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Details of Grant 

EPSRC Reference: EP/I008209/1
Title: EEFIT Mission to Maule Chile 27th February earthquake
Principal Investigator: D'Ayala, Professor DF
Other Investigators:
Researcher Co-Investigators:
Project Partners:
Arup Group Ltd
Department: Architecture and Civil Engineering
Organisation: University of Bath
Scheme: Standard Research
Starts: 19 March 2010 Ends: 18 December 2010 Value (£): 31,176
EPSRC Research Topic Classifications:
Building Ops & Management Ground Engineering
Structural Engineering
EPSRC Industrial Sector Classifications:
Construction
Related Grants:
EP/I008179/1
Panel History:  
Summary on Grant Application Form
The Earthquake Engineering Field Investigation Team (EEFIT) has appointed a group of 7 experts, of which 2 academics and a PhD. student eligible for funding from EPSRC, to conduct a reconnaissance mission to the regions of Chile struck by the Mw8.8 earthquake that occurred on the 27th February 2010, with epicentre 100 miles northwest from the City of Concepcion. The earthquake, the second strongest in the recorded history of Chile, was felt on land as far north as Santiago, where it caused severe damage and collapses, and Ica in Peru', and eastward as far as Sao Paolo, in Brazil. The shock also triggered a tsunami whose waves travelled westward past Hawaii, to Japan and New Zealand. The team will spend approximately 8 to 10 days in the region, surveying structural, infrastructural, geotechnical and seismological evidence and also comparing the Chile event with the recent earthquake in Haiti, which was considerably smaller (Mw7) but resulted in much more death and destruction. This earthquake has raised a number of specific issues which are discussed in greater depth in the following sections. The clearing operation is already underway and this has determined the very short notice with which this proposal is submitted with respect to the departing date. Post mission activities will include analysis of the collected data using high resolution imaging within the Virtual Disaster Viewer (VDV) and other tools specifically developed as part of the project. The findings will be disseminated to both researchers and professional engineers through seminars and publication on lines and in journals. This grant application seeks financial assistance for the three eligible members of the EEFIT group to participate in this mission.
Key Findings
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Potential use in non-academic contexts
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Impacts
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Summary
Date Materialised
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Project URL:  
Further Information:  
Organisation Website: http://www.bath.ac.uk