Title: Construction problem of RAIB investigation report
The study of the three case studies mentioned above will offer insight into approaches that should be taken during the design of an efficient and safe railway network. Essential factors to be considered during the railway design include a working drainage, structurally sound rail components and infrastructure and geotechnical considerations. Structurally sound infrastructure is vital to a safe rail system, especially in the steel structures that form most of the supporting infrastructure. A majority of rail incidents can be attributed to structural failure or lack of proper oversight over the structural components. A proper culvert system should be designed and installed in the rail system to avoid cases of line closures, derailment, geotechnical instabilities, injuries and fatalities (American Society of Civil Engineers, 1993).
Conclusion
An assessment of the rain incidents documented in the RAIB website(Rail Accident Investigation Branch (RAIB), 2016) confirm the importance of sound rail infrastructure, open and efficient communication between the users and rail staff, prompt response to emergency alarms and implementation of recommendations to avoid similar incidents. It is of utmost importance that infrastructure design should accommodate anticipated harsh weather patterns. As illustrated in the Baildon case study, the culvert system for the rail should have been designed for anticipated heavy water flow during the rainy season owing to the fact that the particular section of rail was located on a river bend. An examination of all the case studies listed in this report indicates that similar incidents had occurred at least five years before the examined incident, indicating that recommended measures were not implemented. In addition, there was delayed response to emergency alarm in all the case studies.
In conclusion, for an efficient and safe rail network, the infrastructure should be structurally sound, have regular repair and maintenance checks to establish fault triggers and have an emergency unit that responds promptly to alarms.
References
American Society of Civil Engineers, 1993. Design and construction of Urban Stormwater Management Systems. Third ed. Washington: ASCE Publications.non., 2005. Environmental Vibration: Prediction, Monitoring, Mitigation and Evaluation. Okoyama, CRC Press, pp. 20-22.
Rail Accident Investigation Branch (RAIB), 2016. Gov.uk. [Online] Available at: https://www.gov.uk/raib-reports/trains-passed-over-washed-out-track-at-baildon [Accessed 10 April 2018].ge system of the explored case study incident
Title: Construction problem of RAIB investigation report
The study of the three case studies mentioned above will offer insight into approaches that should be taken during the design of an efficient and safe railway network. Essential factors to be considered during the railway design include a working drainage, structurally sound rail components and infrastructure and geotechnical considerations. Structurally sound infrastructure is vital to a safe rail system, especially in the steel structures that form most of the supporting infrastructure. A majority of rail incidents can be attributed to structural failure or lack of proper oversight over the structural components. A proper culvert system should be designed and installed in the rail system to avoid cases of line closures, derailment, geotechnical instabilities, injuries and fatalities (American Society of Civil Engineers, 1993).
Conclusion
An assessment of the rain incidents documented in the RAIB website(Rail Accident Investigation Branch (RAIB), 2016) confirm the importance of sound rail infrastructure, open and efficient communication between the users and rail staff, prompt response to emergency alarms and implementation of recommendations to avoid similar incidents. It is of utmost importance that infrastructure design should accommodate anticipated harsh weather patterns. As illustrated in the Baildon case study, the culvert system for the rail should have been designed for anticipated heavy water flow during the rainy season owing to the fact that the particular section of rail was located on a river bend. An examination of all the case studies listed in this report indicates that similar incidents had occurred at least five years before the examined incident, indicating that recommended measures were not implemented. In addition, there was delayed response to emergency alarm in all the case studies.
In conclusion, for an efficient and safe rail network, the infrastructure should be structurally sound, have regular repair and maintenance checks to establish fault triggers and have an emergency unit that responds promptly to alarms.
References
American Society of Civil Engineers, 1993. Design and construction of Urban Stormwater Management Systems. Third ed. Washington: ASCE Publications.non., 2005. Environmental Vibration: Prediction, Monitoring, Mitigation and Evaluation. Okoyama, CRC Press, pp. 20-22.
Rail Accident Investigation Branch (RAIB), 2016. Gov.uk. [Online] Available at: https://www.gov.uk/raib-reports/trains-passed-over-washed-out-track-at-baildon [Accessed 10 April 2018].ge system of the explored case study incident
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