The Design of Alignment Horizontal Using Indonesia Highway Design Standard: A Case of Jalan Babat – Tapen, East Java

Authors

  • Ilham Rafid Andito Faculty of Engineering, Universitas Mercubunana Jakarta
  • Andri Irfan Rifai Faculty of Civil Engineering and Planning, Universitas Internasional Batam
  • Adinda Fajarika Akhir Graduate School, Universitas Mercu Buana Jakarta

DOI:

https://doi.org/10.55324/ijoms.v1i1.383

Keywords:

geometric road design, horizontal alignment, highway, spiral-cicle-spiral

Abstract

Horizontal alignment is included in the aspect of the geometric design of the road. Jalan Babat – Tapen in Jombang, East Java, is planned to have three horizontal alignments. This design aims to connect Jalan Babat and Jalan Tapen to shorten the travel time for the surrounding community's needs. This research uses the Bina Marga method, which refers to the Highway Design Standard of Indonesia 2021. First, road traffic data is obtained from the google earth application. The global mapper is then processed in AutoCAD to determine the coordinates of the road trace and the location of horizontal alignment. Then the data obtained is processed by referring to the Bina Marga method to design horizontal alignment. Jalan Tapen – Babat is a Secondary SJJ (Urban Road), Secondary Collector, and medium road, and the minor type of road 2/2 is not separate (TT). It has a flat terrain in design with a planned speed of 40 km / h. Three horizontal alignments with Spiral-Circle-Spiral (SCS) type, the first horizontal alignment is at STA 0+700 – 0+864, the second horizontal alignment is at STA 1+383 – 1+558, and the third horizontal alignment is at STA 2+132 – 2+304.

Author Biographies

Ilham Rafid Andito, Faculty of Engineering, Universitas Mercubunana Jakarta

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Adinda Fajarika Akhir, Graduate School, Universitas Mercu Buana Jakarta

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References

Karlsson, C. S., Kalantari, Z., Mörtberg, U., Olofsson, B., & Lyon, S. W. (2017). Natural hazard susceptibility assessment for road planning using spatial multi-criteria analysis. Environmental management, 60(5), 823-851.

Qiao, E. M., & Shang, D. W. (2019). Simulation Study on Pedestrian Road Planning in Ancient Building Groups Under Cloud Computing Environment. International Conference on Advanced Hybrid Information Processing, 355-363.

Ministry of Public Works. (2011). Regulation of the Minister of Public Works Number: 19/Prt/M/2011. In K. P. General, Road Technical Requirements And Road Technical Planning Criteria (p. 20). Jakarta: Ministry of Public Works.

Laschi, A., Foderi, C., Fabiano, F., Neri, F., Cambi, M., Mariotti, B., & Marchi, E. (2019). Forest road planning, construction and maintenance to improve forest fire fighting: a review. Croatian Journal of Forest Engineering: Journal for Theory and Application of Forestry Engineering 40.1, 207-219.

Aguiar, M. O., da Silva, G. F., Mauri, G. R., de Mendonça, A. R., de Oliveira Santana, C. J., M. G., & Leite, C. C. (2021). Optimizing forest road planning in a sustainable forest management area in the Brazilian Amazon. Journal of Environmental Management, 288, 112332.

Plessen, M. G., Bernardini, D., Esen, H., & Bemporad, A. (2017). Spatial-based predictive control and geometric corridor planning for adaptive cruise control coupled with obstacle avoidance. . IEEE Transactions on Control Systems Technology, 26(1), , 38-50.

Mandal, M., Pawade, P., Sandel, P., & Infrastructure, R. S. (2019). Geometric design of highway using Civil 3D. International Journal of Advance Research, Ideas and Innovations in Technology, 5(3).

Ministry of PUPR, Director General of Highways. (2021, October 19). Circular Letter Number: 20/SE/Db/2021 concerning Road Geometric Design Guidelines. In K. P. Marga, Road Geometric Design Guidelines (p. 1). Jakarta: Ministry of PUPR, Director General of Highways.

Wedajo, T., Quezon, E. T., & Mohammed, M. (2017). Analysis of road traffic accident related of geometric design parameters in Alamata-Mehoni-Hewane section. . Int. J. Sci. Eng. Res,, 8(1), 874-881.

Álvarez, P., Fernández, M. A., Gordaliza, A., Mansilla, A., & Molinero, A. ((2020). Geometric road design factors affecting the risk of urban run-off crashes. A case-control study. PLoS one,15(6), e0234564.

Raji, S. A., Zava, A., Jirgba, K., & Osunkunle, A. B. (2017). Geometric Design of a Highway Using Autocad Civil 3d. Journal of Multidisciplinary Engineering Science and Technology (JMEST), 4(6).

Bobermin, M. P., Silva, M. M., & Ferreira, S. (2021). Driving simulators to evaluate road geometric design effects on driver behaviour: A systematic review. . Accident Analysis & Prevention, 150, 105923.

Kumar, R., & Vyas, T. (2021). Comparative Study and Parametric Analysis of IRC and AASHTO Standards for Urban Road Design. Intelligent Transport Management: Issues and Challenges, 124.

You, K., Yu, Q., Huang, W., & Hu, Y. (2022). Safety-Based Optimization Model for Highway Horizontal Alignment Design. Mathematical Problems in Engineering.

Casal, G., Santamarina, D., & Vázquez-Méndez, M. E. (2017). Optimization of horizontal alignment geometry in road design and reconstruction. Transportation Research Part C: Emerging Technologies, 74, , 261-274.

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.

Rifai, A. I., H. S., 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) , 36.

Li, C., Ding, L., & Zhong, B. (2019). Highway planning and design in the Qinghai–Tibet Plateau of China: a cost–safety balance perspective. Engineering, 5(2), 337-349.

Kriswardhana, W., Hasanuddin, A., & Palestine, I. M. (2020). Modelling road traffic accident rate and road geometric parameters relationship. In AIP Conference Proceedings (Vol. 2278, No. 1), 020003.

Faisal, R., Ahlan, M., Mutiawati, C., & Rozi, M. (2021). The comparison between the method of Bina Marga and the pavement condition index (PCI) in road damage condition evaluation (case study: Prof. Ali Hasyimi Street, Banda Aceh). . In IOP Conference Series: Materials Science and Engineering (Vol. 1087, No. 1), 012028.

Rusli, R. H. (2017). Single-vehicle crashes along rural mountainous highways in Malaysia: An application of random parameters negative binomial model. . Accident Analysis & Prevention, 102, , 153-164

Shevriyanto, B., Rifai, A. I., & Chiang, Z. (2021). Street Furniture in Batam: Inspirations from Natural and Cultural Inheritance. ????, (144), 47-51.

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.

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.

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.

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.

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.

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.

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.

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.

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

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Published

2023-01-17