Analisis Geometri Jalan menggunakan Perangkat Lunak Civil 3D di Jalan Leo Mamiri Kabupaten Mimika, Provinsi Papua Tengah Road Geometry Analysis Using Civil 3D Software on Leo Mamiri Road, Mimika Regency, Central Papua Province
Main Article Content
Abstract
The limited number of studies on the application of Building Information Modeling (BIM)-based software in road geometry analysis, particularly in Central Papua with its diverse topography, underlies this research. Compliance of road geometry with national standards is crucial as it directly affects user safety and comfort. This study aims to analyze the geometric conformity of Jalan Leo Mamiri, Mimika Regency, using Autodesk Civil 3D software. A quantitative approach was applied through geometric modeling based on topographic survey data, analyzed using the horizontal alignment, vertical profile, and cross section features in Civil 3D. The findings show that several road segments do not meet geometric standards, especially at curves with small radii and longitudinal slopes exceeding the maximum threshold. These results highlight the importance of aligning road design with national standards to minimize traffic accident risks. The study concludes that Autodesk Civil 3D is effective as an analytical and visualization tool in road planning and evaluation. The implications include theoretical contributions in enriching the literature on modeling software applications in transportation engineering and practical contributions in providing recommendations for road planners, contractors, and local governments to support infrastructure development that is safe, efficient, and compliant with standards.
Keywords: Road Geometry; Autodesk Civil 3D; Horizontal Alignment; Vertical Profile; Transportation Infrastructure
Downloads
Citation Metrics & Similar Scopus Articles
-
Couto M. (2026)Exploiting topic analysis models to explore psychological dimensions in social media dataScientific Reports, 16(1)
-
Ricaldi Echevarria M.L. (2026)Educational inequalities in academic performance in secondary education in Peru: a multilevel analysisPraxis Educativa, 21
-
Rojas-Tello L. (2026)Andean Morality: An Analysis of Values in University EducationActa Scientiarum Education, 48
Article Details

Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
References
Agustian, R., Rifai, A. I., Rijaluddin, A., & Prasetijo, J. (2025). Village Road Geometric Design Using AutoCAD® CIVIL 3D: The Case of Majalengka, Indonesia. Engineering Proceedings, 84(1), 8. https://doi.org/10.3390/engproc2025084008
Ahmed, F., Thompson, J., Kim, D., Huynh, N., & Carroll, E. (2023). Evaluation of pavement service life using AASHTO 1972 and mechanistic-empirical pavement design guides. International Journal of Transportation Science and Technology, 12(1), 46–61. https://doi.org/10.1016/j.ijtst.2021.11.004
Andito, I. R., Rifai, A. I., & Akhir, A. F. (2022). The Design of Alignment Horizontal Using Indonesia Highway Design Standard: A Case of Jalan Babat – Tapen, East Java. Indonesian Journal of Multidisciplinary Science, 1(1), 199–210. https://doi.org/10.55324/ijoms.v1i1.383
Chen, J., Zhao, C., Jiang, S., Zhang, X., Li, Z., & Du, Y. (2023). Safe, Efficient, and Comfortable Autonomous Driving Based on Cooperative Vehicle Infrastructure System. International Journal of Environmental Research and Public Health, 20(1), 893. https://doi.org/10.3390/ijerph20010893
Chen, Z. (2023). The Impact of the Belt and Road Infrastructure Development on the Economic Growth of the Partner Countries. Global Journal of Emerging Market Economies, 15(2), 254–272. https://doi.org/10.1177/09749101231167454
Chonpatathip, S. (2023). Earthwork Volume Measurement in Road Construction Using Unmanned Aerial Vehicle (UAV). International Journal of Geoinformatics, 19(12), 51–64. https://doi.org/10.52939/ijg.v19i12.2977
