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멀티채널 GPR 장비를 이용한 도로하부 공동의 크기 변화 분석

Analysis of the under Pavement Cavity Growth Rate using Multi-Channel GPR Equipment

  • Park, Jeong Jun (Incheon Disaster Prevention Research Center, Incheon National University) ;
  • Kim, In Dae (Department of Civil and Environmental Engineering, Incheon National University)
  • 투고 : 2019.11.04
  • 심사 : 2020.03.26
  • 발행 : 2020.03.31

초록

연구목적: 공동 성장과정 모니터링은 일반 및 관찰등급을 대상으로 공동의 규모 및 토피의 변화를 주기적으로 관찰하여 공동의 크기 변화를 관측하는 것으로서, 일반 및 관찰등급 공동을 비파괴적인 방법으로 평가하여 체계적인 공동관리방안 수립을 위한 것이다. 연구방법: GPR탐사 장비를 활용하여 취득한 노면영상 및 주변현황 영상을 시험 대상 공동조사서에 표기되어 있는 주변 현황과 GPR 탐사 레이더그램에서 해당위치의 심도별 평면과 종단 및 횡단면을 분석한다. 최초 발견 공동의 노면영상에 나타난 거리와 주변 표식을 활용하여 정확한 위치를 선정하고, 해당위치의 레이더그램을 호출하여 시험 공동을 분석한다. 연구결과: 일반 및 관찰등급의 공동 30개소에서 모니터링 시험을 실시한 결과, 9개소가 복구가 완료되었으며, 시험공동 21개소에서 규모의 변화가 나타났고, 13개소에서 규모 및 등급의 변화가 동시에 발생하였다. 결론: 노면하부 공동은 매설관의 손상, 시공불량, 지하수 유출에 의한 토사유출, 폐기물, 지반진동 등의 다양한 원인으로 발생되나, 장기적인 모니터링을 통한 시험 결과, 지하수 및 국지성 호우 등의 환경적 외부 요인이 주된 영향임을 판단 할 수 있다.

Purpose: Cavity growth process monitoring is to periodically monitor changes in common size and topography for general and observational grades to predict the rate of common growth. The purpose of this study is to establish a systematic cavity management plan by evaluating the general and observational class community in a non-destructive method. Method: Using GPR exploration equipment, the acquired surface image and the surrounding status image are analyzed in the GPR probe radargram in depth, profile, and cross section of the location. The exact location is selected using the distance and surrounding markings shown on the road surface of the initial detection cavity, and the test cavity is analyzed by calling the radar at the corresponding location. Result: As a result of monitoring tests conducted at a cavity 30 sites of general and observation grade, nine sites have been recovered. Changes in scale were seen in 21 cavity locations, and changes in size and grade occurred in 13 locations. Conclusion: The under road cavity is caused by various causes such as damage to the burial site, poor construction, soil leakage caused by groundwater leakage, waste and ground vibration. Among them, indirect factors could infer the effects of groundwater and localized rainfall.

키워드

참고문헌

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