Heavy rainfall and flood vulnerability of Singapore-Malaysia high speed rail system

Sazrul Leena Binti Saadin, Sakdirat Kaewunruen, David Jaroszweski

Research output: Contribution to journalArticlepeer-review

12 Citations (Scopus)
354 Downloads (Pure)

Abstract

Change of climate is unequivocal, and many of the observed changes are unprecedented over five decades to millennia. It is expected that the global atmosphere and ocean is increasingly getting warmer, the amount of ice on the earth is decreasing over the oceans, and the sea level has risen. According to Intergovernmental Panel on Climate Change, such temperature change is around 0.78oC over decades. However, it is highly likely that such change can trigger other extreme natural threats to interdependent urban and transport infrastructure systems. The vulnerability of those infrastructure systems has not been comprehensively addressed in open literature due to specific differences of local environmental and geographical conditions. As a result, our research will highlight the extremes that can lead to system failure, degraded operation and ultimately, delays to train services. The emphasis is placed on the newly proposed Malaysia-Singapore high speed rail network, which can be affected by the most-frequent severe weather conditions including heavy rainfall and flash flood. It is found that tunneling, steep cutting and ballast foundation are ones of the most vulnerable assets from a heavy rainfall or a flash flood.
Original languageEnglish
Number of pages9
JournalAustralian Journal of Civil Engineering
Early online date7 Jun 2017
DOIs
Publication statusE-pub ahead of print - 7 Jun 2017

Keywords

  • railway infrastructure
  • high-speed rail
  • tracks
  • risks
  • management and monitoring
  • climate change
  • global warming
  • adaptation
  • operational readiness
  • heavy rain
  • flood

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