May a Standard VOF Numerical Simulation Adequately Complete Spillway Laboratory Measurements in an Operational Context? The Case of Sa Stria Dam
The present work aims to assess whether a standard numerical simulation (RANS-VOF model with <inline-formula> <math display="inline"> <semantics> <mrow> <mi>k</mi> <mo>−</mo> <mi>ϵ</mi> </mrow> </semantics> </math&g...
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doaj-d4bdd9419cd04397bf9a9b63089246d62020-11-25T04:01:40ZengMDPI AGWater2073-44412020-06-01121606160610.3390/w12061606May a Standard VOF Numerical Simulation Adequately Complete Spillway Laboratory Measurements in an Operational Context? The Case of Sa Stria DamMaria Grazia Badas0Riccardo Rossi1Michela Garau2DICAAR, University of Cagliari, 09123 Cagliari, ItalyRED Fluid Dynamics, 47921 Rimini, ItalyDICAAR, University of Cagliari, 09123 Cagliari, ItalyThe present work aims to assess whether a standard numerical simulation (RANS-VOF model with <inline-formula> <math display="inline"> <semantics> <mrow> <mi>k</mi> <mo>−</mo> <mi>ϵ</mi> </mrow> </semantics> </math> </inline-formula> closure) can adequately model experimental measurements obtained in a dam physical model. The investigation is carried out on the Sa Stria Dam, a roller compacted concrete gravity dam currently under construction in Southern Sardinia (Italy). The original project, for which a physical model was simulated, included a downstream secondary dam. However, due to both economic and technical reasons, the secondary dam may not be built. Hence, it is important to assess the flood discharge routing and energy dissipation in the modified plan. Numerical validation is performed adopting the same laboratory configuration, in presence of the downstream dam, and results show a good agreement with mean experimental variables (i.e., pressure, water level). An alternative configuration without the downstream dam is here numerically tested to understand the conditions of flood discharge and assess whether its results can give relevant information for the design of mitigation measures. The topic is of interest also from a more general perspective. Indeed, the feasibility to integrate numerical models with existing laboratory measurements can be very useful not only for new constructions but also for existing dams, which may need either maintenance or upgrading works, such as in case of flood discharge increment.https://www.mdpi.com/2073-4441/12/6/1606numerical simulation, dam discharge, spillway, RANS-VOF |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Maria Grazia Badas Riccardo Rossi Michela Garau |
spellingShingle |
Maria Grazia Badas Riccardo Rossi Michela Garau May a Standard VOF Numerical Simulation Adequately Complete Spillway Laboratory Measurements in an Operational Context? The Case of Sa Stria Dam Water numerical simulation, dam discharge, spillway, RANS-VOF |
author_facet |
Maria Grazia Badas Riccardo Rossi Michela Garau |
author_sort |
Maria Grazia Badas |
title |
May a Standard VOF Numerical Simulation Adequately Complete Spillway Laboratory Measurements in an Operational Context? The Case of Sa Stria Dam |
title_short |
May a Standard VOF Numerical Simulation Adequately Complete Spillway Laboratory Measurements in an Operational Context? The Case of Sa Stria Dam |
title_full |
May a Standard VOF Numerical Simulation Adequately Complete Spillway Laboratory Measurements in an Operational Context? The Case of Sa Stria Dam |
title_fullStr |
May a Standard VOF Numerical Simulation Adequately Complete Spillway Laboratory Measurements in an Operational Context? The Case of Sa Stria Dam |
title_full_unstemmed |
May a Standard VOF Numerical Simulation Adequately Complete Spillway Laboratory Measurements in an Operational Context? The Case of Sa Stria Dam |
title_sort |
may a standard vof numerical simulation adequately complete spillway laboratory measurements in an operational context? the case of sa stria dam |
publisher |
MDPI AG |
series |
Water |
issn |
2073-4441 |
publishDate |
2020-06-01 |
description |
The present work aims to assess whether a standard numerical simulation (RANS-VOF model with <inline-formula> <math display="inline"> <semantics> <mrow> <mi>k</mi> <mo>−</mo> <mi>ϵ</mi> </mrow> </semantics> </math> </inline-formula> closure) can adequately model experimental measurements obtained in a dam physical model. The investigation is carried out on the Sa Stria Dam, a roller compacted concrete gravity dam currently under construction in Southern Sardinia (Italy). The original project, for which a physical model was simulated, included a downstream secondary dam. However, due to both economic and technical reasons, the secondary dam may not be built. Hence, it is important to assess the flood discharge routing and energy dissipation in the modified plan. Numerical validation is performed adopting the same laboratory configuration, in presence of the downstream dam, and results show a good agreement with mean experimental variables (i.e., pressure, water level). An alternative configuration without the downstream dam is here numerically tested to understand the conditions of flood discharge and assess whether its results can give relevant information for the design of mitigation measures. The topic is of interest also from a more general perspective. Indeed, the feasibility to integrate numerical models with existing laboratory measurements can be very useful not only for new constructions but also for existing dams, which may need either maintenance or upgrading works, such as in case of flood discharge increment. |
topic |
numerical simulation, dam discharge, spillway, RANS-VOF |
url |
https://www.mdpi.com/2073-4441/12/6/1606 |
work_keys_str_mv |
AT mariagraziabadas mayastandardvofnumericalsimulationadequatelycompletespillwaylaboratorymeasurementsinanoperationalcontextthecaseofsastriadam AT riccardorossi mayastandardvofnumericalsimulationadequatelycompletespillwaylaboratorymeasurementsinanoperationalcontextthecaseofsastriadam AT michelagarau mayastandardvofnumericalsimulationadequatelycompletespillwaylaboratorymeasurementsinanoperationalcontextthecaseofsastriadam |
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