Bridge Specific Live Load for the Assessment of Tsing Ma Bridge and Lantau Link

Author:

Yip Sammy1,Yeung Ngai2,Frederik Kevin3,Vernooij Roel3,de Meijier Felix3,Georgiadis Konstantinos4

Affiliation:

1. Arup, London, United Kingdom

2. Arup, Hong Kong, China

3. Arup Amsterdam, Netherlands

4. Arup, London, UK

Abstract

<p>The Lantau Link in Hong Kong forms part of the expressway linking Lantau Island to Tsing Yi, from which other roads lead to the urban areas of Kowloon and the rest of the New Territories. This is also part of the main route to the Hong Kong International Airport. The Lantau Link is 3.5km long and consists of Tsing Ma Bridge (suspension bridge), Kap Shui Mun Bridge (cable stayed bridge) and Ma Wan Viaduct (post-tensioned concrete viaduct). These structures carry traffic on two split deck levels. The upper deck carries 3 lanes of traffic in each direction. The lower deck carries a double-track railway line as well as two single-lane roads for emergency use or during strong wind when it is unsafe to drive on the upper deck. Due to continuing increase in road traffic on Lantau Link, it is proposed to increase the traffic carrying capacity by running traffic on the lower deck concurrently. The bridges were designed for 6 lanes of traffic and hence, an assessment to carry 8 lanes of traffic is required. To verify that opening the lower deck is possible without compromising structural safety, bridge specific live load study was carried out using WIM data and traffic data to derive the bridge specific assessment live load (BSALL) using Monte Carlo Simulation. WIM data was also used to derive fatigue load model (FLM) which represents the real truck weight and characteristics on the Lantau Link. This paper describes the derivation of BSALL and FLM and the results of the study.</p>

Publisher

International Association for Bridge and Structural Engineering (IABSE)

Reference4 articles.

1. Dawe, P., (2003), "Research Perspectives: Traffic loading on highway bridges", Thomas Telford and Transport Research Laboratory, United Kingdom.

2. Ricketts, N.J. and Page, J, (1997), "Transport Research Laboratory Report 251 Traffic data for highway bridge loading, Transport Research Laboratory", United Kingdom.

3. Treiber, M. and Heibing, D., (2000), "Microscopic Simulation of Congested Traffic", TU Dresden, Germany.

4. NEN 8701:2020 Assessment of existing structures in case of reconstruction and disapproval – Action (Dutch code)

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