• Title/Summary/Keyword: Porous Asphalt

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Experimental Study on Rainfall Runoff Reduction Effects by Permeable Polymer Block Pavement (투수성 폴리머 블록 포장에 의한 우수 유출 저감 효과에 관한 실험적 연구)

  • Sung, Chan-Yong;Kim, Young-Ik
    • Journal of The Korean Society of Agricultural Engineers
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    • v.54 no.2
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    • pp.157-166
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    • 2012
  • Most of the roads are paved with impermeable materials such as asphalt concrete and cement concrete, and in the event of heavy rainfall, rainwater directly flows into river through a drainage hole on the pavement surface. This large quantity of rainwater directly spilled into the river frequently leads to the flooding of urban streams, damaging lowlands and the lower reaches of a river. In recent years there has been a great deal of ongoing research concerning water permeability and drainage in pavements. Accordingly, in this research, a porous polymer concrete was developed for permeable pavement by using unsaturated polyester resin as a binder, recycled aggregate as coarse aggregate, fly ash and blast furnace slag as filler, and its physical and mechanical properties were investigated. Also, 3 types of permeable polymer block by optimum mix design were developed and rainfall runoff reduction effects by permeability pavement using permeable polymer block were analyzed based on hydraulic experimental model. The infiltration volume, infiltration ratio, runoff initial time and runoff volume in permeability pavement with permeable polymer block of $300{\times}300{\times}80$ mm were evaluated for 50, 100 and 200mm/hr rainfall intensity.

Analysis of Traffic Noise for Single and Double Layered Porous Pavement with SPB Method -National Route 1, Sejong-Si Section- (SPB측정법에 의한 복층 및 단층 다공성포장의 소음분석 -국도 1호선 세종시 구간-)

  • Yoo, In-Kyoon;Lee, Su-Hyung;Han, Dae-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.9
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    • pp.92-102
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    • 2020
  • Porous pavement (PP) has attracted attention as a new alternative measure against road traffic noise. PP refers to pavement that reduces the fines in the asphalt mixture to form voids. These voids can reduce traffic accidents and friction noise. For active application, verification of the noise reduction effect is required. In this study, the noise reduction of single-layer PP(SLPP) and double layer PP(DLPP) was analyzed. First, the Sejong section was selected, and traffic noise was measured using the SPB method on the roadside. The traffic volume, speed, and mixing ratio of large vehicles were measured. As a result, the DLPP was evaluated to be 7.95 dB(A) smaller on average and 7.57dB(A) smaller at the 95% reliability level than the SLPP. The traffic volume was more influential than the speed and the mixing rate of large vehicles. As the traffic volume increased, the noise increased, but the difference in noise between the two pavements decreased gradually. The results showed that the most effective way to reduce road traffic noise is to change the road pavement rather than reduce traffic speed, restrict traffic for heavy vehicles, or reduce traffic volume.

Runoff Reduction Effect Analysis of Porous Asphalt Using Rainfall Simulator of Movable-Assemble Type (이동형 강우모의장치를 이용한 투수성 아스팔트 유출저감 효과 분석)

  • Jang, Youngsu;Park, Jaerock;Chun, Jonghyun;Park, Jaehyun;Shin, Hyunsuk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.382-382
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    • 2018
  • 최근 기후변화 및 도시화로 인해 집중호우와 도시 내의 불투수층이 증가하고 있으며, 현재 도심의 강우관리시스템이 한계에 달하여 수재해 피해가 급증하고 있다. 이와 같은 문제를 해결하기 위한 방안으로 저영향개발 기법이 대두되고 있으며, 본 기법은 해당 지역의 강우를 분산식 빗물처리 하여 도시 내의 수문학적 특성을 개발이전 상태로 회복 및 유지하는 기술이다. 저영향개발 기법의 종류는 투수성 포장, 옥상녹화, 빗물정원, 식생저류지, 식생화분 등이 있다. 본 연구에서는 저영향개발 기법 중 하나인 투수성 아스팔트에 대한 우수저감 효과를 분석하기 위해 경상남도 양산시 부산대학교 양산캠퍼스 그린인프라 저영향개발 센터에서 주차장형 LID 시설의 투수성 아스팔트 포장과 대조군인 불투수 콘크리트 포장을 실험대상으로 선정하였다. 포장체는 $10.85m(L){\times}2.3m(B){\times}0.9 m(H)$의 크기로 원지반 침투가 없는 박스형 실험시설로써 이동형 강우모의장치를 이용하여 인공강우실험을 실시하였다. 강우모의 시에 발생하는 지표유출 및 침투유출은 각 유공관을 통해 모니터링 박스에 차집되어 실시간으로 웹사이트 상에 저장된다. 저장된 자료를 이용하여 투수성아스팔트의 첨두유출량 저감, 지체시간지연효과를 분석하였다. 분석된 결과를 통해 첨두유출량은 11%저감되었고 투수성 아스팔트와 불투수 콘크리트는 각각 3시간, 1시간 동안 유출되어 2시간의 차이를 보여준다.

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Enhancement of mechanical and durability properties of preplaced lightweight aggregate concrete

  • Bo Peng;Jiantao Wang;Xianzheng Dong;Feihua Yang;Chuming Sheng;Yunpeng Liu
    • Advances in concrete construction
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    • v.15 no.6
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    • pp.419-430
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    • 2023
  • In this study, the effect of two types of aggregates (fly ash aggregate and shale aggregate) on the density, strength, and durability of preplaced lightweight aggregate concrete (PLWAC) was studied. The results showed that the 7 - 28 days strength of concrete prepared with fly ash aggregates (high water absorption rate) significantly increased, which could attribute to the long-term water release of fly ash aggregates by the refined pore structure. In contrast, the strength increase of concrete prepared with shale aggregates (low water absorption rate) is not apparent. Although PLWAC prepared with fly ash aggregates has a lower density and higher strength (56.8 MPa @ 1600 kg/m3), the chloride diffusion coefficient is relatively high, which could attribute to the diffusion paths established by connected porous aggregates and the negative over-curing effect. Compared to the control group, the partial replacement of fly ash aggregates (30%) with asphalt emulsion (20% solid content) coated aggregates can reduce the chloride diffusion coefficient of concrete by 53.6% while increasing the peak load obtained in a three-point bending test by 107.3%, fracture energy by 30.3% and characteristic length by 103.5%. The improvement in concrete performance could be attributed to the reduction in the water absorption rate of aggregates and increased energy absorption by polymer during crack propagation.