• 제목/요약/키워드: 공항 포장

검색결과 63건 처리시간 0.024초

국가 사회기반시설물에 대한 거시적 관점의 미래 유지보수 투자규모에 관한 연구 (A Study on Macroscopic Future maintenance Investment Scale for National SOC Infrastructure)

  • 이동현;전태현;김지원;박기태;김용수
    • 한국구조물진단유지관리공학회 논문집
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    • 제21권4호
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    • pp.87-96
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    • 2017
  • 국가 전략적 차원에서 전체 사회기반시설물에 대해 미래에 필요한 유지보수 예산 파악하는 것은 매우 중요한 부분이다. 그러나 현재 국내에서는 전체 대규모 시설물에 적용할 수 있는 유지보수비용 예측 기법이 거의 전무한 실정이다. 본 연구에서는 현재 국내에서 가용한 자료와 적용 가능한 예측모델을 토대로 우리나라 전체 향후 SOC 시설물에 대한 향후 유지보수 투자 규모를 예측하였다. 실제 지출비용과 비교하여 가장 적합한 예측모델을 선정하고 관리주체에서 과거에 지출한 유지보수비용 자료를 이용하여 일부 모델은 개발하여 교량, 터널, 포장, 항만, 댐, 공항, 상수도, 하천, 항만 등의 사회기반시설물에 대한 최적의 미래 유지보수 비용을 산출하였다. 앞으로 10년간 총 비용예측결과, 8종의 사회기반시설물에 대하여 약 23조원이 필요한 것으로 나타났으며, 가장 비용이 크게 발생하는 시설물은 도로포장, 도로교량으로 나타났다.

공항포장용 순환골재의 처리방법별 경제성 분석 (Cost Analysis of Recycled Aggregate Production on Airport Pavement)

  • 강승민;이활웅;양성철
    • 한국도로학회논문집
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    • 제16권5호
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    • pp.39-47
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    • 2014
  • PURPOSES : This study aimed to analyze economic effect of recycled aggregate production on job-site airport pavement. METHODS : The validation of site recycling for waste concrete as economic efficiency is analyzed through the case study of site recycling at an O airport pavement construction. The break-even point for the cost of site recycling was estimated according to two different waste concrete processing methods such as job-site recycling and processing on commission (or plant). RESULTS : Job-site recycling cost decreases as the use rate of job-site recycled concrete aggregate increases, or the amount of concrete waste increases, but transporting distance decreases. It was shown in an O airport case that as the use rate of job-site recycled concrete aggregate exceeds 61.4 %, the job-site recycling cost is cheaper than the processing cost on commission. CONCLUSIONS : The results of this study can utilize basic data of feasibility for site recycling of waste concrete on airport pavement construction.

줄눈형식에 따른 공항 콘크리트 포장 하중전달율 비교 (Comparison with Load Transfer Efficiency for Joint Types in Airport Concrete Pavements)

  • 안지환;전성일;권수안;김민우
    • 한국도로학회논문집
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    • 제16권3호
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    • pp.9-20
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    • 2014
  • PURPOSES : This study is to compare load transfer efficiency of key joint and dowel joint for airport concrete pavement. METHODS : As AC150/5320-6D of FAA's [Advisory Circular] was changed into AC150/5320-6E, Key joint type of rigid pavement were excluded from Construction Joints. LTE(Load Transfer Efficiency) of dowel joint and key joint were compared by times and seasons through pavement temperature measurement, ocular investigation and HWD measurement. RESULTS : For the joint performance grade of No. 2(The second) runway of airport, 12% of poor rate was observed in key joint and 2% of poor rate in dowel joint. Poor rate of key joint was increased to 17%, if only No. 3~No. 6 slabs, which are mostly loaded from the airplanes, were applied for the study. In apron area, LTE poor rate of key joint was high in winter, and LTE poor rate of dowel joint was at least above 'Fair' grade. In summer, 'Fair' for key joint, 'Acceptable' for dowel joint appeared. CONCLUSIONS : As results, dowel joint was superior than key joint for LTE. Deviations of seasons and times were smaller in dowel joint's result. And LTE in winter was lower than LTE in summer.

