The Knowledge Base provides access to information about technical and engineering aspects of marine energy. Relevant documents from around the world are compiled into a user-friendly table that displays all content available in Tethys Engineering. Results can be narrowed using the keyword filters on the right, or with search terms entered in the text box, including targeted searches (e.g., org:DOE, author:polagye). Content may also be sorted alphabetically by clicking on column headers. Some entries will appear on the next page.
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Title | Author | Date Sort ascending | Content type | Technology | Collection Method | Engineering |
---|---|---|---|---|---|---|
Reviewing the energy, environment, and economy prospects of Ocean Thermal Energy Conversion (OTEC) systems | Aresti, L.; Christodoulides, P.; Michailides, C.; et al. | Journal Article | OTEC | |||
Internal flow effects in OTEC cold water pipe: Finite element modelling in frequency and time domain approaches | Habib, M.; Adiputra, R.; Prabowo, A.; et al. | Journal Article | OTEC, Closed-Cycle | Modeling | Hydrodynamics, Substructure | |
Performance enhancement of the combined power-refrigeration cycle using a liquid-gas-gas ejector for ocean thermal energy conversion | Zhang, J.; Zhang, Z.; Zhou, S.; et al. | Journal Article | OTEC, Hybrid-Cycle | Modeling | Performance | |
Deep utilization of salinity gradient energy between concentrated seawater and river water by multi-stage reverse electrodialysis | Guo, Z.; Cui, W.; Ji, Z.; et al. | Journal Article | Salinity Gradient, Reverse Electrodialysis | Lab Data | Performance | |
Reliability assessment of the ocean thermal energy conversion systems through Monte Carlo simulation considering outside temperature variation | Ghaedi, A.; Sedaghati, R.; Mahmoudian, M.; et al. | Journal Article | OTEC | Modeling | Performance | |
Impacts of membrane fouling on nanofluidic salinity gradient energy conversion process | Mao, R.; Chen, X.; Long, R.; et al. | Journal Article | Salinity Gradient, Reverse Electrodialysis | Modeling | Performance | |
Vibrational Responses of an Ultra-Large Cold-Water Pipe for Ocean Thermal Energy Conversion: A Numerical Approach | Tan, J.; Zhang, Y.; Zhang, L.; et al. | Journal Article | OTEC, Closed-Cycle | Modeling | Hydrodynamics, Substructure | |
Report on the 4th Marine Energy Instrumentation and Data Workshop | Fao, R.; Ainsworth, R.; Bharath, A.; et al. | Report | Current, Wave, Salinity Gradient, OTEC | |||
The global techno-economic potential of floating, closed-cycle ocean thermal energy conversion | Langer, J.; Blok, K. | Journal Article | OTEC, Closed-Cycle | Modeling | ||
Design Optimization of Ocean Thermal Energy Conversion (OTEC) Considering the Off-Design Condition | Fan, C.; Chen, Y. | Journal Article | OTEC | Performance | ||
The potential of salinity gradient energy based on natural and anthropogenic resources in Sweden | Essalhi, M.; Avci, A.; Lipnizki, F.; et al. | Journal Article | Salinity Gradient | Modeling | ||
Role of permeability coefficients in salinity gradient energy generation by PRO systems with spiral wound membrane modules | Ruiz-García, A.; Tadeo, F.; Nuez, I. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis | Modeling | Materials, Performance | |
Experimental study of a miniature organic Rankine cycle unit using ocean thermal energy | Hu, Z.; Fan, C.; Gao, W.; et al. | Journal Article | OTEC, Closed-Cycle | Modeling, Scale Device | Performance, Power Take Off | |
High Ionic Flux Sub-Micro Channels Membrane Model for Salinity Gradient Power Generation | Jiang, J.; Lu, B.; Xu, Y.; et al. | Journal Article | Salinity Gradient, Reverse Electrodialysis | Modeling | Performance | |
Modeling and Optimization of a PCM-Based Ocean Thermal Energy Harvester for Powering Unmanned Underwater Vehicles | Ouro-Koura, H.; Jung, H.; Borca-Tasciuc, D-A.; et al. | Conference Paper | OTEC | Modeling | ||
Vortex induced vibrations of marine risers: validating turbulence models | Wang, C.; Vakis, A.; Veldman, A.; et al. | Conference Paper | Current, Wave, OTEC | Lab Data | Hydrodynamics, Structural | |
