1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review ADVANCED INTEGRATION OF POWER TAKE-OFF IN VORTEX INDUCED VIBRATIONS AQUATIC CLEAN.

Slides:



Advertisements
Similar presentations
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review The Water-to-Wire (W2W) Project Dr. Edward C. Lovelace Free Flow Power
Advertisements

1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Underwater Active Acoustic Monitoring (AAM) Network for Marine and Hydrokinetic.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review M3 Wave Energy Systems (TRL System) PI: Mike Morrow M3 Wave Energy Systems.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Validation of W4e Hydropower Turbine Generator PI Henry W Russell Walker Wellington,
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Marine Energy Technology Advancement Partnership (METAP) Hoyt Battey DOE Water.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review OTEC Cold Water Pipe-Platform Sub-System Dynamic Interaction Validation Lockheed.
1 | Program Name or Ancillary Texteere.energy.gov Technology to scavenge low-head hydropower in existing waterways, canals and streams Water Power Peer.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Schneider Linear hydroEngine ™ (SLH) Timing Belt Powertrain PI: Abe Schneider.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Advanced Anchoring Technology Dallas Meggitt Sound & Sea Technology, Inc.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review [Project/Subtask Title] [Presenter] [Organization] [Contact Info] [Date] [Title.
Program Name or Ancillary Texteere.energy.gov Wind and Water Power Technologies Office United States Department of Energy Water Power Program: Hydropower.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Deployment and Testing of the Alden Fish-Friendly Turbine by EPRI, Alden Research.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Sacramento Municipal Utility District Iowa Hill Pumped-storage Development PI:
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Active Acoustic Deterrence of Migratory Whales Steve Kopf, Program Manager Pacific.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Water Use Optimization: Hydrologic Forecasting Presenter: Mark Wigmosta Organization:
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review [Annex IV] Hoyt Battey Andrea Copping DOE Water Power Program
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review River Devices to Recover Energy with Advanced Materials(River DREAM) Brent Crenshaw.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review 2011 Tidal Energy System for On-shore Power Generation Dr. Allan Bruce Sunlight.
Tidal wave energy, also called tidal energy, is a form of hydropower that converts the energy of tides into electricity or other useful forms of power.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Benchmark Modeling of the Near- field and Far-field Wave Effects of Wave Energy.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Tools & Methods to Measure/Predict Environmental Impacts: Effects on the Physical.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Three Port Marine Power Electronics Conversion System Mark Holveck Princeton.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Siting Study Framework and Survey Methodology for Marine and Hydrokinetic Energy.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Sustainable Small Hydropower Innovative System Testing (1.2) Department of Energy,
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Modular Wave Energy Transfer (WET) Jane Vvedensky Shift Power Solutions
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Wave Energy Resource Assessment and GIS Database for the U.S. Paul T. Jacobson.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Direct Drive Wave Energy Buoy Ken Rhinefrank [Columbia Power Technologies, Inc.]
Wind Energy. What is Wind Energy? Wind energy is a form of energy conversion in which turbines convert the kinetic energy of wind into mechanical or electrical.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Advanced, High Power, Next Scale, Wave Energy Conversion Device Dr. Philip R.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Near Space Systems Inc. Small Hydropower Research and Development Technology.
1 | Wind and Water Power Programeere.energy.gov Development of a wave-actuated electric power take-off device 2011 Water Power Peer Review Meeting Development.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review 51-Mile Hydroelectric Power Project PI: Jim Gordon Earth By Design, Inc.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review The Development of Open, Water-Lubricated Polycrystalline Diamond Thrust Bearings.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review A First Assessment of U.S. In-Stream Hydrokinetic Energy Resources Since the.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Sensor Fish Redesign Collaboration Z. (Daniel) Deng Thomas J. Carlson Pacific.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Reedsport PB150 Deployment and Ocean Test Project Dr. Philip R. Hart Ocean Power.
ABSTRACT Hydropower (from hydro, meaning water) is energy that comes from the force of moving water. The fall and movement of water is part of a continuous.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Northwest National Marine Renewable Energy Center Belinda A. Batten Oregon State.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Acoustic Monitoring of Beluga Whale Interactions with Cook Inlet Tidal Energy.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review WET-NZ Multi-Mode Wave Energy Converter Advancement Project Justin Klure, Program.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Acoustic Effects of Hydrokinetic Tidal Turbines Dr. Brian Polagye University.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review A-WEC Franc Mouwen Wavebob LLC November 2011.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review OCGen™ Module Mooring Project Jarlath McEntee Ocean Renewable Power Company
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review MHK Research, Tools, and Methods Richard Jepsen Sandia National Labs
PSC 4011 Electricity: What’s the connection?. PSC 4011 Energy: Transformations & Uses.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review SubTask CH TD Day-ahead Scheduling and Real-time Operations Tool Conventional.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Ocean Thermal Energy Extraction Visualization Matthew Ascari Lockheed Martin.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review PB500, 500kW Utility-Scale PowerBuoy Project Dr. Philip R. Hart Ocean Power Technologies.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Sustainable Small Hydropower System and Component Development (1.1) Department.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Permitting and Planning Simon Geerlofs PNNL Simon Geerlofs
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Integrated Basin Scale Hydropower Opportunity Assessment Initiative Simon Geerlofs.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Cycloidal Wave Energy Converter TRL Advancement to Level 4 Dr. Stefan G. Siegel,
By: Glennie and Mika. We would like to have this be Michigan`s Ideal Energy Resources in 2020.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review THOR’ s Power Method for Hydrokinetic Devices Turner Hunt THOR Energy Group LLC.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Environmentally Benign and Permanent Modifications to Prevent Biofouling on Marine.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Assessment of Energy Production Potential from Ocean Currents along the United.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Poncelet Kinetics RHK100 Prototype Steven Selvaggio Whitestone Power and Communications.
1 | Program Name or Ancillary Texteere.energy.gov Percheron Power, LLC’s Proof of Power Project on Potholes East Canal (POP ‐ PEC) 2011 Water Power project.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review An Assessment of Lifecycle Cost in the U.S. over Time Mirko Previsic RE Vision.
Wind Power A Renewable Energy Source By Katie Jamson.
WIND. A wind turbine is a rotating machine which converts the kinetic energy in wind into mechanical energy. If the mechanical energy is used directly.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Assessment of Energy Production Potential from Tidal Streams in the United States.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Abrasion Testing of Critical Components of Hydrokinetic Devices Monty Worthington.
Heat as a By-Product: A log burns in a campfire, and chemical energy is changed to light and heat. This energy conversion is desired in a campfire. Heat.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review MHK MA\Categorizing and Evaluating the Effects of Stressors M. Grippo and I.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Reference Model Development Richard Jepsen Sandia National Labs
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Modeling the Physical and Biochemical Influence of Ocean Thermal Energy Conversion.
1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review Assessment of the Environmental Effects of Hydrokinetic Turbines on Fish: Desktop.
By: Tiffanie Thornton. Hydroelectric Power Diagram.
A resource that replenishes them selves through natural process within a human lifespan is a __________ resource. Nonrenewable Biomass Renewable Fossil.
Presentation transcript:

1 | Program Name or Ancillary Texteere.energy.gov Water Power Peer Review ADVANCED INTEGRATION OF POWER TAKE-OFF IN VORTEX INDUCED VIBRATIONS AQUATIC CLEAN ENERGY Gus Simiao Vortex Hydro Energy November, 2011

2 | Wind and Water Power Programeere.energy.gov VIVACE Technology

3 | Wind and Water Power Programeere.energy.gov Purpose, Objectives, & Integration The VIVACE converter is a transformational technology. It taps into a vast new source of clean and renewable energy, that of water currents as slow as 2 to 4 knots, previously off limits to conventional turbine technology that target rivers with water currents greater than 4 knots. The vast majority of river/ocean currents in the United States are slower than 3 knots.

4 | Wind and Water Power Programeere.energy.gov Technical Approach 1.Increase the conversion efficiency from hydrokinetic energy to cylinder kinetic energy. 2.Increase the conversion efficiency from the cylinder kinetic energy to electric energy generation. 3.Perform open water testing on an improved VIVACE system that will incorporate the improvements obtained from objectives 1 and 2.

5 | Wind and Water Power Programeere.energy.gov Plan, Schedule, & Budget Schedule Initiation date: 9/1/2010 Planned completion date: 12/31/2012 Budget: Planned and actual budget are tracking very closely 15% of project budget expended as of August 2011 Budget History FY2009FY2010FY2011 DOECost-shareDOECost-shareDOECost-share $146K$110K

6 | Wind and Water Power Programeere.energy.gov Accomplishments and Results VHE designed and is currently fabricating its next generation power takeoff (PTO) unit. The new PTO will incorporate lessons learned that improve hydrodynamic efficiency as well as conversion efficiency from hydrodynamic to electricity.

7 | Wind and Water Power Programeere.energy.gov Challenges to Date The most prevalent challenge has been software development for the power takeoff unit. VHE’s design process makes provision for several software iterations, culminating in a laboratory test at the U of Michigan Marine Hydrodynamics Lab

8 | Wind and Water Power Programeere.energy.gov Next Steps Laboratory testing of new PTO expected in November and December of 2011 and January 2012 Open water testing in the St. Clair River, at Port Huron, MI is scheduled for spring / summer 2011