- Communities& Collections
- Browse Items by:
- Issue Date
- Author
- Title
- Subject
دراسة اختبارات الحريق على نطاق واسع في نفق طريق الملك خالد بمكة المكرمة
Tunnel fires have escalated over the past years and have resulted in many disasters. Consequently, tunnel fires must be studied and safety regulations and standards must be introduced to limit these disasters. The experimental tests in tunnel fire give critical results about tunnel fire impact, but unfortunately these tests are very expensive and may cause extensive damage to the tunnel structure. Therefore, large-scale modeling using fire dynamic simulation is one of the best techniques used to limit these costs and losses. Fire dynamic simulation was validated and different simulations were performed to investigate the effect of the thermal attack of the fire on the tunnel. Parametric study of large-scale fire tests in Makkah’ King Khalid Road Tunnel showed that: (1) Increasing heat release rate per unit area (HRRPUA) by 10% raised the radiation by ~30% while decreasing HRRPUA by 5% lowered the radiation by ~50%; (2) Increasing Heat of combustion by 50% raised the radiation and CO and 〖CO〗_2 concentrations by ~17% and ~20%, respectively; (3) Increasing CO-yield by 75% raised CO concentration by ~50% while decreasing CO-yield by 75% lowered CO concentration by ~75%; and (4) Changing soot-yield affected all parameters except the oxygen concentration and air velocity and the most parameter affected by changing soot-yield was the radiation where it was decreased by ~40% with increasing and decreasing soot-yield by 75%. The simulations proved also that increasing ambient temperature from 10.5 °C to 40 °C raised the maximum temperature from 85 °C to ~110 °C and raised the maximum radiation from 30 kW/m2 to ~38 kW/m2. In addition, increasing tunnel height from 9 m to 12 m lowered the radiation by ~50% while the temperature was almost unaffected by changing.
Title: | دراسة اختبارات الحريق على نطاق واسع في نفق طريق الملك خالد بمكة المكرمة |
Other Titles: | Study of Large-scale Fire Tests in Makkah’ King Khalid Road Tunnel |
Authors: | GUEDRI, KAMEL BAGABER, OMAR SAEED |
Subjects :: | الهندسة الميكانيكية |
Issue Date :: | 2021 |
Publisher :: | جامعة أم القرى |
Abstract: | Tunnel fires have escalated over the past years and have resulted in many disasters. Consequently, tunnel fires must be studied and safety regulations and standards must be introduced to limit these disasters. The experimental tests in tunnel fire give critical results about tunnel fire impact, but unfortunately these tests are very expensive and may cause extensive damage to the tunnel structure. Therefore, large-scale modeling using fire dynamic simulation is one of the best techniques used to limit these costs and losses. Fire dynamic simulation was validated and different simulations were performed to investigate the effect of the thermal attack of the fire on the tunnel. Parametric study of large-scale fire tests in Makkah’ King Khalid Road Tunnel showed that: (1) Increasing heat release rate per unit area (HRRPUA) by 10% raised the radiation by ~30% while decreasing HRRPUA by 5% lowered the radiation by ~50%; (2) Increasing Heat of combustion by 50% raised the radiation and CO and 〖CO〗_2 concentrations by ~17% and ~20%, respectively; (3) Increasing CO-yield by 75% raised CO concentration by ~50% while decreasing CO-yield by 75% lowered CO concentration by ~75%; and (4) Changing soot-yield affected all parameters except the oxygen concentration and air velocity and the most parameter affected by changing soot-yield was the radiation where it was decreased by ~40% with increasing and decreasing soot-yield by 75%. The simulations proved also that increasing ambient temperature from 10.5 °C to 40 °C raised the maximum temperature from 85 °C to ~110 °C and raised the maximum radiation from 30 kW/m2 to ~38 kW/m2. In addition, increasing tunnel height from 9 m to 12 m lowered the radiation by ~50% while the temperature was almost unaffected by changing. |
Description :: | 79 ورقة |
URI: | http://dorar.uqu.edu.sa//uquui/handle/20.500.12248/132098 |
Appears in Collections : | الرسائل العلمية المحدثة |
File | Description | Size | Format | |
---|---|---|---|---|
24398.pdf " Restricted Access" | الرسالة الكاملة | 2.15 MB | Adobe PDF | View/OpenRequest a copy |
absa24398.pdf " Restricted Access" | ملخص الرسالة بالعربي | 123.21 kB | Adobe PDF | View/OpenRequest a copy |
abse24398.pdf " Restricted Access" | ملخص الرسالة بالإنجليزي | 190.66 kB | Adobe PDF | View/OpenRequest a copy |
cont24398.pdf " Restricted Access" | فهرس الموضوعات | 113.05 kB | Adobe PDF | View/OpenRequest a copy |
ind24398.pdf " Restricted Access" | المقدمة | 879.13 kB | Adobe PDF | View/OpenRequest a copy |
title24398.pdf " Restricted Access" | غلاف | 233.24 kB | Adobe PDF | View/OpenRequest a copy |
Items in D-Library are protected by copyright, with all rights reserved, unless otherwise indicated.
Comments (0)