인천국제공항 아스팔트 포장 보수시기 결정 사례 연구 (Case Study on Deciding a Time for Repairing Asphalt Pavement of Incheon International Airport)

  • 이재호;김장락;문형철;조남현
    • 한국도로학회논문집
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    • 제15권6호
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    • pp.49-60
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    • 2013
  • PURPOSES : The evaluation of the pavement condition of the asphalt concrete pavement of No. 2 runway of Inchon International Airport through PMS, a supporting system for making a decision of pavement, maintenance and repair, was made, and the proper time for repair according to the PCI reduction rate was suggested. METHODS : By comparing and analyzing the evaluation results of pavements built in 2009, 2010, 2011, PCI change in each facility (No. 2 runway, C parallel taxiway, connection taxiway) was calculated. By applying the calculated change to PCI deduction rate model, the pavement condition of the target sections was estimated, and then the necessary section and time for repair were chosen. RESULTS : After careful consideration of the time for pavement and maintenance, based on the result of PCI prediction, it was estimated that the southern takeoff and landing section of No. 2 runway was required to be repaired in 2012; connection taxiway in 2013; and C parallel taxiway in 2014; however, the section which is the main moving route of connection taxiway and C parallel taxiway was needed to be repaired in 2012. CONCLUSIONS : For maintenance and repair of airport pavements, the optimal alternative should be chosen by considering economics and operability, via examining the time for repair and the aspect of management all together on the basis of this study.

공항 활주로 포장용 친환경 콘크리트의 활용 방법 (A Sustainable Concrete for Airfield Rigid Pavements)

  • 살라스-몬토야 안드레스;정철우
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2021년도 봄 학술논문 발표대회
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    • pp.23-24
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    • 2021
  • The use of recycled concrete aggregates (RCA) as a substitute for natural aggregates in new concrete produces both economic and environmental advantages. Most of the RCA applications for pavements have been primarily applied to support layers for roads and airfields. This paper summarizes a work completed at the University of Illinois in partnership with the O'Hare Modernization Program to examine the effect of coarse and fine RCA on the concrete's fresh and hardened properties for airfield rigid pavement applications. Ten different RCA concrete mixtures were prepared with the incorporation of different percentages of RCA fines as well as replacement of cement with high volume percentages of supplementary cementitious materials such as Class C fly ash and ground granulated blast furnace slag to improve the workability and long-term properties of RCA concrete. All the mixes on this stage included 100% recycled coarse aggregates and the Two-Stage Mixing Approach was used as a mixing procedure. Based on the results obtained in the research, mixes with high percentages of recycled fine and coarse aggregates could be used for construction of airfield concrete pavements in conjunction with supplementary cementitious materials

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인천국제공항 착륙대 잔디 식재 지반 조성을 위한 영종도 매립 토양 개량 (Soil amendment for turfgrass vegetation of the Incheon International Airport runway side on the Yeongjong reclaimed land)

