http://www.cnr.it/ontology/cnr/individuo/prodotto/ID281545
A web-based spatial decision supporting system (S-DSS) for grapevine quality: the viticultural tool of the SOILCONS-WEB Project (Abstract/Comunicazione in atti di convegno)
- Type
- Label
- A web-based spatial decision supporting system (S-DSS) for grapevine quality: the viticultural tool of the SOILCONS-WEB Project (Abstract/Comunicazione in atti di convegno) (literal)
- Anno
- 2014-01-01T00:00:00+01:00 (literal)
- Alternative label
Piero Manna (1), Antonello Bonfante (1), Angelo Basile (1), Giuliano Langella (1), Antonietta Agrillo (1),
Roberto De Mascellis (1), Antonio Florindo Mileti (2), Luciana Minieri (2), Nadia Orefice (1), and Fabio
Terribile (2) (2014)
A web-based spatial decision supporting system (S-DSS) for grapevine quality: the viticultural tool of the SOILCONS-WEB Project
in EGU General Assembly 2014, Vienna
(literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#autori
- Piero Manna (1), Antonello Bonfante (1), Angelo Basile (1), Giuliano Langella (1), Antonietta Agrillo (1),
Roberto De Mascellis (1), Antonio Florindo Mileti (2), Luciana Minieri (2), Nadia Orefice (1), and Fabio
Terribile (2) (literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#titoloVolume
- Geophysical Research Abstracts Vol. 16, EGU2014-14903, 2014 EGU General Assembly 2014 (literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#volumeInCollana
- Note
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#affiliazioni
- (1) CNR - ISAFoM, Italy (piero.manna@isafom.cnr.it), (2) University of Naples Federico II - Department of Agriculture,
Portici (NA), Italy (literal)
- Titolo
- A web-based spatial decision supporting system (S-DSS) for grapevine quality: the viticultural tool of the SOILCONS-WEB Project (literal)
- Abstract
- The SOILCONSWEB Project aims to create a decision support system operating at the landscape scale (Spatial-
DSS) for the protection and the management of soils in both agricultural and environmental issues; it is a
cyber-infrastructure built on remote servers operating through the web at www.landconsultingweb.eu. It includes
- among others - a series of tools specifically designed to a Viticulture aiming at high quality wines production.
The system is realized thanks to a collaboration between the University of Naples Federico II, CNR ISAFoM,
Ariespace srl and SeSIRCA-Campania Region within a 5-years LIFE+ project funded by European Community.
The system includes tools based on modelling procedures at different level of complexity some of which
specifically designed for viticulture issues. One of the implemented models arise from the original desktop based
SWAP model (Kroes et al, 2008). It can be run \"on the fly\" through a very user friendly web-interface. The specific
tool, thanks to the model based on the Richard's equation can produce data on vineyard water stress, simulating
the soil water balances of the different soil types within an area of interest.
Thanks to a specific program developed within the project activities, the Spatial-DSS every day acquires punctual
weather data and automatically spatialize them with geostatistical approaches in order to use the data as input for
the SPA (Soil Plant Atmosphere ) model running. In particular for defining the upper boundary condition (rainfall
and temperatures to estimate ET0 by the Hargraves model). Soil hydraulic properties (47 soil profiles within the
study area), also essential for modelling simulation, were measured in laboratory using the Wind's approach or
estimated through HYPRES PTF. Water retention and hydraulic conductivity relationships were parameterized
according to the van Genuchten-Mualem model;
Decision makers (individuals, groups of interests and public bodies) through the DSS can have real-time (or
near real-time) access to critical, accurate, complete and up-to-date spatial data/output models held/processed in
multiple data stores. The system allows the users interested in viticulture to have free, easy and immediate access
to a number of environmental data and information very useful for quality wines production and especially for
viticulture planning and management in a context of environmental sustainability. It produces detailed spatial
documents, report and maps on a series of questions including the identification and description of terroir
characteristics.
The user once connected to the S-DSS can select an area of interest (i.e. farm, municipality, district) or draw it
and obtain in real time a series of detailed information regarding that specific area, including maps and reports
of landscape physical factors (i.e. soils, climate, geology, geomorphology, etc.), viticulture suitability, plant
disease data and modelling, trends of viticulture years, bioclimatic indexes, etc. The user can also choose between
different options such as the time period of the simulation runs or the type of data (maps, report or graphs) to be
produced by the system.
The S-DSS is being developed, tested and applied in an area of about 20,000 ha in south of Italy (Valle Telesina,
in Campania region) mainly vocated to quality wines production (designation of origin DOC and DOCG). (literal)
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