Enabling the Ocean Internet of Things with Renewable Marine Energy | Topper, M.; Jarnoux, N.; Costello, R.; et al. | Conference Paper | Current, Wave, Salinity Gradient, OTEC | Lab Data, Modeling | Control | |
Mission Analysis for Marine Renewable Energy To Provide Power for Marine Carbon Dioxide Removal | Niffenegger, J.; Greene, D.; Thresher, R.; et al. | Report | Current, Wave, OTEC | |||
Experimental study of the absorption refrigeration using ocean thermal energy and its under-lying prospects | Hu, Z.; Deng, Z.; Gao, W.; et al. | Journal Article | OTEC | Lab Data | Performance, Structural | |
Characterization of the Mechanical Properties of Low Stiffness Marine Power Cables through Tension, Bending, Torsion, and Fatigue Testing | Ringsberg, J.; Dieng, L.; Li, Z.; et al. | Journal Article | Current, Wave, Salinity Gradient, OTEC | Modeling | Materials, Structural | |
4E analyses and multi-objective optimization for an innovative solar-ocean thermal energy conversion/air conditioning system | Tian, Z.; Zou, X.; Zhang, Y.; et al. | Journal Article | OTEC, Closed-Cycle | Modeling | Hybrid Devices, Performance | |
On technical issues for underwater charging of robotic fish schools using ocean renewable energy | Jin, L.; Cui, W. | Journal Article | Current, Wave, Salinity Gradient, OTEC | Modeling | Performance | |
Using Drifters Equipped with Acoustic Tags to Verify the Efficacy of an Array of Acoustic Receivers for Estimating Probability of Fish-Turbine Encounter | Wang, D.; Zheng, M.; Zhang, L.; et al. | Journal Article | OTEC | Modeling | Performance, Substructure | |
Harvesting Blue Energy Based on Salinity and Temperature Gradient: Challenges, Solutions, and Opportunities | Rastgar, M.; Moradi, K.; Burroughs, C.; et al. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis | Modeling | Materials, Performance | |
In-depth understanding of boosting salinity gradient power generation by ionic diode | Peng, R.; Li, T.; Song, H.; et al. | Journal Article | Salinity Gradient, Reverse Electrodialysis | Modeling | Materials, Performance | |
Assessment of the stiffened panel performance in the OTEC seawater tank design: Parametric study and sensitivity analysis | Lutfi, Y.; Adiputra, R.; Prabowo, A.; et al. | Journal Article | OTEC, Closed-Cycle | Modeling | Structural | |
Energy performance and flow characteristics of a NACA0009 hydrofoil with bending shrinkage groove and tip winglet | Huang, C.; Sun, M.; Lv, X.; et al. | Journal Article | Current, Oscillating Hydrofoil | Modeling | Hydrodynamics, Performance, Structural | |
Thermodynamic process control of ocean thermal energy conversion | Fan, C.; Wu, Z.; Wang, J.; et al. | Journal Article | OTEC | Modeling | Hydrodynamics, Performance | |
Theoretical analysis on extraction-ejection combined power and refrigeration cycle for ocean thermal energy conversion | Zhang, Z.; Yuan, H.; Mei, N. | Journal Article | OTEC, Hybrid-Cycle | Modeling | Performance, Structural | |
Thermodynamic Analysis of an Integrated OTEC-Based Multi-Generation Plant for Hydrogen and Freshwater Production | Ramachandran, C.; Arun Shal, U.; Ramachandran, S. | Conference Paper | OTEC, Hybrid-Cycle | Modeling | Hybrid Devices, Performance | |
Assessment of Current Blue Energy Technologies and Their Potential Applications on Romanian Water Resources | Radu, V.; Ivanov, A.; Vijdea, A.; et al. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis, Reverse Electrodialysis | |||
Hybrid solar photovoltaic and salinity-gradient based osmotic energy conversion system with synergistic performance enhancement | Ren, Q.; Hu, H.; Zeng, Q.; et al. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis | Lab Data, Modeling | Hybrid Devices, Performance, Structural | |
Heat transfer mechanism of cold-water pipe in ocean thermal energy conversion system | Mao, L.; Wei, C.; Zeng, S.; et al. | Journal Article | OTEC | Modeling | Performance | |
