Published February 1, 2017 | Version v1
Journal article

Building vulnerability and human loss assessment in different earthquake intensity and time: a case study of the University of the Philippines, Los Baños (UPLB) Campus

  • 1. Geological Engineering Department, Syiah Kuala University, Jl. Syech Abdurrauf No. 7, Banda Aceh, 23111 (Indonesia)
  • 2. School of Environmental Science and Management, University of the Philippines, Los Baños, Pedro R. Sandoval Ave, Los Baños, Laguna (Philippines)
  • 3. Tsunami and Disaster Mitigation Research Center (TDMRC), Syiah Kuala University, Jl. Prof. Dr. Ibrahim Hasan, Gampong Pie, Banda Aceh, 23233 (Indonesia)
  • 4. Department of Civil Engineering, University of Philippines Los Baños, Pedro R. Sandoval Ave, Los Baños, Laguna (Philippines)
  • 5. College of Forestry and Natural Resources, University of the Philippines, Los Baños, Pedro R. Sandoval Ave, Los Baños, Laguna (Philippines)
  • 6. PARR Research Fellows at University of Philippines Los Baños, Pedro R. Sandoval Ave, Los Baños, Laguna (Philippines)

Description

Study on seismic hazard, building vulnerability and human loss assessment become substantial for building education institutions since the building are used by a lot of students, lecturers, researchers, and guests. The University of the Philippines, Los Banos (UPLB) located in an earthquake prone area. The earthquake could cause structural damage and injury of the UPLB community. We have conducted earthquake assessment in different magnitude and time to predict the posibility of ground shaking, building vulnerability and estimated the number of casualty of the UPLB community. The data preparation in this study includes the earthquake scenario modeling using Intensity Prediction Equations (IPEs) for shallow crustal shaking attenuation to produce intensity map of bedrock and surface. Earthquake model was generated from the segment IV and the segment X of the Valley Fault System (VFS). Building vulnerability of different type of building was calculated using fragility curve of the Philippines building. The population data for each building in various occupancy time, damage ratio, and injury ratio data were used to compute the number of casualties. The result reveals that earthquake model from the segment IV and the segment X of the VFS could generate earthquake intensity between 7.6 – 8.1 MMI in the UPLB campus. The 7.7 Mw earthquake (scenario I) from the segment IV could cause 32% - 51% damage of building and 6.5 Mw earthquake (scenario II) occurring in the segment X could cause 18% - 39% structural damage of UPLB buildings. If the earthquake occurs at 2 PM (day-time), it could injure 10.2% - 18.8% for the scenario I and could injure 7.2% - 15.6% of UPLB population in scenario II. The 5 Pm event, predicted will injure 5.1%-9.4% in the scenario I, and 3.6%-7.8% in scenario II. A nighttime event (2 Am) cause injury to students and guests who stay in dormitories. The earthquake is predicted to injure 13 - 66 students and guests in the scenario I and 9 - 47 people in the scenario II. To reduce the number of injuries, the authority of UPLB have to carry out the buildings restoration, set up earthquake early warning system in all dormitories, and evacuation sign board. (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/1755-1315/56/1/012006

Additional details

Publishing Information

Journal Title
IOP Conference Series: Earth and Environmental Science (Online)
Journal Volume
56
Journal Issue
1
Journal Page Range
[13 p.]
ISSN
1755-1315

Conference

Title
10. Aceh International Workshop and Expo on Sustainable Tsunami Disaster Recovery
Acronym
AIWEST-DR 2016
Dates
22-24 Nov 2016
Place
Banda Aceh (Indonesia)

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
52066305
Subject category
S58: GEOSCIENCES;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ALARM SYSTEMS; ATTENUATION; COMMUNITIES; DAMAGE; EARTHQUAKES; INJURIES; PHILIPPINES; PREDICTION EQUATIONS; RESIDENTIAL BUILDINGS; SIMULATION; VALLEYS; VULNERABILITY
Descriptors DEC
ASIA; BUILDINGS; DEVELOPING COUNTRIES; DISEASES; EQUATIONS; ISLANDS; SEISMIC EVENTS