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DSD-INT 2022 Delft3D FM at BAW Hamburg - Current Status and Outlook - Sehili

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DSD-INT 2022 Delft3D FM at BAW Hamburg - Current Status and Outlook - Sehili

Presentation by Aissa Sehili (Federal Waterways Engineering and Research Institute, Germany), at the Delft3D User Days, during Delft Software Days - Edition 2022. Monday, 14 November 2022.

Presentation by Aissa Sehili (Federal Waterways Engineering and Research Institute, Germany), at the Delft3D User Days, during Delft Software Days - Edition 2022. Monday, 14 November 2022.

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DSD-INT 2022 Delft3D FM at BAW Hamburg - Current Status and Outlook - Sehili

  1. 1. Aissa Sehili Delft3D FM at BAW Hamburg – Current Status and Outlook Delft Software Days, 14.11.2022
  2. 2. www.baw.de | Content Delft3D FM at BAW Hamburg – Current Status and Outlook Page 2 1. The BAW (Federal Waterways Engineering and Research Institute) 2. Developed D-Flow FM models 3. Current activities 4. Challenges: scalability on the BAW-Cluster 5. Outlook
  3. 3. www.baw.de | 1 BAW: Federal Waterways Engineering and Research Institute Hamburg Karlsruhe Standorte BAW The BAW ist central consultancy provider for - the Federal Ministry for Digital and Transport (BMDV) and - the Federal Waterways and Shipping Administration (WSV) The BAW is a Research Institute The BAW provides expertise with regards to - Operation and maintenance - Extentions and renewal - New projects of all federal waterways infrastructures. Inland waterways 6545 km Coastal waterways 761 km Locks: 326 Ship lifts: 4 Weirs: 337 Barriers: 11 Bridges: 1354 Channel bridges: 10 Hydroelectric power plants: 106 Quelle: www.WSV.de, Stand 2007 Delft3D FM at BAW Hamburg – Current Status and Outlook Page 3
  4. 4. www.baw.de | Standorte BAW-Dienststellen Hamburg Karlsruhe Page 4 1 BAW: Federal Waterways Engineering and Research Institute
  5. 5. www.baw.de | 1 Tasks of the BAW Hydraulic engineering Structural engineering Geotechnical engineering Shipbuilding R&D Infrastructure Environment Mobility Page 5
  6. 6. www.baw.de | 1 Technical Equipment (selection) Model of the "Jungferngrund" in the River Rhine Shallow Water Basin for Coastal Investigations Ship Handling Simulation High-performance computer UnTRIM2 Delft3D FM at BAW Hamburg – Current Status and Outlook Page 6
  7. 7. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 7 2 Developed D-Flow FM models
  8. 8. www.baw.de | • December 2014: pre-release agreement • February 2015: - First Elbe Flexible Mesh converted from an UnTRIM unstructured grid - First D-Flow FM simulations using DeltaShell plugin and …first problems: (no 3D simulation, no salinity, problems with setting boundary condition, problems with restarts,…) • Mai 2015: version used to set up the very first model Delft3D FM at BAW Hamburg – Current Status and Outlook Page 8 2 Elbe Estuary Model (DSD-INT 2015)
  9. 9. www.baw.de | 2 Elbe Estuary Model (DSD-INT 2015) Delft3D FM at BAW Hamburg – Current Status and Outlook Page 9
  10. 10. www.baw.de | 2 Elbe Estuary Model: close up at Cuxhaven Delft3D FM at BAW Hamburg – Current Status and Outlook Page 10
  11. 11. www.baw.de | 2 Elbe Km 725 (Cuxhaven) Delft3D FM at BAW Hamburg – Current Status and Outlook Page 11
  12. 12. www.baw.de | 2 Elbe Km 623N (St. Pauli) Delft3D FM at BAW Hamburg – Current Status and Outlook Page 12
  13. 13. www.baw.de | ▪ Mesh conversion from UnTRIM ▪ 3D model with salinity ▪ Realistic forcing Bremerhaven Alter Leuchtturm 2 Jade-Weser Model (OTB) Delft3D FM at BAW Hamburg – Current Status and Outlook Page 13
