Luzan, Irwan Faisal
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Verticality and Horizontality Monitoring of Mahakam Bridge Piers Post-Barge Collision Using Geodetic and Structural Instrumentation Efendi, Aco Wahyudi; Safitri, Novia; Yusuf, Muh; Luzan, Irwan Faisal; Zubran, Azan
Kurva S : Jurnal Keilmuan dan Aplikasi Teknik Sipil Vol 13, No 1 (2025)
Publisher : Department of Architecture, Faculty of Engineering

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31293/teknikd.v13i1.8625

Abstract

This study evaluates the vertical and horizontal stability of Piers 2 and 3 of the Mahakam Bridge in Samarinda, East Kalimantan, a vital infrastructure subjected to heavy daily traffic loads. Monitoring was conducted using high-precision geodetic instruments, including Total Station, Geodetic GPS, Digital Level, and Tiltmeter, to accurately detect structural displacements. Data were collected over a 96-hour period and analyzed spatially using AutoCAD and ArcGIS. Results show that Pier 2 experienced lateral deflection ranging from 0.024% to 0.048%, while Pier 3 exhibited a maximum vertical deviation of 0.010% and horizontal shift up to 0.055%—within acceptable safety limits. The displacement patterns were linear and showed no abrupt angular changes. These findings confirm that the structure remains stable and safe for continued use, though periodic monitoring is recommended, especially during peak loads or after extreme weather events. This research provides a robust foundation for long-term bridge maintenance and technical decision-making.Penelitian ini mengevaluasi kestabilan vertikal dan horizontal Pilar 2 dan Pilar 3 Jembatan Mahakam di Samarinda, Kalimantan Timur, yang merupakan infrastruktur vital dengan beban lalu lintas tinggi. Pemantauan dilakukan menggunakan perangkat geodetik presisi tinggi, termasuk Total Station, GPS Geodetik, Digital Level, dan Tiltmeter, untuk mendeteksi pergeseran struktural secara akurat. Data dikumpulkan selama periode 96 jam dan dianalisis menggunakan AutoCAD dan ArcGIS untuk mendapatkan representasi spasial pergerakan. Hasil menunjukkan bahwa Pilar 2 mengalami defleksi lateral antara 0,024%–0,048%, sedangkan Pilar 3 menunjukkan deviasi maksimum sebesar 0,010% secara vertikal dan hingga 0,055% secara horizontal—masih dalam batas toleransi aman. Pola pergeseran menunjukkan kecenderungan linier dan tidak ada perubahan sudut ekstrem. Temuan ini menegaskan bahwa struktur masih stabil dan aman digunakan, namun tetap diperlukan pemantauan berkala, terutama setelah beban puncak atau kondisi cuaca ekstrem. Penelitian ini memberikan dasar kuat bagi pengambilan keputusan teknis dalam pemeliharaan jembatan jangka panjang.
Bridge Condition Assessment and Prioritization using Bridge Management System in Kutai Timur Regency Wahyudi Efendi, Aco; Safitri, Novia; Yusuf, Muh; Luzan, Irwan Faisal; Zubran, Azan
Nusantara Civil Engineering Journal Vol 3 No 2 (2025): Nusantara Civil Engineering Journal
Publisher : Civil Engineering Dept, Balikpapan State Polytechnics

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32487/nuce.v3i1.636

Abstract

This study evaluates the condition of 215 bridges across 18 sub-districts in East Kutai Regency using a Bridge Management System (BMS). Primary data was collected through visual inspections, analyzing element-specific (foundation, substructure, superstructure, and deck) and overall condition ratings. The bridge inventory is predominantly timber construction (48.37%) and features mostly short spans, though critical long-span bridges exist. Results indicate most foundation, substructure, superstructure, and deck elements are in good condition (ratings 1-2). However, a significant percentage of elements show moderate to severe damage (ratings 3-5), with 1.86% of decks and superstructures in critical condition. A bridge prioritization model was developed based on condition ratings and urgency. Strategic recommendations include data-driven maintenance planning, efficient budget allocation, and enhancing human resource capacity and technology for sustainable bridge asset management, minimizing infrastructure failure risks