GI2012 bartoli-annex iii

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A Snow Avalanche Spatial Data Infrastucture meets Inspire Annex III GEOAVALANCHE 19.05.2012 / GI2012 Autore: Francesco Bartoli 1

Transcript of GI2012 bartoli-annex iii

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A Snow Avalanche

Spatial Data

Infrastucture meets

Inspire – Annex III GEOAVALANCHE

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Autore: Francesco Bartoli 1

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Agenda

Snow avalanche risk management

Natural Risk Zones theme

What is Geoavalanche?

CAAML application profile

Geoavalanche server

Benefits

Challenges

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Mountain Risk Management

AVALANCHES dramatically:

kill backcountry practitioners

damage villages, settlements, infrastructures

SNOWCOVER frequently:

affects hydropower generation

is a source of water for drinkable and irrigation use

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Actors

AVALANCHE WARNING SERVICES

distributed offices collect avalanche and meteorological data often locally

issue nationwide nowcasting and forecasting bulletin centrally

Governments

have to mitigate natural hazard and regulate land use

deal with the management of resources

are approaching to Inspire where Avalanches are issued in the Natural Risk Zones theme of Annex III

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Users

Tourists

attempt in the wilderness with a number as much as increased in the latest years

claim innovative early warning alert systems and more avalanche awareness for safer activities

Mountain professionals

plan their activities more often via mobile devices

promote and make their business on the safety of outdoor activities

are actively involved to report snowdrift risk and snowslide-prone areas as the situation evolves

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Inspire – Annex III

“Natural Risk Zones” theme

Definition: “Vulnerable areas subjected to natural

hazards that because of their location, severity and

frequency may potentially affect society seriously”

The knowledge of identification and delineation over

risk zones is significantly important to mitigating

circumstances

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Natural Risk Zone

Where natural hazard areas intersect with highly populated areas and/or areas of either particular environmental or cultural or economic value

risk = (hazard) x (probability of its occurrence) x (vulnerability of the exposed populations or the environmental, cultural and economic assets in that zone)

Data and special warning services are probably relevant for both risk assessment and emergency management

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Avalanches – Snow slides

Such areas prone to have:

Significantly snow cover combined with steep slopes

Windy activity that affects the creation of snowdrifts

Coverage

Physical mapping of areas susceptible to weak cohesion of snow profile and easily sliding indeed

Areas divided into zones with susceptibility classification

Areas with either certain regulations or restrictions for different land use due to such risk

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Snow Water Equivalent

Areas prone to have:

Significantly few snowfalls with low impact on water

generation

Coverage

Physical mapping of areas susceptible to a low power

of snow coverage

Areas divided into zones with susceptibility

classification

Areas with resource management connected to snow

water equivalent risk

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Geoavalanche

Open Source project born from Geobeyond and

released under the GNU GPL v3 terms

Development of a web architecture to deal with

snow avalanche datasets over the Internet

Overcome the lack of shared knowledge on snow

avalanche information

Core component of data infrastructure spatially

and semantically focused

Web 2.0 oriented

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Goals

“Exchange of snow avalanche information in a

common standard for building Spatial Data

Infrastructure to cross-border interoperability”

“Leverage of more avalanche awareness to

mountaineers by using user-oriented services on

Web channels”

“Make avalanche bulletin mostly available and hence

mountain experience safe-effective”

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Key Concepts

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Geographical nature of snow avalanche data (spatial

component)

Geospatial standards

Cross-boarder cooperation and harmonisation of data

(Regional – National – European)

Interoperability in mind

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Technologies

Canadian Avalanche Association Markup

Language CAAML

Geographic Markup Language GML

OGC Web Feature Service WFS

OGC Web Map Service WMS

GeoServer and the GML application schema

extension

PostGIS spatial database

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Implications

Accessing datasets by using WFS services for

exchanging data on R/W operations

Providing maps avalanche bulletins and snow

coverages by using WMS services

Enabling 3th-party internet sites and mobile

devices for snow avalanche geolocalisation

services

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CAAML XML grammar language initially developed and still

maintained by the Canadian Avalanche Association CAA

Common encoding structure based on top of GML

Currently supports the following snow avalanche types: incident information

activity comments

observations

bulletins

closure

observations on the field

snowpack structure comments

snow profile observations

weather observations

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CAAML architecture

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Latest version 5.0 developed by CAA

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EAWS CAAML profile EAWS European Avalanche Warning Service maintains

standards across the Alps

Proposed schema profile for the Alps

Borrows the concept of profile which permits:

express logical limitation of elements relevant for a specific application

maintain the ability to be validated against the overall CAAML standard

design a common schema which raises the needs among AWS in the neighborhood of European mountains

Geoavalanche uses EAWS CAAML-scoped snow avalanche bulletins

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Bulletin element type

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Courtesy of CAA

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European avalanche danger scale

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Fit together

Data and services in Inspire might be filled by this

simple rules:

EAWS danger scale CAAML-modeled turns into

susceptibility classification of risk zones

Closures in CAAML would be relative to land use

regulations and restrictions

All observations data types would refer to snow water

equivalent and resource management indeed

(Hydropower, Irrigation, drinkable, etc)

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Geoavalanche Server

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Uses GeoServer to aggregate different datastores centrally

Includes GML application schema extension for supporting 3th-party like CAAML

Allows direct querying of complex snow avalanche features CAAML-encoded

Enables data fusion between remote and local sources

Achieves web mapping services for avalanche bulletins and snow water equivalent maps

is Inspire-ready because of the abilities passed-down by Geoserver

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Geospatial snow avalanche services

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CAAML schema mapping

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Single caaml:Bulletin:

is observed at several distinct locations on the Earth’s

surface

has a multivalued caaml:bulletinResultsOf

property of caaml:BulletinMeasurements

type

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Key effects

“A CAAML Spatial Data Infrastructure would

exploit Geoavalanche Server which assumes a

key role since it manages both of R/W operations

regardless of the database schema used to store

data”

“When performing WFS filter queries it can also

act accordingly to OGC WFS-T transactional

specification because each single service has

been conformed to the same CAAML schema”

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Snow avalanche SDI for cross-boarder

interoperability

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Benefits Interoperability at largest scale for stakeholders, actors,

and users

EUROPEAN – Snow avalanche Geoportal for EU, which would represent the application of Natural Risk Zones

NATIONAL – Geospatial product which provides avalanche bulletin maps, warning LBS to mobile users and a complement for Resource Management (Snow water equivalent)

REGIONAL – A bridge to connect distributed observation centers to national agencies AWS in an easily common format

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Challenges

Schema transformation for CAAML datasets to

comply with the "Natural Risk Zones" data theme

Robustness and scalability of snow avalanche

database for CAAML

Catalogue Service for the Web (CSW)

Implementation of map visualization services

INSPIRE conformed (WMS 1.3)

Develop of mobile LBS client (iOS, Android)

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More on Geoavalanche

Source code on github

Read more on the project site geoavalanche.org

Follow me @francbartoli on Twitter

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Questions?

By Francesco Bartoli

[email protected]

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