  14. 14. www.baw.de | ▪ The 2D model was designed to estimate the large-scale suspended sediment transport in the southern North Sea. ▪ Research Goal: ▪ We aimed at an estimation of the perennial variability of sediment transport pathways in the southern North Sea ▪ Model Information: ▪ 342,000 Elements and 540,000 vertices ▪ Hydrodynamics (EasyGSH-DB), Salinity, Heat-Flux, Bedload, suspended Sediments ▪ Deployed on the cluster 2 The Herkulis Southern North Sea Model* Model Setup Delft3D FM at BAW Hamburg – Current Status and Outlook Page 14 * Robert Hagen
  15. 15. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 15 3 Currents activities 3.1 Operational model & model based monitoring 3.2 UGRID-NetCDF Format
  16. 16. www.baw.de | Das DCSM FM Modell Delft3D FM at BAW Hamburg – Current Status and Outlook Page 16
  17. 17. www.baw.de | 3.1 DCSM FM 100m - GBOM Delft3D FM at BAW Hamburg – Current Status and Outlook Page 17
  18. 18. www.baw.de | German Bight Operational Model ICON-EU (NETCDF) weather forecast model DWD DCSM FM ( UGRID-NETCDF) BAW Dev. Env. GBOM: - Topo 2016 - Topo 2019A - Topo 2019C - Astro … Water Discharge BFG Water Temperature BFG: Cumlosen Wind, Pres,Temp Wl BSHcmod North Sea forecast model BSH Sa, Temp 3.1 GBOM flow chart Delft3D FM at BAW Hamburg – Current Status and Outlook Page 18 BSH: Federal Maritime and Hydrographic Agency. BFG: Federal Institute of Hydrology
  19. 19. www.baw.de | Sa, Temp UGRID-NETCDF Output (HIS or MAP) DCSM FM (Delft3D FM) Forcing GBOM (UnTRIM) Operational Salinity, Temperature BSH forecast ICON-EU METEO ICON-EU METEO Discharge, Temperature Measurements BfG 48 hours forecast Operational data communication between D-Flow FM (Deltares) and UnTRIM (BAW) Delft3D FM at BAW Hamburg – Current Status and Outlook Page 19 3.1 GBOM flow chart
  20. 20. www.baw.de | 28.08.2018 00:00:00 MEZ 29.08.2018 00:00:00 MEZ 30.08.2018 00:00:00 MEZ 31.08.2018 00:00:00 MEZ 01.09.2018 00:00:00 MEZ 02.09.2018 00:00:00 MEZ 03.09.2018 00:00:00 MEZ 04.09.2018 00:00:00 MEZ 05.09.2018 00:00:00 MEZ 06.09.2018 00:00:00 MEZ 07.09.2018 00:00:00 MEZ 08.09.2018 00:00:00 MEZ -2. -1.5 -1. -0.5 0 0.5 1. 1.5 2. 2.5 3. Wasserstand mNHN Wasserstand 10wl Knoten "St.Pauli_m" Wasserstand mesStPauli Hamburg_St_Pauli_PegelOnline 3.1 Results at St. Pauli with DCSM forcing Delft3D FM at BAW Hamburg – Current Status and Outlook Page 20
  21. 21. www.baw.de | 28.08.2018 00:00:00 MEZ 29.08.2018 00:00:00 MEZ 30.08.2018 00:00:00 MEZ 31.08.2018 00:00:00 MEZ 01.09.2018 00:00:00 MEZ 02.09.2018 00:00:00 MEZ 03.09.2018 00:00:00 MEZ 04.09.2018 00:00:00 MEZ 05.09.2018 00:00:00 MEZ 06.09.2018 00:00:00 MEZ 07.09.2018 00:00:00 MEZ 08.09.2018 00:00:00 MEZ -2. -1.5 -1. -0.5 0 0.5 1. 1.5 2. 2.5 3. Wasserstand mNHN Wasserstand 10wl Knoten "Zollenspieker_m" Wasserstand mesZoll Zollenspieker_Elbe_km_598_PegelOnline Delft3D FM at BAW Hamburg – Current Status and Outlook Page 21 3.1 Results at Zollenspieker with DCSM forcing
  22. 22. www.baw.de | Planned implementation: with rearrangement of dredged material building underwater structures in the mouth of the Elbe in order to minimize increase of tidal range i.e. raise tidal low water LW and lower tidal high water HW Plan: allow container ships with draught of 13,5 m to reach the Port of Hamburg independent of tide 3.1 Deepening of the Elbe-waterway* Plan and application: September 2006, start of construction works: July 2019, finished in January 2022 deepening widening and passing box for encounters of incomming and outgoing ships Delft3D FM at BAW Hamburg – Current Status and Outlook Page 22 * Elisabeth Rudolph
