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현장시험을 통한 도로포장 굴착복구 공사 공정별 비산먼지 배출특성 평가 KCI 등재

Evaluation of Fugitive Dust Emission Generated by Construction Process of Pavement Excavation-restoration through the Field Test

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한국도로학회논문집 (International journal of highway engineering)
한국도로학회 (Korean Society of Road Engineers)
초록

PURPOSES : The purpose of this study is to measure and analyze the fugitive dust generated by each process through field tests to develop a technology to reduce fugitive dust generated during excavation-restoration work on road pavements.
METHODS : The testbed was constructed based on a typical excavation-restoration construction section and comprised five sections for reproducibility and repeated measurements. The excavation-restoration work was divided into pavement cutting, pavement crushing, pavement removal, excavation, and restoration processes and fugitive dust generated by each process was measured. Fugitive dust (TSP, PM10, PM2.5, and PM1) was measured using a GRIMM particle spectrometer, which applies the principle of a light scattering spectrometer and can be measured in real-time.
RESULTS : Analyses of the average mass concentration of PM10 generated by the excavation-restoration process are as follows: 1286.3 μg/m³ from pavement cutting, 246.8 μg/m³ from pavement crushing, 697.0 μg/m³ from pavement removal, 747.9 μg/m³ from excavation process, and 350.6 μg/m³ from the restoration process. In addition, the average particle size distribution of the excavationrestoration construction was in the order of PM10~PM2.5 (67 %), PM1 or less (24 %), and PM2.5~PM1 (9 %). The pavement cutting process is characterized by the emission of high concentrations of fugitive dust over a short time, compared to other processes. The pavement crushing process has the characteristic of steadily generating fugitive dust for a long period, although the emission concentration is small.
CONCLUSIONS : In this study, it was found that the concentration and characteristics of fugitive dust generated during road pavement excavation-restoration works vary by process and the reduction technology for each process should be developed accordingly.

목차
ABSTRACT
1. 서론
    1.1. 연구의 배경 및 목적
    1.2. 연구의 범위 및 내용
2. 측정방법 및 테스트베드 구축
3. 굴착복구 공사 공정별 비산먼지 배출특성
    3.1. 노면 절단 공정
    3.2. 노면 파쇄 공정
    3.3. 굴착 공정
    3.4. 복구 공정
4. 굴착복구 공정별 비산먼지 발생특성 비교
5. 결론
REFERENCES
저자
  • 한수현(한국건설기술연구원) | Han Soo Hyun
  • 양성린(한국건설기술연구원) | Yang Sung Lin
  • 이종원(한국건설기술연구원) | Lee Jong Won
  • 백철민(한국건설기술연구원) | Baek Cheol Min 교신저자