The Horizontal Curved Geometric Design with Autocad® Civil 3D on Jalan Muara Wahau, East Kalimantan
DOI:
https://doi.org/10.55324/ijoms.v1i1.386Keywords:
road, geometric road, horizontal alignment, autoCAD civil 3D®Abstract
Roads connect one area to another. Therefore, an excellent geometric design of the road can reduce the percentage of accidents. For this reason, AutoCAD Civil 3D® is used as a means of planning. This road planning aims to plan the horizontal alignment of the road connecting the main road with kpc Tanjung bara (coal port). This street is located on Jalan Poros Muara Wahau, East Kalimantan. This study used secondary data obtained through google earth and global mapper. Then the data is processed using qualitative research methods. This study found that the road section length was 6,086 m or 6,086 km (STA 0 + 000 – 6 + 086). Bends P1 on (STA 2+680 – 3+260) are planned with the type S-C-S bend. The bend has an R of 600 meters, an e of 4.3%, and a Ls of 119 meters.
References
Adiputra, D. S., Rifai, A. I., & Bhakti, S. K. (2022). Design of Road Geometric with AutoCAD 2D®: A Case Wirosari-Ungaran Semarang, Indonesian. Citizen: Indonesian Multidisciplinary Scientific Journal, 2(5), 729-738.
Akay, A. E., Serin, H., Sessions, J., Bilici, E., & Pak, M. (2021). Evaluating the effects of improving forest road standards on economic value of forest products. Croatian Journal of Forest Engineering: Journal for Theory and Application of Forestry, 254-258.
Alamgir, M., Campbell, M. J., Sloan, S., Suhardiman, A., Supriatna, J., & Laurance, W. F. (2019). High-risk infrastructure projects pose imminent threats to forests in Indonesian Borneo. Scientific Reports, 9(1), 1-10.
Arifin, A., & Rifai, A. I. (2022). Geometric Design of Upper Cisokan Hydroelectric Power Plant Access Road with AutoCAD Civil 3D® (STA 3+ 000-STA. 4+ 800). Citizen: Indonesian Multidisciplinary Scientific Journal, 2(5), 851-858.
Autodesk Inc. (2022, 09 15). Civil 3D: Comprehensive detailed design and documentation software for civil infrastructure. Retrieved from Autodesk: https://www.autodesk.eu/products/civil-3d/overview?term=1-YEAR&tab=subscription
Chairuddin, F. (2017). Experimental study on the impact of rain water puddle of asphalt pavement structure. In AIP Conference Proceedings, (Vol. 1903, No. 1, p. 020001). AIP Publishing LLC.
Chakole, H., & Wadhai, P. J. (2022). The comparison of geometric design using Civil 3D software and manual. International Journal for Modern Trends in Science and Technology 2022, 8(06), pp, 123-131.
Philanthropist, W. B., Rifai, A. I., Ramadan, A. H., & Isradi, M. (2021). Analysis of Pedestrian Facility Services on Shopping Mall Areain Satellite City During Pandemic COVID-19. ADRI International Journal of Sciences, Engineering and Technology, 6(2), 99-107
Dodson, E. M. (2021). Challenges in forest road maintenance in North America. Croatian Journal of Forest Engineering: Journal for Theory and Application of Forestry Engineering, 42(1), 107-116.
Gaikawad, P., & Ghodmare, S. D. (2020). A Review-Geometric Design of Highway with the Help of AutoCAD Civil 3D® . International Journal for Research in Applied Science and Engineering Technology, 8(5).
Gangwa, M. T., & Deulkar, V. (2020). A Review on Effect of Highway Geometric Elemnets on Accident Modeling. Volume 6, Issue 1, 153-157.
Gerring, J. (2017). Qualitative methods. Annual review of political science, 20, 15-36.
Government of Canada. (2022, 09 19). Natural Resources Canada. Retrieved from Statical Data: https://cfs.nrcan.gc.ca/statsprofile/overview/CA
Gunawan, R. Y., Rifai, A. I., & Irianto, M. A. (2022). AutoCAD 2D® for Geometric Design of Big Flygi–Pematang Bake Highway (Sta. 28+ 650–Sta. 53+ 650). Citizen: Indonesian Multidisciplinary Scientific Journal, 2(5), 757-765.
Heinimann, H. R. (2017). Forest road network and transportation engineering–state and perspectives. Croatian Journal of Forest Engineering: Journal for Theory and Application of Forestry Engineering, 38(2), 188-173.
Iskandar, D., Hadiwardoyo, S. P., Sumabrata, R. J., & Fitriasari, I. N. (2018). Road maintenance strategy with characteristic of drainage condition based on pavement performance. In AIP Conference Proceedings , (Vol. 1977, No. 1, p. 040010).
Johnston, M. P. (2017). Secondary data analysis: A method of which the time has come. Qualitative and quantitative methods in libraries, 3(3), 619-626.
Kadim, Z., Johari, K. M., Samaon, D. F., Li, Y. S., & Hon, H. W. (2020). Real-time deep-learning based traffic volume count for high-traffic urban arterial roads. In 2020 IEEE 10th Symposium on Computer Applications & Industrial Electronics (ISCAIE), (pp. 53-58).
Khattak, W., M., De Backer, H., De Winne, P., Brijs, T., & Pirdavani, A. (2021). Investigating the impact of road cross-section elements on crash occurrence in urban areas. 2021 TRB Annual Meeting (p. 1). Virtual Event, Washington, DC: The National Academies of Sciences, Engineering, and Medicine, USA.