  23. 23. www.baw.de | ▪ Identify the impact of the construction work by comparing to measurements … but already questions during the construction period ➢ Support waterways and shipping administration (WSV) giving answers with model-based monitoring ▪ Requirement: • Today’s boundary values (wind, water level, salinity, fresh water discharge) • Up-to-date topography of the Elbe (i.e. during construction works) Fotodokumentation der Jan de Nul Group https://www.fahrrinnenanpassung.de/download.html … not only deepening, also building i.e. the initial dam (NHN-3,5 m) of the under water structure Medemrinne Medemgrund Delft3D FM at BAW Hamburg – Current Status and Outlook Page 23 3.1 Model-based monitoring of the deepening of the Elbe-waterway
  24. 24. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 24 Today: GBOM (UnTRIM2 ) Step 1: every day operational forecast using different topographies representing states of the construction ▪ Generating boundary values ▪ Answer questions during construction phase at once Step 2: hindcast using different topographies representing states of the construction ▪ Wind from analysis (… not forecast) ▪ Discharge from measurements Step 3: analyse tidal characteristic numbers for selected periods during the construction phase ▪ Compare before start of construction with during construction ▪ Compare with predicted values in BAW report (2006) 3.1 Model-based monitoring of the deepening of the Elbe-waterway
  25. 25. www.baw.de | 3.1 Change in Topography in the mouth of the Elbe state C – state A Under water structure UWA Medemrinne (rearrangement of dredged material) Under water structure UWA Neufeld (rearrangement of dredged material) Holding area Warteplatz Brunsbüttel and naturally moving tidal channels, dunes, sand banks, … Delft3D FM at BAW Hamburg – Current Status and Outlook Page 25
  26. 26. www.baw.de | 3.1 Example: mean tidal low water SNZ23_2021 Q320: LW in the mouth of the Elbe (TgWest) state A (2019) „before start of work“ state C* (2021) „deepening only“ state C (2021) „partial opening“ state C - state A state C* - state A Do the under water structures change the tidal low water LW already in the construction period? Yes Delft3D FM at BAW Hamburg – Current Status and Outlook Page 26
  27. 27. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 27 3 Currents activities 3.2 UGRID-NetCDF Format
  28. 28. www.baw.de | UGRID CF NetCDF file mesh, IC, BC NetCDF is a well established and freely available cross-platform API The CF (Climate and Forecast) conventions metadata provide standards for the description of NetCDF data UGRID can be regarded as an extension to CF ready made for use with unstructured grids Delft3D FM at BAW Hamburg – Current Status and Outlook Page 28 3.2 Towards a unified UGRID-NetCDF file format
  29. 29. www.baw.de | Why UGRID CF NetCDF? Safe use of dimensional data thanks CF canonical units → attribute “units” Safe data transformation (e.g. intensive to extensive variables) → attribute “cell_methods” Filtering based on number of data (easy tidal analysis) → attribute “ancillary_variables” + attribute “standard_name = number_of_observations” Keep track of data processing activities → attribute “history” Visualization of data at their original locations Delft3D FM at BAW Hamburg – Current Status and Outlook Page 29 3.2 Towards a unified UGRID-NetCDF file format
  30. 30. www.baw.de | Tidal Characteristic Numbers of Water Level float tnw_mean (TimePeriod, nFace) ; :cell_methods = "TimePeriod: mean nFace: mean" ; :ancillary_variables = “tnw_number of events" ; int tnw_number of events(TimePeriod,nFace) ; :units = “1" ; :standard_name = number_of_observations" ; Remark: “number of observations” (NOO) can be used to modify visualization of results. E. g. results are shown − only for locations where all events were detected, or − for locations where at a certain NOO. were detected, − … and so on. Mean tidal low water at Elbe Estuary for the period 16.02-03.03.2019 (28 tides) https://wiki.baw.de/en/index.php/NCANALYSE Delft3D FM at BAW Hamburg – Current Status and Outlook Page 30 3.2 Towards a unified UGRID-NetCDF file format
