TEAMER: Ocean Survivability Analysis for a WEC - Post-Access Report Data, Newport, OR

In curation License 

E-Wave Technologies LLC worked with the American Bureau of Shipping for the project of ocean survivability analysis of a wave energy converter that powers marine aquaculture. The performance period extended from 9/15/2021 to 6/30/2022 off the coast of Newport, Oregon. The data and scripts are used to generate all figures, tables, and charts in the Post Access Report, as well as the report itself. Project was part of the TEAMER RFTS 3 (request for technical support) program.

Figure_01.txt

This figure only contains an illustration; there is no data behind it.
Available Jun 30, 2027

Figure_02.txt

This Figure is Figure 2 of the reference ?PacWave Wave Resource Assessment, PMEC and Oregon State University, 2020? which is provided here by the filename ?PacWav... more
Available Jun 30, 2027

Figure_03.txt

This Figure is Figure 30 of the reference ?PacWave Wave Resource Assessment, PMEC and Oregon State University, 2020? which is provided here by the filename ?PacWa... more
Available Jun 30, 2027

Figure_04.txt

This Figure is Figure 13 of the reference ?PacWave Wave Resource Assessment, PMEC and Oregon State University, 2020? which is provided here by the filename ?PacWa... more
Available Jun 30, 2027

Figure_05.txt

This figure only contains an illustration; there is no data behind it
Available Jun 30, 2027

Figure_06.xlsx

Data used to generate Figure 6. Units are included in the Excel file.
Available Jun 30, 2027

Figure_07.xlsx

Data used to generate Figure 7. Units are included in the Excel file.
Available Jun 30, 2027

Figure_08.xlsx

Data used to generate Figure 8. Units are included in the Excel file.
Available Jun 30, 2027

Figure_09.xlsx

Data used to generate Figure 9. Units: Tp (s), FwdMax (N), AftMax (N)
Available Jun 30, 2027

Figure_10.xlsx

Data used to generate Figure 10. Units: Tp (s), FwdMax (Nm), AftMax (Nm)
Available Jun 30, 2027

Figure_11.txt

Figure 11. Definition of the paddle forces and moments in the CFD analysis. This figure only contains an illustration; there is no data behind it
Available Jun 30, 2027

Figure_12.txt

Figure 12. The simplified geometry of the WEC for CFD analysis. This figure only contains an illustration; there is no data behind it
Available Jun 30, 2027

Figure_13.txt

Figure 13. The CFD computational domain. This figure only contains an illustration; there is no data behind it
Available Jun 30, 2027

Figure_14.zip

Figure 14(a). The computational grids for Case 3 (T_p = 15 s): (a) top view The mesh data is saved as vtk format. Two mesh files inlcude the data for the WEC and backg... more
Available Jun 30, 2027

Figure_15.zip

Figure 15. The time histories of the simulated free surface elevation at the location 10 m in front of the WEC (x = -10 m), FWD paddle force, and motions for Case 1 T_p... more
Available Jun 30, 2027

Figure_16.zip

Figure 16. The CFD-simulated free surface patterns (a) before and (b) at the time when the maximum FWD paddle force occurred (Case 1 T_p = 8.5 s, Wave #2). In the data... more
Available Jun 30, 2027

Figure_17.zip

Figure 17. The CFD-simulated pressure distributions on the FWD paddle at the time when the maximum FWD paddle force occurred (Case 1 T_p = 8.5 s, Wave #2). In the data... more
Available Jun 30, 2027

Figure_18.zip

Figure 18. The time histories of the CFD-simulated free surface elevation at the location 10 m in front of the WEC (x = -10 m), the AFT paddle force, and motions for Ca... more
Available Jun 30, 2027

Figure_19.zip

Figure 19. The CFD-simulated free surface pattern and pressure distributions on the AFT paddle at the time instant when the maximum AFT paddle force occurred (Case 2 T_... more
Available Jun 30, 2027

Figure_20.zip

Figure 20. The time histories of the CFD-simulated free surface elevation at the location 10 m in front of the WEC (x = -10 m), the AFT paddle force, and motions for Ca... more
Available Jun 30, 2027

Figure_21.zip

Figure 21. The CFD-simulated free surface pattern and pressure distributions on the AFT paddle at the time instant when the maximum AFT paddle force occurred (Case 2 T_... more
Available Jun 30, 2027

Figure_22.zip

Figure 22. The CFD-simulated time histories of the free surface elevation at the location 10 m in front of the WEC (x = -10 m) and the motions for Case 3 T_p = 15 s (Wa... more
Available Jun 30, 2027

Figure_23.zip

Figure 23. Time histories of the CFD-simulated forces and moments acting on the AFT paddle for Case 3 T_p = 15 s (Wave #1). The vertical dashed line marks the time inst... more
Available Jun 30, 2027

Figure_24.zip

Figure 24. The CFD-simulated free surface pattern and pressure distributions on the AFT paddle at the time instant of the maximum AFT paddle moment about the rail joint... more
Available Jun 30, 2027

Figure_25.zip

Figure 25 The simulated time histories of the free surface elevation at the location 10 m in front of the WEC (x = -10 m) and motions for Case 3 T_p = 15 s (Wave #3). ... more
Available Jun 30, 2027

Figure_26.zip

Figure 26. Time histories of the CFD-simulated forces and moments acting on the AFT paddle for Case 3 T_p = 15 s (Wave #3). The vertical dashed line marks the time inst... more
Available Jun 30, 2027

Figure_27.zip

Figure 27. The CFD-simulated free surface pattern and pressure distributions on the AFT paddle at the time instant of the maximum AFT paddle moment about the CG of the ... more
Available Jun 30, 2027