Salinity gradient energy conversion by custom-made interpolymer ion exchange membranes utilized in reverse electrodialysis system | Altıok, E.; Kaya, T.; Smolinska-Kempisty, K.; et al. | Journal Article | Salinity Gradient, Reverse Electrodialysis | Lab Data | Performance | |
Experimental study of a fully passive flapping hydrofoil turbine with a dual configuration and a coupling mechanism | Kim, J.; Kim, D-G.; Jung, S.; et al. | Journal Article | Current, Oscillating Hydrofoil | Lab Data | Performance, Structural | |
Biomimetic asymmetric GO/polymer nanocomposite membrane for energy harvesting | Hao, J.; Sun, Q.; Wang, W.; et al. | Journal Article | Salinity Gradient, Reverse Electrodialysis | Lab Data, Modeling | Materials, Performance | |
Experimental study on dynamic stability of vertical cantilevered pipe aspirating fluid immersed in various water depths | Ma, Y.; You, Y.; Zhang, J.; et al. | Journal Article | OTEC | Lab Data, Modeling, Test Center | Hydrodynamics, Performance, Structural | |
Energy harvesting performance of a tandem-hydrofoil based closely-interconnected tidal array | Wang, G.; Feng Ng, B. | Journal Article | Current, Oscillating Hydrofoil, Tidal | Lab Data, Modeling | Array Effects, Performance, Structural | |
Evaluation of a novel OTEC System composed of Uehara Cycle for power and refrigeration cogeneration | Xue, Y.; Bian, Y.; Liu, Y. | Journal Article | OTEC, Closed-Cycle | Modeling | Performance | |
Explore the influence of intermediate extraction on thermodynamic performance and economy of Uehara cycle | Zhu, K.; Bian, Y.; Liu, Y. | Journal Article | OTEC, Closed-Cycle | Modeling | Performance | |
OES Annual Report: An Overview of Ocean Energy Activities in 2022 | Ocean Energy Systems (OES) | Report | Current, Tidal, Wave, OTEC | |||
A multi-objective honey badger approach for energy efficiency enhancement of the hybrid pressure retarded osmosis and photovoltaic thermal system | Chen, Y.; Feng, G.; Chen, H.; et al. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis | Modeling | Grid Integration, Hybrid Devices, Performance, Structural | |
A transient model for clean electricity generation using Solar energy and ocean thermal energy conversion (OTEC) - case study: Karkheh dam - southwest Iran | Dezhdar, A.; Assareh, E.; Keykhah, S.; et al. | Journal Article | OTEC, Hybrid-Cycle | Modeling | Hybrid Devices, Performance | |
Sebou Estuary (Morocco) - A Potential Site for deployment of Pressure Retarded Osmosis convertor for salinity gradient power Production | Haddout, S.; Hoguane, A.; Priya, K. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis | Modeling | ||
OTEC and Advanced Deep Ocean Water Use for Kumejima: An Introduction | Martin, B.; Okamura, S.; Yasunuga, T.; et al. | Conference Paper | OTEC, Closed-Cycle | Field Data, Full Scale | Grid Integration, Performance | |
A generalized disjunctive programming model for the optimal design of reverse electrodialysis process for salinity gradient-based power generation | Tristán, C.; Fallanza, M.; Ibanez, R.; et al. | Journal Article | Salinity Gradient, Reverse Electrodialysis | Modeling | Structural | |
Industrial scale thin-film composite membrane modules for salinity-gradient energy harvesting through pressure retarded osmosis | Low, J.; Zhang, J.; Li, W.; et al. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis | Field Data, Lab Data | Materials, Performance | |
Performance Analysis of a 10 MW Ocean Thermal Energy Conversion Plant Using Rankine Cycle in Malaysia | Thirugnana, S.; Jaafar, A.; Rajoo, S.; et al. | Journal Article | OTEC, Closed-Cycle | Modeling | Performance | |
Performance evaluation of Ocean Thermal Energy Conversion (OTEC) stabilization based on risk analysis | Lim, S.; Lee, H.; Yoon, J.; et al. | Journal Article | OTEC, Closed-Cycle | Field Data, Full Scale | Performance, Substructure | |
A novel spiral wound module design for harvesting salinity gradient energy using pressure retarded osmosis | Abdelkader, B.; Navas, D.; Sharqawy, M. | Journal Article | Salinity Gradient, Pressure-Retarded Osmosis | Modeling |
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