  • 류순호;정영상;주영규;최병권;우헌영;이태영
    • 한국토양비료학회지
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    • 제35권2호
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    • pp.93-104
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    • 2002
  • 인천 영종도와 영유도를 잇는 새로운 간척지에 건설되고 있는 인천국제공의 녹지 조경 식재 지반을 조성하는 데 필요한 기술적 지표와 효율적 관리 방안을 마련하기 위한 현지 연구가 1996년 6월부터 1998년 6월까지 24개월간 수행되었다. 인천국제공항 건설 부지 중 1995년 8월에 매립이 완료된 여객터미날 주차장 예정지에 8 ha의 시험포장을 조성하였다. 갯벌 지역에 대한 연구를 위하여 자생잔디 보호 구역 부근에 염생 식물 종자 채취 구역을 별도로 1.5ha 조성하였다. 조성된 $492{\times}190m^2$의 시험 포장에 암거 배수의 효과 및 적절한 배수 간격을 설정하기 위해 무암거배수구(A), 암거 간격 45m구(B), 암거간격 22.5m구(C)를 설치하였다. 배수 시설은 처리는 단반복으로 하였다. 토양 개량을 위한 식재 지반 처리는 준설 모래로 매립하여 지균작업을 하여 매립고를 맞춘 무처리를 두고, 산토 5-cm 복토구와 20-cm 복토구 처리, 화학비료 사용과 유기질비료의 시용, 인공 토양 조성구, 그리고 보습재의 처리 등을 조합하여 17개 처리를 하였다. 식재된 잔디는 5종으로 한국형 잔디로 들잔디, 영종도 자생 갯잔디, 도입 한지형 잔디로 한지형 혼파I(tall fescue 30%, kentucky blue grass 40%, perenial ryegrass 30%), 한지형 혼파II(tall fescue 40%, perenial ryegrass 20%, fine fescue 20%, alkaligrass 20%)이었다. 시험 포장의 토성은 모래로 염농도가 높았고, 유기물 함량과 비료 성분 함량이 낮아 비옥도가 낮은 토양이었다. 투수속도는 빠른 토양이었다. 암거 배수 후 제염은 빨랐다. 잔디 식재 후 암거 배수 처리간에는 토양의 투수속도가 매우 빠른 때문으로 잔디 생육도에 큰 차이를 보이지 않았다. 토양 개량 처리에 따른 잔디의 피복도와 생육도를 비교한 결과 들잔디 영양체 식재구가 가장 좋았고, 한국잔디도 양호하였다. 양종도 자생 갯잔디의 피복도와 생육도는 이들보다 떨어졌다. 도입 잔디 한지형 혼파는 한국잔디 영양체 식재구에 비하여 떨어졌는 데, 이는 여양체 증식과 파종의 차이로 판단된다. 산토 20cm 복토구와 5cm 복토구의 잔디 생육을 비교한 결과 한국잔디 생육은 20cm복토구에서 좋았으나, 화하비료 사용시 도입 잔디 혼파구에서는 큰 차이가 없었다. 토양 개량재 시용구와 화학비료 시용구간에 큰 생육의 차이가 없었다. 축분 유기질 비료의 사용구는 화학비료 사용구에 비하여 한국잔디 영양체 식재에는 효과가 있었으나, 도입잔디 혼파에는 차이가 없었다. 보슘재 처리는 무처리에 비해 효과가 있었고, 산토 복토 보다는 미흡하나, 큰 차이는 없어, 산토 부족시 대체 효과가 있었다. 이 연구의 결과 인천공항 착륙대 잔디 식재 지반 조성에는 준설토 특성 상 암거 배수는 불필요하며, 토양 개량에는 한국 잔디 영양체가 식재에 산토 5-cm를 복토하면 충분한 것으로 판단되었다. 이와 함께 축분 발효 퇴비와 복합비료 기비가 필요하며, 고밀도의 잔디가 요구되는 곳에서는 산토 20cm 복토가 바람직한 것으로 판단되었다.

공항 airside용 제설제의 기본물질에 대한 포장 영향성 평가 연구 (Pavement Impact Evaluation of Basic Materials of Airport Airside Deicers)

  • 김영웅;유광호;조창렬;조남현
    • 한국도로학회논문집
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    • 제18권6호
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    • pp.25-34
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    • 2016
  • OBJECTIVES : This is a basic research for the domestic production of airport-airside deicers. This research selected basic materials for deicers appropriate for the pavement of domestic airports by evaluating the deicing performances of basic materials used in international-standard airport deicers and their impacts on pavements. METHODS : Laboratory investigation was conducted to evaluate the asphalt surface tensile strength, concrete scaling impact, ASR impact, and deicing performances of sodium formate (NaFm), potassium formate (KFm), sodium acetate (NaAc), and potassium acetate (KAc), which are the basic de-icing materials commonly used at international airports, approved by the FAA. In addition, the analyses were also performed on the airside deicer urea, which is currently used in domestic airports. RESULTS : Laboratory investigation confirmed that sodium formate, potassium formate, sodium acetate, and potassium acetate had superior surface tensile strength, concrete scaling impact, and deicing performance compared to airside urea, but they also had greater impacts on concrete ASR. Among these materials, sodium formate had the best asphalt surface tensile strength, concrete scaling impact, and deicing performance, while also having the greatest impact on ASR; hence, mitigation plans for ASR were needed, if it were to be used as airport-airside deicer. CONCLUSIONS : It is necessary to consider additional additives to prevent ASR of concrete pavements when developing airport-airside deicers using sodium formate, potassium formate, sodium acetate, and potassium acetate.

기상과 재료 특성에 의한 공항 콘크리트 포장 팽창줄눈 간격의 적정성 검토 (Propriety Examination of Expansion Joint Spacing of Airport Concrete Pavement by Weather and Material Characteristics)

