Oneka LEAP Technical Design, Baseline Validation, and Testing Framework for Budget Period One

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This data submission contains the complete technical design, baseline validation, and long-term testing framework compiled during Budget Period 1 (BP1) of the Oneka LEAP project (DOE Award No. DE-EE0010982). The data and accompanying reports document the iterative Front-End Engineering Design (FEED) and mechanical optimization of the 100 m^3/day Iceberg wave-powered desalination platform (internal identifier H2). The primary focus of this package is the engineering data, design specifications, and validation plans generated to systematically de-risk and improve the operational reliability, cost-efficiency, and component life of marine-facing subsystems.

The technical files and datasets bundled within this submission include:
- (D9.5.1) Front-End Engineering Design (FEED) Report: Design blueprints, structural modifications, layout shifts, technical specifications, and thermodynamic membrane optimization calculations for the H2 Iceberg buoy platform.
- (D2.4.1) Initial Laboratory Testing & Reliability Baseline Report: Comprehensive dataset analysis compiling 1,418 hours of continuous, dynamic loop operation under simulated regular and irregular Joint North Sea Wave Project (JONSWAP) wave regimes on a dedicated hydraulic test bench. Includes stage-by-stage hydraulic efficiency mapping and component Mean Time to Failure (MTTF) metrics.
- (D4.5.1, D5.4.1, D7.4.1) Subsystem Innovation & Prototyping Analyses: Sizing calculations, material forensic studies, and hydraulic diagrams validating key design changes: specifically, the integration of a hard-and-soft seated check valve, an automated reverse osmosis (RO) membrane thermal-preservation loop, and a metal-on-metal back pressure regulator (BPR).
- (D6.4.1) Alternative Mechanical Intake Analysis: Photographic biofouling profiles from in-situ ocean trials alongside engineering concepts for a wave-driven, weighted mechanical brush assembly to prevent 50-micron strainer clogging.
- (D3.1.1) LEAP Field Testing & Marine Operations Plan: The complete operational task roadmap, instrumented sensor layout, weekly/monthly preventative maintenance parameters, and the standardized sea installation Standard Operating Procedure (SOP).

Citation Formats

TY - DATA AB - This data submission contains the complete technical design, baseline validation, and long-term testing framework compiled during Budget Period 1 (BP1) of the Oneka LEAP project (DOE Award No. DE-EE0010982). The data and accompanying reports document the iterative Front-End Engineering Design (FEED) and mechanical optimization of the 100 m^3/day Iceberg wave-powered desalination platform (internal identifier H2). The primary focus of this package is the engineering data, design specifications, and validation plans generated to systematically de-risk and improve the operational reliability, cost-efficiency, and component life of marine-facing subsystems. The technical files and datasets bundled within this submission include: - (D9.5.1) Front-End Engineering Design (FEED) Report: Design blueprints, structural modifications, layout shifts, technical specifications, and thermodynamic membrane optimization calculations for the H2 Iceberg buoy platform. - (D2.4.1) Initial Laboratory Testing & Reliability Baseline Report: Comprehensive dataset analysis compiling 1,418 hours of continuous, dynamic loop operation under simulated regular and irregular Joint North Sea Wave Project (JONSWAP) wave regimes on a dedicated hydraulic test bench. Includes stage-by-stage hydraulic efficiency mapping and component Mean Time to Failure (MTTF) metrics. - (D4.5.1, D5.4.1, D7.4.1) Subsystem Innovation & Prototyping Analyses: Sizing calculations, material forensic studies, and hydraulic diagrams validating key design changes: specifically, the integration of a hard-and-soft seated check valve, an automated reverse osmosis (RO) membrane thermal-preservation loop, and a metal-on-metal back pressure regulator (BPR). - (D6.4.1) Alternative Mechanical Intake Analysis: Photographic biofouling profiles from in-situ ocean trials alongside engineering concepts for a wave-driven, weighted mechanical brush assembly to prevent 50-micron strainer clogging. - (D3.1.1) LEAP Field Testing & Marine Operations Plan: The complete operational task roadmap, instrumented sensor layout, weekly/monthly preventative maintenance parameters, and the standardized sea installation Standard Operating Procedure (SOP). AU - Dion, Joel A2 - Hunt, Susan A3 - Collin, Olivier A4 - Kashyap, Suraj A5 - Guay, Nathan A6 - Lavoie-April, Samuel DB - Marine and Hydrokinetic Data Repository DP - Open EI | National Laboratory of the Rockies DO - KW - MHK KW - Marine KW - Hydrokinetic KW - energy KW - power KW - Oneka LEAP KW - Front-End Engineering Design KW - FEED KW - Technical Report KW - Baseline Validation KW - laboratory testing KW - Budget Period 1 KW - BPR KW - field testing plan KW - Iceberg KW - wave-powered desalination KW - desalination KW - desalination platform LA - English DA - 2026/07/16 PY - 2026 PB - Oneka Technologies T1 - Oneka LEAP Technical Design, Baseline Validation, and Testing Framework for Budget Period One UR - https://mhkdr.openei.org/submissions/718 ER -
Export Citation to RIS
Dion, Joel, et al. Oneka LEAP Technical Design, Baseline Validation, and Testing Framework for Budget Period One. Oneka Technologies, 16 July, 2026, Marine and Hydrokinetic Data Repository. https://mhkdr.openei.org/submissions/718.
Dion, J., Hunt, S., Collin, O., Kashyap, S., Guay, N., & Lavoie-April, S. (2026). Oneka LEAP Technical Design, Baseline Validation, and Testing Framework for Budget Period One. [Data set]. Marine and Hydrokinetic Data Repository. Oneka Technologies. https://mhkdr.openei.org/submissions/718
Dion, Joel, Susan Hunt, Olivier Collin, Suraj Kashyap, Nathan Guay, and Samuel Lavoie-April. Oneka LEAP Technical Design, Baseline Validation, and Testing Framework for Budget Period One. Oneka Technologies, July, 16, 2026. Distributed by Marine and Hydrokinetic Data Repository. https://mhkdr.openei.org/submissions/718
@misc{MHKDR_Dataset_718, title = {Oneka LEAP Technical Design, Baseline Validation, and Testing Framework for Budget Period One}, author = {Dion, Joel and Hunt, Susan and Collin, Olivier and Kashyap, Suraj and Guay, Nathan and Lavoie-April, Samuel}, abstractNote = {This data submission contains the complete technical design, baseline validation, and long-term testing framework compiled during Budget Period 1 (BP1) of the Oneka LEAP project (DOE Award No. DE-EE0010982). The data and accompanying reports document the iterative Front-End Engineering Design (FEED) and mechanical optimization of the 100 m^3/day Iceberg wave-powered desalination platform (internal identifier H2). The primary focus of this package is the engineering data, design specifications, and validation plans generated to systematically de-risk and improve the operational reliability, cost-efficiency, and component life of marine-facing subsystems.

