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고속도로 노면퇴적물의 특성 및 도로청소에 의한 입도별 제거효율 분석
강희만 ( Heeman Kang ),김황희 ( Hwang Hee Kim ),전지홍 ( Ji-hong Jeon ) 한국물환경학회(구 한국수질보전학회) 2021 한국물환경학회지 Vol.37 No.4
The removal efficiency of road-deposited sediment (SDR) by road sweeping was analyzed by performing particle size analysis before and after road sweeping at four highways during May to December 2019. The SDR accounted for the largest proportion in the range of 250 to 850 ㎛ and the degree of its proportion had an effect on the particle size distribution curve. The particle size distribution of the collected sediments showed a similar distribution at all sites. Below 75 ㎛, the removal efficiency of SDR showed a constant value around 40%, but above 75 ㎛, it increased as the particle size increased. The removal efficiency was 82-90% (average 86%) for gravel, 66-93% (average 79%) for coarse sand, 35-92% (average 64%) for fine sand, 29-69% (average 44%) for very fine sand, 19-58% (average 40%) for silt loading, 10-59% (average 40%) for TSP, 13-57% (average 40%) for PM10, and 15-61% (average 38%) for PM2.5. SDR removal efficiency showed an average of 69% for the four highways. It was found that if the amount of SDR was less than 100 g/m2, it was affected by the road surface condition and had a large regional deviation. As such, the amount of SDR and the removal efficiency increased. The fine particles, which have relatively low removal efficiency, contained a large amount of pollutants, which is an important factor in water and air pollution. Therefore, various measures to improve the removal efficiency of fine particles in SDR by road sweeping are needed.
도로 비점오염 해석을 위한 ROADMOD개발 및 적용: 도로청소 효과 분석
강희만 ( Heeman Kang ),전지홍 ( Ji-hong Jeon ) 한국물환경학회(구 한국수질보전학회) 2021 한국물환경학회지 Vol.37 No.2
In this study, an Excel-based model (ROADMOD) was developed to estimate pollutant loading from the road and evaluate BMPs. ROADMOD employs the Chezy-Manning equation and empirical expression for estimating surface runoff, and power function for pollutant buildup, and exponential function for pollutant washoff in SWMM. The results of model calibration for buildup and washoff using observed data revealed a good match between the simulation results and the observed data. The long-term surface runoff and sediment simulated by ROADMOD demonstrated a good match with those by SWMM with 2 ~ 14% of relative error. The shorter sweeping interval (within 8 days) remarkably decreased sediment loads from the road. It was found that the effect of reducing sediment loads from the road was greatly affected not only by the sweeping interval but also by sweeping on the day before a rainfall event. The 48% of removal efficiency of sediment loads from the road was achieved with 26 times of road sweeping per year when sweeping was performed on the day before the rainfall event. A 4-day sweeping interval showed similar removal efficiency (48%) with 96 times of sweeping per year. It is considered that the road sweeping on the day before a rainfall event could maximize the effect of reducing the non-point source pollution from the road with minimization of the number of road sweeping. So, the road sweeping on the day before a rainfall event can be considered as one of the useful and best management practices (BMPs) on road.
김낙영(Kim, Nagyoung),강희만(Kang, Heeman),김홍종(Kim, Hongjong),신용석(Shin, Yongsuk),김창용(Kim, Changyong) 한국지반환경공학회 2012 한국지반환경공학회논문집 Vol.13 No.12
건설공사장에서 사용하는 주요 건설장비에 대한 소음측정을 이격거리별로 수행하였다. 특히, 작업형태에 따라 변동하는 폭이 큰 건설장비에 대해서는 작업형태를 세분화하여 소음측정을 수행하였다. 무부하 및 작업이 이루어지는 시간 동안의 옥타브밴드별 ‘A’보정 등가소음도(Leq)를 측정하였다. 소음측정결과 대부분의 건설장비가 점음원의 특성과 유사하게 나타나고 있는 것으로 분석되었다. Noise measurements were performed by distance for major construction equipment. especially, For construction equipment that large width of variations is depending on the type of work, noise measurements were performed by the detail type of work. For a time of quiescent and construction, “A” compensation equivalent noise level (Leq) were measured. Most of the construction equipment and the characteristics of the point source appears to be similar in analyzed noise measurement results.