tunnel in northwestern Iran. The first part of the adit tunnel has been drilled in alluvial material with very weak geotechnical parameters. Despite applying an SEM in constructing this tunnel, analyzing the results of numerical modeling done using FLAC3D, as well as observations during drilling, indicate the tunnel instability. To improve operational safety and to prevent collapse, pre-support systems, including pipe fore-poling and L-profiles were designed and implemented. The results of the numerical modeling coupled with monitoring during operation, as well as the results of instrumentation, indicate the efficacy of both these methods in tunnel collapse prevention. Moreover, the results of modeling using FLAC3D and SECTION BUILDER suggest a double angle with equal legs ($2L100{\times}100{\times}10mm$) in both box profile and tee array as an alternative section to pipe fore-poling system while neither $L80{\times}80{\times}8mm$ nor $2L80{\times}80{\times}8mm$ can sustain the axial and shear stresses exerted on pipe fore-poling system.

다양한 웨어러블 디바이스를 활용한 크로스컨트리스키 실시간 위치 추적: 사례 연구 (Real-time Location Tracking Analysis of Cross-country Skiing using Various Wearable Devices: A Case Study)

  • Hwang, Jinny;Kim, Jinhae;Kim, Hyeyoung;Moon, Jeheon;Lee, Jusung;Kim, Jinhyeok
    • 한국운동역학회지
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    • 제29권1호
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    • pp.1-8
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    • 2019
  • Objective: The purpose of this study was to confirm that the cross-country ski sprint course in PyeongChang, where the 2018 Winter Olympics course was to utilize wearable devices equipped with inertial measurement unit (IMU), global positioning system (GPS) and heart rates sensor. Method: For the data collection, two national level cross-country (XC) skiers performed classic technique on the entire sprint course. We analyzed cycle characteristics, range of motion on double poling (DP) technique, average velocity, and displacement of 3 points according to the terrain. Results: The absolute cycle time gradually decreased during starting, middle and finish sections. While the length of the DP increased and the heart rates tended to increase for men skier. In addition, the results indicated that range of motion of knee joint during starting and finish section decreased more than middle section. The errors of latitude and longitude data collected through GPS were within 3 m from 3 points. Conclusion: Through the first case study in Korea, which analyzed the location and condition of XC skiers in the entire sprint course in real time, confirmed that feedback was available in the field using various wearable sensors.

곁사슬에 모노-아조벤젠기를 갖는 비선형 광학 폴리퀴논디이민의 합성과 성질에 관한 연구 (The Synthesis and Properties of Nonlinear Optical Polyquinonediimine Containing Mono-Azobenzene Group in the Side Chain)

  • 이상배;양정성;박동규
    • 폴리머
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    • 제24권6호
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    • pp.737-743
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    • 2000
  • 본 연구에서는 곁사슬에 mono-azobenzene 그룹을 갖는 polyquinonediimine (PQDI)을 TiCl$_4$ 존재 하에서 축합 중합법으로 합성하였다. 합성된 단량체와 고분자는 FT-IR과 $^1$H-NMR로 확인하였으며, 특히 적외선 스펙트럼에 의하여 고분자의 특성 피크인 1625$cm^{-1}$ / 부근에서 >C=N 이중결합이 형성되었음을 보여 주었다. Mono-azobenzene이 양쪽 측쇄에 붙어있는 PQDI는 유전상수가 작은 극성용매에는 극히 부분적으로 용해성을 가졌으며 비극성 용매에는 거의 녹지 않았으나 황산과 $CH_3$SO$_3$H와 같은 강산에는 좋은 용해성을 보여주었다. GPC에 의한 분자량 분포는 1.74로 제법 넓은 분포를 가졌고, X-ray분석으로부터 날은 각도의 영역에서 부분적 결정성을 보였으며, 1$25^{\circ}C$로 열처리 후에는 무정형 고분자임을 확인하였다. 고분자의 열 분석에 의하면, TGA측정에서는 308$^{\circ}C$에서 분해온도가 나타나므로 열적으로 안정한 고분자임을 알 수 있으며, DSC에 의한 T$_{g}$ 값은 1$25^{\circ}C$이었고, mono-azobenzene이 유도체로 결합된 PQDI를 이 온도에서 분극 처리시킨 NLO-active한 PQDI의 SHG값은 8.6 pm/V 값을 가졌고, 경시 안정성의 측정 결과 초기 상태에서는 서서히 감소하는 경향을 보이나 100시간 후에는 안정성을 나타내었다.

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