Figure_28.txt

This figure only contains an illustration; there is no data behind it
Available Jun 30, 2027

Figure_29.txt

This figure only contains an illustration; there is no data behind it
Available Jun 30, 2027

Figure_30.txt

FE mesh and boundary conditions used for the paddle; not able to export data from the software.
Available Jun 30, 2027

Figure_31.zip

Figure 31. An example of surface pressure mapping from CFD results to an FEA mesh. In the data files (*.dat), there are four columns including the scalar (column 1) a... more
Available Jun 30, 2027

Figure_32.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_33.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_34.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_35.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_36.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_37.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_38.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_39.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_40.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_41.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_42.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_43.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_44.txt

The software is not able to export data. Graphics only.
Available Jun 30, 2027

Figure_45.txt

The software is not able to export data. Graphics only.
Available Jun 30, 2027

Figure_46.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

Figure_47.zip

Data used to generate the figure. "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool.
Available Jun 30, 2027

PacWave Wave Resource Assessment Report.pdf

This report contains detailed analysis of wave characteristics at both the north and south sites based on a newly available 32-year SWAN hindcast simulation [5] and fol... more
Available Jun 30, 2027

READ_ME software instructions.txt

In this package, "NAS" or "lst" files can be opened using Siemens Femap, which is a FEA pre-processing and post-processing tool. "VTK" files can be opened by Paraview.
Available Jun 30, 2027

Table_3.xlsx

Data used to generate Table 3.
Available Jun 30, 2027

Table_4.xlsx

Data used to generate Table 4
Available Jun 30, 2027

Table_5.xlsx

Data used to generate Table 5
Available Jun 30, 2027

Table_6.xlsx

Data used to generate Table 6
Available Jun 30, 2027

Table_7.txt

Allowable stresses (kgf/cm2) for different materials and FE mesh sizes (Ref. [4]). LS denotes stiffener space. [4] ABS Guide for 'Safehull-Dynamic Loading Approach' for... more
Available Jun 30, 2027

Table_8.xlsx

Data used to generate Table 8
Available Jun 30, 2027

Citation Formats

E-Wave Technologies LLC. (2022). TEAMER: Ocean Survivability Analysis for a WEC - Post-Access Report Data, Newport, OR [data set]. Retrieved from https://mhkdr.openei.org/submissions/457.
Export Citation to RIS
Lou, Junhui, Bennett, Adam, Zhang, Xi-Ying, Ge, Zhongfu, Zhang, Shirlyn, Dunkle, Gabrielle, Robertson, Bryson, Garcia-Medina, Gabriel, and Yang, Zhaoqing. TEAMER: Ocean Survivability Analysis for a WEC - Post-Access Report Data, Newport, OR. United States: N.p., 30 Jun, 2022. Web. https://mhkdr.openei.org/submissions/457.
Lou, Junhui, Bennett, Adam, Zhang, Xi-Ying, Ge, Zhongfu, Zhang, Shirlyn, Dunkle, Gabrielle, Robertson, Bryson, Garcia-Medina, Gabriel, & Yang, Zhaoqing. TEAMER: Ocean Survivability Analysis for a WEC - Post-Access Report Data, Newport, OR. United States. https://mhkdr.openei.org/submissions/457
Lou, Junhui, Bennett, Adam, Zhang, Xi-Ying, Ge, Zhongfu, Zhang, Shirlyn, Dunkle, Gabrielle, Robertson, Bryson, Garcia-Medina, Gabriel, and Yang, Zhaoqing. 2022. "TEAMER: Ocean Survivability Analysis for a WEC - Post-Access Report Data, Newport, OR". United States. https://mhkdr.openei.org/submissions/457.
@div{oedi_457, title = {TEAMER: Ocean Survivability Analysis for a WEC - Post-Access Report Data, Newport, OR}, author = {Lou, Junhui, Bennett, Adam, Zhang, Xi-Ying, Ge, Zhongfu, Zhang, Shirlyn, Dunkle, Gabrielle, Robertson, Bryson, Garcia-Medina, Gabriel, and Yang, Zhaoqing.}, abstractNote = {E-Wave Technologies LLC worked with the American Bureau of Shipping for the project of ocean survivability analysis of a wave energy converter that powers marine aquaculture. The performance period extended from 9/15/2021 to 6/30/2022 off the coast of Newport, Oregon. The data and scripts are used to generate all figures, tables, and charts in the Post Access Report, as well as the report itself. Project was part of the TEAMER RFTS 3 (request for technical support) program.}, doi = {}, url = {https://mhkdr.openei.org/submissions/457}, journal = {}, number = , volume = , place = {United States}, year = {2022}, month = {06}}

Details

Data from Jun 30, 2022

Last updated Jan 10, 2024

Submitted Nov 2, 2022

Organization

E-Wave Technologies LLC

Contact

Junhui Lou

jlou@ewavetechnol.com

206.954.2211

Authors

Junhui Lou

E-Wave Technologies LLC

Adam Bennett

E-Wave Technologies LLC

Xi-Ying Zhang

American Bureau of Shipping

Zhongfu Ge

American Bureau of Shipping

Shirlyn Zhang

American Bureau of Shipping

Gabrielle Dunkle

Oregon State University

Bryson Robertson

Oregon State University

Gabriel Garcia-Medina

Pacific Northwest National Laboratory

Zhaoqing Yang

Pacific Northwest National Laboratory

DOE Project Details

Project Name Testing Expertise and Access for Marine Energy Research

Project Lead Lauren Ruedy

Project Number EE0008895

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