  31. 31. www.baw.de | Ongoing Joint project between Deltares and BAW to enhance D-Flow FM outputs to the UGRID CF NetCDF standard used at BAW. D-Flow FM NetCDF results should be processed without modification by BAW NC-Postprocessors. Striving to Make UGRID extensions full part of the CF NetCDF conventions. Use of BAW NetCDF data at Deltares as is. UGRID NetCDF UnTRIM Delft3D FM DELWAQ Others Delft3D FM at BAW Hamburg – Current Status and Outlook Page 31 3.2 Towards a unified UGRID-NetCDF file format
  32. 32. www.baw.de | UGRID NetCDF UnTRIM Delft3D FM DELWAQ Others Delft3D FM at BAW Hamburg – Current Status and Outlook Page 32 3.2 Towards a unified UGRID-NetCDF file format ▪ Modification in the map files ▪ Modification in the his files ▪ Split the output into 3D and 2D ▪ Include some BAW intrinsic metadata (DMQS) for data management and quality control
  33. 33. www.baw.de | • Model runs for a spring-neap cycle • Mean tidal condition (07.2006) Original UGRID NetCDF Elbe D-Flow FM model results Delft3D FM at BAW Hamburg – Current Status and Outlook Page 33 3.2 Postprocessing: Tidal Characteristic Numbers for Water Level
  34. 34. www.baw.de | • Model runs for a spring-neap cycle • Mean tidal condition (07.2006) Original UGRID NetCDF Elbe D-Flow FM model results Delft3D FM at BAW Hamburg – Current Status and Outlook Page 34 3.2 Postprocessing: Tidal Characteristic Numbers for Water Level
  35. 35. www.baw.de | • Model runs for a spring-neap cycle • Mean tidal condition (07.2006) Original UGRID NetCDF Elbe D-Flow FM model results Without filtering (NOO) Delft3D FM at BAW Hamburg – Current Status and Outlook Page 35 3.2 Postprocessing: Tidal Characteristic Numbers for Water Level
  36. 36. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 36 4 Challenges: scalability on the BAW cluster
  37. 37. www.baw.de | 4 Challenges: running on the cluster Linux Build: • Numerous prerequisite libraries need to be installed • MPI library compatibility issues • OS issues • Hardware issues Singularity container image: • MPI library issues (use host) • Batch system issues (e.g. communication with SLURM via pmi2) • Right setting for the cluster interconnect (Omnipath, InfiniBand,…) Delft3D FM at BAW Hamburg – Current Status and Outlook Page 37
  38. 38. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 38 4 Build benchmarks on BAW cluster
  39. 39. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 39 4 Singularity benchmarks on BAW cluster
  40. 40. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 40 4 Singularity benchmarks on future BAW cluster Setting along with Intel MPI 2021.5 (host) and InfiniBand interconnect: export I_MPI_FABRICS=shm:ofi export FI_PROVIDER=verbs export I_MPI_PMI=pmi2 export I_MPI_PMI_LIBRARY=/usr/lib64/libpmi2.so.0.0.0 The verbs-provider requires additional libraries which are not in the standard Intel MPI installation, Therefore, some new singularity bindpath were used. The communication with SLURM via PMI2 requires also further bindpaths.
  41. 41. www.baw.de | Delft3D FM at BAW Hamburg – Current Status and Outlook Page 41 5 Outlook
  42. 42. www.baw.de | 5 Outlook Delft3D FM at BAW Hamburg – Current Status and Outlook Page 42 ✓ Able in the next future to process UGRID-NetCDF results from D-Flow FM as is ▪ Calibration and validation of a model of the German Bight. ▪ Extend the model for sediment transport and waves Offline BC from DCSM FM: can we do it differently? Actual extend
  43. 43. Bundesanstalt für Wasserbau 22559 Hamburg, Germany www.baw.de Thanks!

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