HR: 0800h
AN: S51A-0212 [Abstracts]
TI: ShakeCast: Automating and Improving the Use of ShakeMap for Post-Earthquake Decision- Making and Response
AU: * Lin, K
EM: klin@usgs.gov
AF: U.S. Geological Survey, P.O. Box 25046 MS-966, Denver, CO 80225,
AU: Wald, D J
EM: wald@usgs.gov
AF: U.S. Geological Survey, P.O. Box 25046 MS-966, Denver, CO 80225,
AB:
ShakeCast is a freely available, post-earthquake situational awareness application that automatically retrieves
earthquake shaking data from ShakeMap, compares intensity measures against users"
facilities, sends notifications of potential damage to responsible parties, and generates facility damage maps
and other Web-based products for emergency managers and responders. ShakeMap, a tool used to portray the
extent of potentially damaging shaking following an earthquake, provides overall information regarding the
affected areas. When a potentially damaging earthquake occurs, utility and other lifeline managers, emergency
responders, and other critical users have an urgent need for information about the impact on their particular
facilities so they can make appropriate decisions and take quick actions to ensure safety and restore system
functionality. To this end, ShakeCast estimates the potential damage to a user's widely
distributed facilities by comparing the complex shaking distribution with the potentially highly variable
damageability of their inventory to provide a simple, hierarchical list and maps showing structures or facilities
most likely impacted. All ShakeMap and ShakeCast files and products are non-propriety to simplify interfacing
with existing users" response tools and to encourage user-made enhancement to the
software. ShakeCast uses standard RSS and HTTP requests to communicate with the USGS Web servers that
host ShakeMaps, which are widely-distributed and heavily mirrored. The RSS approach allows ShakeCast users
to initiate and receive selected ShakeMap products and information on software updates. To assess facility
damage estimates, ShakeCast users can combine measured or estimated ground motion parameters with
damage relationships that can be pre-computed, use one of these ground motion parameters as input, and
produce a multi-state discrete output of damage likelihood. Presently three common approaches are being used
to provide users with an indication of damage: HAZUS-based, intensity-based, and customized damage
functions. Intensity-based thresholds are for locations with poorly established damage relationships; custom
damage levels are for advanced ShakeCast users such as Caltrans which produces its own set of damage
functions that correspond to the specific details of each California bridge or overpass in its jurisdiction. For users
whose portfolio of structures is comprised of common, standard designs, ShakeCast offers a simplified
structural damage-state estimation capability adapted from the HAZUS-MH earthquake module (NIBS and FEMA,
2003). Currently the simplified fragility settings consist of 128 combinations of HAZUS model building types,
construction materials, building heights, and building-code eras.
DE: 7200 SEISMOLOGY
DE: 7212 Earthquake ground motions and engineering seismology
DE: 7299 General or miscellaneous
SC: Seismology [S]
MN: 2007 Fall Meeting