Mandal, M., Pawade, P., & Sandel, P. (2019). Geometric design of highway using Civil 3D. International Journal of Advance Research, Ideas and Innovations in Technology, 5(3).
Mannering, F. L., & Washburn, S. S. (2020). Principles of highway engineering and traffic analysis. Florida: John Wiley & Sons.
Miji?, N. (2018). Application of the airborne LIDAR technology on the quarry using AutoCAD Civil 3D® software. In International Symposium on Innovative and Interdisciplinary Applications of Advanced Technologies, (pp. 43-51). Springer, Cham.
Ministry of Environment and Forestry of the Republic of Indonesia. (2021). Regulation of the Minister of Environment and Forestry of the Republic of Indonesia. Forest Management and Forest Management Plan Preparation, As well as Forest Utilization in Protected Forests and Production Forests, 15-16.
Ministry of Public Works and Public Housing of the Republic of Indonesia. (2021). Highway Design Standard of Indonesia 2021. Circular No:20/SE/DB/2021, 87.
Monnet, D., Hare, W., & Lucet, Y. (2020). Fast feasibility check of the multi-material vertical alignment problem in road design. Computational Optimization and Applications, 75(2), 515-536.
Nurjannah, S. N., Rifai, A. I., & End, A. F. (2022). Geometric Design for Relocation of National Road Sei Duri-Mempawah Section, West Kalimantan using AutoCAD 2D®. Citizen: Indonesian Multidisciplinary Scientific Journal, 2(5), 692-702.
Paikun, P., SP, R. W., Destaman, F., & Winardi, D. (2021). Road Geometric Feasibility In Road Sagaranten–Tegalbuleud Km. BDG 175+ 100. ASTONJADRO: CEAESJ, 10(1), 117-134.
Pandey, S., Atul, E., & Bajpai, Y. (2019). PLANNING, DESIGNING AND PROPOSING A FLYOVER ROAD USING AUTOCAD CIVIL 3D® SOFTWARE. PLANNING, 5(08).
Raji, S. A., Zava, A., Jirgba, K., & Osunkunle, A. B. (2017). Journal of Multidisciplinary Engineering Science and Technology (JMEST). Geometric Design of a Highway Using AutoCAD Civil 3D® , 4(6).
Rifai, A. I., Hadiwardoyo, S. P., Correia, A. G., & Pereira, P. A. (2016). Genetic Algorithm Applied for Optimization of Pavement Maintenance under Overload Traffic: Case Study Indonesia National Highway. Applied Mechanics and Materials (Vol. 845) ( pp. 369-378). Trans Tech Publications Ltd.
Rifai, A. I., Hadiwardoyo, S. P., Correia, A. G., Pereira, P., & Cortez, P. (2015). The data mining applied for the prediction of highway roughness due to overloaded trucks. International Journal of Technology, 6(5), 751-761.
Rizki, R., Rifai, A. I., & Djamal, E. Z. (2022). Geometric Redesign of Jalan Cisauk–Jaha, Banten with Manual Method (Sta. 0+ 000-Sta. 0+ 350). Citizen: Indonesian Multidisciplinary Scientific Journal, 2(5), 859-864.
Rizqi, M., Rifai, A. I., & Bhakti, S. K. (2022). Design of Road Geometric with AutoCAD Civil 3D®: A Case Jalan Kertawangunan–Kadugede, Kuningan-Indonesia. Citizen: Indonesian Multidisciplinary Scientific Journal, 2(5), 879-887.
S, M., J, A., Vishwas, J. S., & R, M. G. (2021). Journal Sapthagiri College of Engineering, Bangalore, India. Geometric Design and Validation of Road Corridor Modelling Using Civil 3d Software, 8.
Shevriyanto, B., Rifai, A. I., & Chiang, Z. (2021). Street Furniture in Batam: Inspirations from Natural and Cultural Inheritance. ????, (144), 47-51.
Sloan, S., Alamgir, M., Campbell, M. J., Setyawati, T., & Laurance, W. F. (2019). Development corridors and remnant-forest conservation in Sumatra, Indonesia. Tropical Conservation Science, 12.
Stephen, S., Rifai, A. I., & Nasrun, N. (2022). Implementation Autocad® Civil 3D for Horizontal Alignment Design of Indramayu-Jatibarang Highways. Citizen: Indonesian Multidisciplinary Scientific Journal, 2(5), 739-747.
Sushma, M. B., & Maji, A. (2020). A modified motion planning algorithm for horizontal highway alignment development. Computer?Aided Civil and Infrastructure Engineering, 35(8), .818-831.
Van Rensburg, J., & Krygsman, S. (2020). Funding for roads in South Africa: Understanding the principles of fair and efficient road user charges. Transportation Research Procedia, 48, 1835-1847.
Veer, S. P., Gupte, S., & Juremalani, J. (2018). A Review of Literature on Geometric Design of Highway. International Research Journal of Engineering and Technology (IRJET) Volume, 5.
Yuniar, D. (2020). Optimization of coal transportation travel time based on driver behavior, topography and quality of road infrastructure. Malang: Doctoral dissertation, Universitas Brawijaya.
Zhang, X., Hu, Y., & Lin, Y. (2020). The influence of highway on local economy: Evidence from China's Yangtze River Delta region. Journal of Transport Geography, 82.
Zulfa, N., Rifai, A. I., & Taufik, M. (2022). Road Geometric Design used AutoCAD Civil 3D® ®: A Case Study Jalan Campaka-Wanaraja Garut, Indonesia. Citizen: Indonesian Multidisciplinary Scientific Journal, 2(5), 843-850.
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