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Numerical model that simulates flooding in Planinsko Polje (Slovenia) and its surrounding caves

Poljes are flat closed karst depressions prone to regular flooding. The floods can be several meters high, last for months and damage significantly human infrastructures. To predict the maximum level reached, the polje water balance needs to be implemented. This technique encounters the difficulty that im-portant part of the inflow and outflow flowing through many poljes is ungauged, as it is challenging to measure accurately the numerous springs and ponors activating temporarily with the rise of water level. This work aims to see whether this prob-lem can be handled and the polje water balance reconstituted. To do so, a typical Dinaric polje is equipped with several water level stations installed over its surface and in the nearby water active caves. Combining a 1*1m digital elevation model of the polje surface with water levels and inflow records of the main two springs allowed assessing the variation of flooded volume and reconstructing the water balance. The highest total inflow values reached during the observed period were of about 140-150 m3/s, with up to a third of it being ungauged. In addition, the effect of a large estavelles group on the polje inflow and out-flow could be identified, and helped to characterize the outflow, with values comprised between 65 and 75 m3/s. Finally, intense rainfall over the polje flooded surface showed to be a tempo-rary important source of inflow. The values found by the water balance analysis have been used as input and calibration data in a numerical model reproducing the flood dynamics in the polje and its surrounding aquifer. Results validated both polje water balance and conceptual hydrogeological model. They justify the significance of combining water level measurements with a digital elevation model to monitor the floods. The method can be applied to other poljes flooding in a complex way of superposed input and output signals. Finally, the places to be equipped in priority if the polje has no measurement network or if available funding is limited are discussed.



https://ojs.zrc-sazu.si/carsologica/article/view/11029/10961



The SWMM model is available by request at: cyril.mayaud@zrc-sazu.si

The numerical model simulates two floods that occured in Planinsko polje from the 01.09.2017 to 08.03.2018

Simple

Date (Creation)
2019-07-04
Date (Publication)
2022-12-18
Status
Completed
Point of contact
Organisation name Individual name Electronic mail address Role

IZRK ZRC SAZU

Cyril Mayaud

cyril.mayaud@zrc-sazu.si

Author
Keywords
  • karst database

  • polje

  • flooding

  • water balance

  • automatic monitoring

  • Dinaric karst

  • numerical modelling

  • Planinsko polje

Access constraints
License
Use limitation

The final license will be available soon.

Digital transfer options

OnLine resource
Protocol Linkage Name

WWW:LINK-1.0-http--link

https://ojs.zrc-sazu.si/carsologica/article/view/11029/10961

Peer reviwed scientific article

Metadata

File identifier
c6575bb9-754d-489c-9679-437f0375ba3d XML
Metadata language
English
Parent identifier
Planinsko polje (Slovenia)

76ef7dd0-0ac6-4eb3-b8fb-38ba20c6c262

Hierarchy level
Workflows and models
Metadata standard version

1.0

 
 

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IZRK Metadata Portal
The IZRK Metadata Portal was developed at the Data Centre of the Karst Research Institute ZRC SAZU from 2021 to 2022 using the GeoNetwork platform to build a system management and user interface for multidisciplinary environmental data mining and access to data products. The architecture of the new metadata portal is compliant with FAIR data principles and data lifecycle, and is collecting and mapping various datasets, databases, research sites and instruments, virtual laboratories, workflows, and codes. The portal offers data for multidisciplinary KARST database and for multidisciplinary research that covers all domains and functionalities of a karst landscape. Moreover, the portal is designed to provide a temporal and spatial link between specific sites and their data as part of three main projects:
  • RI-SI-LifeWatch (2019 - 2021)
  • RI-SI-EPOS (2019 - 2021)
  • eLTER RI (2020 - 2025)
Publisher

Karst research Institute ZRC SAZU , Postojna, Slovenia

ISSN 2820-588X



Year of preparation

2021 - 2022



Design and editing

Magdalena Aljančič, Žan Kafol, Tanja Pipan, Stanka Šebela, Jasmina Čeligoj Biščak, Nataša Ravbar