  • 박해원;정진훈
    • 한국도로학회논문집
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    • 제20권3호
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    • pp.65-73
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    • 2018
  • PURPOSES : In this study, the propriety of expansion joint spacing of airport concrete pavement was examined by using weather and material characteristics. METHODS : A finite element model for simulating airport concrete pavement was developed and blowup occurrence due to temperature increase was analyzed. The critical temperature causing the expansion of concrete slab and blow up at the expansion joint was calculated according to the initial vertical displacement at the joint. The amount of expansion that can occur in the concrete slab for 20 years of design life was calculated by summing the expansion and contraction by temperature, alkali-silica reaction, and drying shrinkage. The effective expansion of pavement section between adjacent expansion joints was calculated by subtracting the effective width of expansion joint from the summation of the expansion of the pavement section. The temperature change causing the effective expansion of pavement section was also calculated. The effective expansion equivalent temperature change was compared to the critical temperature, which causes the blowup, according to expansion joint spacing to verify the propriety of expansion joint applied to the airport concrete pavement. RESULTS : When an initial vertical displacement of the expansion joint was 3mm or less, the blowup never occurred for 300m of joint spacing which is used in Korean airports currently. But, there was a risk of blow-up when an initial vertical displacement of the expansion joint was 5mm or more due to the weather or material characteristics. CONCLUSIONS : It was confirmed that the intial vertical displacement at the expansion joint could be managed below 3mm from the previous research results. Accordingly it was concluded that the 300m of current expansion joint spacing of Korean airports could be used without blowup by controling the alkali-silica reaction below its allowable limit.

공항 콘크리트와 아스팔트 포장 간의 접속 방법 개발 (Development of a Junction between Airport Concrete and Asphalt Pavements)

  • 박해원;김동혁;정진훈
    • 한국도로학회논문집
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    • 제20권4호
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    • pp.15-20
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    • 2018
  • PURPOSES : The purpose of this study is to analyze the magnitude of shoving of asphalt pavement by junction type between airport concrete and asphalt pavements, and to suggest a junction type to reduce shoving. METHODS : The actual pavement junction of a domestic airport, which is called airport "A" was modified by placing the bottom of the buried slab on the top surface of the subbase. A finite element model was developed that simulated three junction types: a standard section of junction proposed by the FAA (Federal Aviation Administration), an actual section of junction from airport "A" and a modified section of junction from airport "A". The vertical displacement of the asphalt surface caused by the horizontal displacement of the concrete pavement was investigated in the three types of junction. RESULTS : A vertical displacement of approximately 13 mm occurred for the FAA standard section under horizontal pushing of 100 mm, and a vertical displacement of approximately 55 mm occurred for the actual section of airport "A" under the same level of pushing. On the other hand, for the modified section from airport "A" a vertical displacement of approximately 17 mm occurred under the same level of pushing, which is slightly larger than the vertical displacement of the FAA standard section. CONCLUSIONS : It was confirmed that shoving of the asphalt pavement at the junction could be reduced by placing the bottom of the buried slab on the top surface of the subbase. It was also determined that the junction type suggested in this study was more advantageous than the FAA standard section because it resists faulting by the buried slab that is connected to the concrete pavement. Faulting of the junctions caused by aircraft loading will be compared by performing finite element analysis in the following study.

공항포장 시멘트안정처리기층에 적용하기 위한 투수콘크리트 개발에 관한 기초연구 (Fundamental Study on Pervious Concrete Materials for Airport Pavement Cement Treated Base Course)

  • 김승원;오지현;장봉진;주민관;김인태;박철우
    • 한국도로학회논문집
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    • 제15권4호
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    • pp.65-73
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    • 2013
  • PURPOSES : As a research to develop a cement treated base course for an airport pavement which can enhance its drainage, this paper investigated the strength, infiltration performance and durability of the pervious concrete with respect to maximum coarse aggregate sizes and compaction methods. METHODS : This study measured compressive strength, infiltration rate, continuous porosity and freeze-thaw resistance of pervious concrete specimens, which were fabricated with five different compaction methods and different maximum aggregate sizes. In addition, in order to reduce the usage of Portland cement content and to enhance environment-friendliness, a portion of the cement was replaced with Ground Granulated Blast Furnace Slag (GGBS). RESULTS: Compressive strength requirement, 5 MPa at 7 days, was met for all applied compaction methods and aggregate sizes, except for the case of self-compaction. Infiltration rate became increased as the size of aggregate increased. The measured continuous porosities varied with the different compaction methods but the variation was not significant. When GGBS was incorporated, the strength requirement was successfully satisfied and the resistance to freezing-thawing was also superior to the required limit. CONCLUSIONS: The infiltration rate increased as the maximum size of aggregate increased but considering construct ability and supply of course aggregate, its size is recommended to be 25mm. With the suggested mix proportions, the developed pervious concrete is expected to successfully meet requirements for strength, drainage and durability for cement treated base or subbase course of an airport pavement.