Development of Indonesia’s Probabilistic based Bridge Loading Code

Author:

Nugraha Widi1,Sidi Indra Djati2,Suarjana Made2,Zulkifli Ediansjah2

Affiliation:

1. Institut Teknologi Bandung Bandung, Indonesia; Ministry of Public Works & Housing, Republic of Indonesia Bandung, Indonesia

2. Institut Teknologi Bandung Bandung, Indonesia

Abstract

<p>Indonesian bridge loading code, SNI 1725 was first introduced in 1989. Due to insufficient data at that time, the nominal bridge live load and load factor values specified in the code was based on consensus rather than data, referring to overseas loading code, such as US’s AASHTO LRFD Bridge Design Specifications and Australia’s AS Bridge Loading Code. On the other hand, AASHTO themselves was derived using probabilistic approach based on Ontario’s truck measurement data in 1970’s. In this research, the load factor calibration for Bina Marga standard designed bridges in Indonesia was conducted using reliability analysis. The research team collected vehicle load measurement data using weigh-in-motion technology and used it to evaluate the reliability of standard bridges with different types and span lengths. The target reliability index was set at 3.72, in accordance with the Strength I Limit State in the SNI Bridge Loading Code. The analysis results showed that the current SNI Bridge Loading Code resulted in an under-designed bridge superstructure. The recommended load factors to reach the target reliability index were a resistance factor of 0.90, a dead load factor of 1.60, and a live load factor of 1.96. This study is significant as it is the first time in Indonesia that the development of a bridge loading code has been based on actual load measurement data using a probabilistic approach.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference23 articles.

1. Departemen Pekerjaan Umum, Peraturan Perencanaan Teknik Jembatan, no. May. Jakarta: DepartemenPekerjaan Umum, 1992.

2. J. M. Kulicki, AASHTO LRFD Bridge Design Specifications, 8th ed, no. September. 2017.

3. Calibration of Live-Load Factor in LRFD Bridge Design Specifications Based on State-Specific Traffic Environments;Oh-Sung Kwon;Journal of Bridge Engineering (ASCE)

4. Badan Standardisasi Nasional, SNI 1725-2016 Pembebanan untuk Jembatan. Jakarta: Indonesia: Badan Standarisasi Nasional, 2016.

5. WIM-based live load for bridges;Andrzej S. Nowak;KSCE Journal of Civil Engineering

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