Title page for etd-0719123-150138


URN etd-0719123-150138 Statistics This thesis had been viewed 56 times. Download 0 times.
Author Wei-Cheng Gao
Author's Email Address No Public.
Department Department of construction & spatial design
Year 2022 Semester 2
Degree Master Type of Document Master's Thesis
Language zh-TW.Big5 Chinese Page Count 77
Title A Study on the Fire-Fightingfor Urban Narrow Alley-the Case of Da'an District in Taipei
Keyword
  • narrow alley
  • fire rescue
  • expert interviews
  • expert interviews
  • fire rescue
  • narrow alley
  • Abstract In Taiwan, due to the narrow land and dense population, the high utilization of land and environment, and the high density of housing, the width of roads is greatly compressed, and there are often cars and motorcycles parked, canopies protruding, and miscellaneous items placed, resulting in the already narrow roads becoming even narrower, and often firefighting and rescue vehicles are unable to enter, causing firefighters to walk a long way to get to the disaster site, making the disaster serious.
     According to the relevant literature, fires are growing and their growth is proportional to the square of time, that is, the later the fire is effectively controlled, the more intense the fire will be until there is nothing left to burn.
     This study utilizes a live-fire exercise with a refined approach and expert interviews to reduce the time it takes for firefighters to arrive at the fire scene and to provide recommendations for improving fires in narrow alleys to reduce the loss of life and property.
     The best scenario is scenario 3, where the firefighting vehicles can arrive at the fire scene directly and quickly, but if the vehicles are slow or even unable to enter the narrow alleyway, compare scenario 1, double-rolled wiring, and scenario 2, refined action - fast wiring frame with double male and female connectors. The results of the study showed that the most time-saving and labor-saving method was to use a fast wiring frame with double male and double female connectors to reach the fire scene.
    Advisor Committee
  • SHI-FON SU - advisor
  • CHAO-LIN CHENG - co-chair
  • PIO-GO SIEH - co-chair
  • Files indicate access worldwide
    Date of Defense 2023-07-06 Date of Submission 2023-07-19

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