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ANALYSIS OF THE CAUSES OF TRAFFIC CONGESTION (CASE STUDY OF JATIWANGI—LIGUNG ROAD): ANALYSIS OF THE CAUSES OF TRAFFIC CONGESTION Mushthofa; Taufik, Muhammad; Jaya Saputra, Ade; Satrio Wibowo, Bhayu
STATIKA: Jurnal Teknik Sipil Vol. 11 No. 1 (2025): Statika: Jurnal Teknik Sipil
Publisher : Politeknik Raflesia Press

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Abstract

Traffic congestion on Jatiwangi-Ligung Road in Majalengka Regency has become a major problem. The purpose of this study is to find out the causes of congestion and find the best way to solve it. This study found through field observations, traffic data analysis, and literature studies that the main causes of congestion are the increasing number of private vehicles, limited road capacity, and lack of public transportation integration. In addition, conventional markets and non-ideal intersections worsen traffic conditions. Based on these findings, this study recommends several strategies to overcome congestion, including: increasing road capacity, developing an integrated public transportation system, implementing a technology-based traffic management system, and consistent law enforcement. In addition, active community participation in efforts to reduce congestion is also very important. The results of this study are expected to be a basis for local governments in formulating more comprehensive and sustainable transportation policies, so that they can improve the quality of life of the community and reduce the negative impact of congestion on the local economy.
A Bibliometric Analysis Of Geotextile As Underground Filtration In Subsurface Drainage Towards Slope Stability Using Vosviewer Budiono, Jason; Irfan Rifai, Andri; Jaya Saputra, Ade; Handayani, Susanty
Journal of World Science Vol. 3 No. 6 (2024): Journal of World Science
Publisher : Riviera Publishing

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58344/jws.v3i6.630

Abstract

Geotextile is a geosynthetics tool in civil engineering that addresses geotechnical issues. As an alternative employed in dealing with the soil foundation, geotextiles serve functions such as separation, filtration, drainage, reinforcement, stabilization, protection, and a combination of these functions. This study aimed to systematically map the scientific research outcomes on slope stabilization and geotextiles using a quantitative review method known as bibliometric analysis. Bibliometric analysis is a widely used and robust method for investigating and analyzing extensive scientific data sets. This approach allows us to unravel the evolutionary intricacies within a particular field and illuminate emerging areas. With the help of Publish or Perish, the data sourced from the Crossref database will be analyzed using VOSviewer software. The results indicated that the most document publications occurred in 2023, with 74 journals published that year. The findings revealed a significant focus on slope reinforcement among researchers, as evident in the 810 articles published from 2000 to 2023. Of these, 54% consisted of papers published in journal articles. In summary, this research provides a quantitative examination of trends and future directions in this research field, serving as a valuable resource for researchers. Also, this paper will serve as a valuable reference for acquiring insights into the available techniques and procedures for conducting studies utilizing bibliometric analysis.
A Bridge Planning Simulation with Building Information Model: Steel Frame Structure Dea Fitri Pratama, Siti Tasyah; Irfan Rifai, Andri; Jaya Saputra, Ade; Prasetijo, Joewono
Journal Research of Social Science, Economics, and Management Vol. 4 No. 2 (2024): Journal Research of Social Science, Economics, and Management
Publisher : Publikasi Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59141/jrssem.v4i2.714

Abstract

This paper presents a detailed approach to bridge planning and modeling using Building Information Modeling (BIM), focusing on steel frame structures. The implementation of Autodesk Revit Version 2024.1 significantly enhances the precision and efficiency of the planning and modeling process. The methodology involves gathering detailed data references, creating 2D drawings, and developing a comprehensive 3D model for structural analysis and construction design. In the bridge modeling phase, the trusses are constructed using advanced BIM tools, ensuring the structural elements are aligned accurately with the reference framework. This approach facilitates better stakeholder collaboration, improved communication, and more effective resource management. Using BIM technologies and precise data representation in the simulation contributes to better design outcomes, higher accuracy, and improved safety and compliance verification in bridge construction projects. The results demonstrate that integrating BIM in steel frame bridge planning leads to enhanced project efficiency, reduced construction errors, and optimized material use, ultimately supporting long-term sustainability in infrastructure development.