Joshua, J., & Rifa’i, A. I. (2023). Road Geometry Horizontal Alignment Planning Using Manual Design Method (Case Study Highway Kejayaan District – Pasrepan District, Pasuruan Regency, East Java STA 2+566 to STA 5+164). LEADER: Civil Engineering and Architecture Journal, 1(3), 275–288. https://doi.org/10.37253/leader.v1i3.8298
Khanani, R. S., Adugbila, E. J., Martinez, J. A., & Pfeffer, K. (2021). The Impact of Road Infrastructure Development Projects on Local Communities in Peri-Urban Areas: The Case of Kisumu, Kenya and Accra, Ghana. International Journal of Community Well-Being, 4(1), 33–53. https://doi.org/10.1007/s42413-020-00077-4
Kistelegdi, I., Horváth, K. R., Storcz, T., & Ercsey, Z. (2022). Building Geometry as a Variable in Energy, Comfort, and Environmental Design Optimization—A Review from the Perspective of Architects. Buildings, 12(1), 69. https://doi.org/10.3390/buildings12010069
Krisdiyanto, A. (2023). STUDI PERBANDINGAN FLEXIBEL PAVEMENT ANTARA METODE AASHTO DENGAN METODE BINA MARGA 2017. Jurnal Impresi Indonesia, 2(7), 673–686. https://doi.org/10.58344/jii.v2i7.3205
Krstačić, R., Žužić, A., & Orehovački, T. (2024). Safety Aspects of In-Vehicle Infotainment Systems: A Systematic Literature Review from 2012 to 2023. Electronics, 13(13), 2563. https://doi.org/10.3390/electronics13132563
Kussl, S., & Wald, A. (2023). Smart Mobility and its Implications for Road Infrastructure Provision: A Systematic Literature Review. Sustainability, 15(1), 210. https://doi.org/10.3390/su15010210
Maulana, S. H., Rifai, A. I., & Isradi, M. (2022). The Horizontal Curved Geometric Redesign on Jalan Kayu Api Kuala Penaso, Riau Using the Autocad Civil 3d® Method. Indonesian Journal of Multidisciplinary Science, 1(1), 318–330. https://doi.org/10.55324/ijoms.v1i1.391
Ruslan, N. A. I., Amer, N. H., Hudha, K., Kadir, Z. A., Ishak, S. A. F. M., & Dardin, S. M. F. S. (2023). Modelling and control strategies in path tracking control for autonomous tracked vehicles: A review of state of the art and challenges. Journal of Terramechanics, 105, 67–79. https://doi.org/10.1016/j.jterra.2022.10.003
Saedi, H., Abdi Kordani, A., & Divandari, H. (2024). Improving safety in rural highways horizontal curves using geometric design consistency evaluation criteria based on operating speed modeling. Innovative Infrastructure Solutions, 9(5), 134. https://doi.org/10.1007/s41062-024-01428-2
Tumangger, R., Agustina, R., & Balqis, T. A. (2024). Implementasi Building Information Modelling Menggunakan Software Infraworks Untuk Perencanaan Jalan: Studi Kasus Ruas Jalan Politeknik Negeri Lampung. Jurnal Informasi, Sains Dan Teknologi, 7(1), 94–101. https://doi.org/10.55606/isaintek.v7i1.200
Ulchurriyyah, N., Rifai, A. I., & Taufik, M. (2022). The Geometric Redesign of Horizontal Curved Using AutoCAD Civil 3D®: A Case Jalan Garuda – Jalan Moh. Hatta, Tasikmalaya West Java. Indonesian Journal of Multidisciplinary Science, 1(1), 288–303. https://doi.org/10.55324/ijoms.v1i1.389
Wirdianto, A., K, S. N., Fadillah, A., Rijaluddin, A., & Isradi, M. (2025). Geometric Evaluation of Bends Implications for Traffic Performance: A Systematic Literature Review. RIGGS: Journal of Artificial Intelligence and Digital Business, 4(2), 5555–5565. https://doi.org/10.31004/riggs.v4i2.1473
Xu, J., Lv, W., Gao, C., Bi, Y., Mu, M., & E, G. (2022). Why Do Drivers’ Collision Avoidance Maneuvers Tend to Cause SUVs to Sideslip or Rollover on Horizontal Curve and Grade Combinations?—An Analysis of the Causes Based on a Modified Multibody Dynamics Model. International Journal of Environmental Research and Public Health, 19(23), 15877. https://doi.org/10.3390/ijerph192315877
Zhang, H., Zhang, M., Zhang, C., & Hou, L. (2021). Formulating a GIS-based geometric design quality assessment model for Mountain highways. Accident Analysis & Prevention, 157, 106172. https://doi.org/10.1016/j.aap.2021.106172






















