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Theoretical Review on the Vertical Geometric Design Standards for High-speed Roadway

초고속 주행환경에서의 종단경사 설계기준에 관한 기초연구

  • 송민태 (평화엔지니어링 기술연구원) ;
  • 강호근 (평화엔지니어링 기술연구원) ;
  • 김흥래 (평화엔지니어링 기술연구원) ;
  • 이의준 (한국도로공사 스마트하이웨이사업단) ;
  • 신준수 (한국도로공사 스마트하이웨이사업단) ;
  • 김종원 (평화엔지니어링 도로부)
  • Received : 2013.05.20
  • Accepted : 2013.07.05
  • Published : 2013.08.16

Abstract

PURPOSES: The purpose of this study theoretically reviews vertical grade deriving process in super high speed environment and compares overseas design criteria with Domestic Standardization also draws suitable vertical grade design criteria of high standard for Domestic Circumstances in Korea. METHODS : By researching domestic vehicle registration status, calculating typical vehicle, using Vissim which is traffic simulation program, Speed-distance curve of the vehicle is derived under each design speed condition. Through Speed-distance curve, estimating critical length of grade and considering critical length of grade, maximum longitudinal incline is proposed. RESULTS : The result of domestic vehicle registration status, the typical vehicle for deriving vertical grade is calculated based on gravity horsepower ratio 200 lb/hp. For calculating critical length of grade, according to change speed of uphill entry, speed-distance curve is derived by using Vissim. Critical length of grade is calculated based on design speed 20 km/h criteria which is point of retardation. Estimated critical length of grade is 808 m and based on this result, maximum longitudinal incline was confirmed in the design speed between 130km/h to 140km/h. CONCLUSIONS: The case of the typical vehicle(truck) which is gravity horsepower ratio 200 lb/hp, maximum longitudinal incline 2% is desirable at the super high speed environment in the design speed between 130km/h to 140km/h.

Keywords

References

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