The technical files and datasets bundled within this submission include:
- (D9.5.1) Front-End Engineering Design (FEED) Report: Design blueprints, structural modifications, layout shifts, technical specifications, and thermodynamic membrane optimization calculations for the H2 Iceberg buoy platform.
- (D2.4.1) Initial Laboratory Testing \& Reliability Baseline Report: Comprehensive dataset analysis compiling 1,418 hours of continuous, dynamic loop operation under simulated regular and irregular Joint North Sea Wave Project (JONSWAP) wave regimes on a dedicated hydraulic test bench. Includes stage-by-stage hydraulic efficiency mapping and component Mean Time to Failure (MTTF) metrics.
- (D4.5.1, D5.4.1, D7.4.1) Subsystem Innovation \& Prototyping Analyses: Sizing calculations, material forensic studies, and hydraulic diagrams validating key design changes: specifically, the integration of a hard-and-soft seated check valve, an automated reverse osmosis (RO) membrane thermal-preservation loop, and a metal-on-metal back pressure regulator (BPR).
- (D6.4.1) Alternative Mechanical Intake Analysis: Photographic biofouling profiles from in-situ ocean trials alongside engineering concepts for a wave-driven, weighted mechanical brush assembly to prevent 50-micron strainer clogging.
- (D3.1.1) LEAP Field Testing \& Marine Operations Plan: The complete operational task roadmap, instrumented sensor layout, weekly/monthly preventative maintenance parameters, and the standardized sea installation Standard Operating Procedure (SOP). }, url = {https://mhkdr.openei.org/submissions/718}, year = {2026}, howpublished = {Marine and Hydrokinetic Data Repository, Oneka Technologies, https://mhkdr.openei.org/submissions/718}, note = {Accessed: 2026-09-17} }

Details

Data from Jul 16, 2026

Last updated Aug 28, 2026

Submitted Jul 16, 2026

Organization

Oneka Technologies

Contact

Antoine Gagné

819.806.2217

Authors

Joel Dion

Oneka Technologies

Susan Hunt

Oneka Technologies

Olivier Collin

Oneka Technologies

Suraj Kashyap

Oneka Technologies

Nathan Guay

Oneka Technologies

Samuel Lavoie-April

Oneka Technologies

DOE Project Details

Project Name Marine Energy Systems Innovation At Sea

Project Lead Ben Goclano

Project Number EE0010982

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