Dr Alex Bevan 1, Dr David Book 1, Professor Andreas Z ü ttel 2 and Professor Rex Harris 1 1 University of Birmingham UK. 2 EMPA Z ü rich, Switzerland Performance.

Slides:



Advertisements
Similar presentations
HY-WIRE CAR.
Advertisements

INTRODUCTION. Seminar on IMPROVEMENT OF THERMAL EFFICIENCY BY RECOVERY OF HEAT FROM IC ENGINE EXHAUST.
Supercapacitor Energy Storage System for PV Power Generation
Unit 6 Fuel Cells
Unit 206: Domestic hot water systems
Alex Bevan Hydrogen materials Group th September 2009 Hydrogen Storage.
SUSTAINABLE ENERGY I COLLEGE OF TECHNOLGY November 2011 PROTON EXCHANGE MEMBRANE FUEL CELLS DESIGN OVERVIEW AND APPLICATION.
Cells & Batteries. Primary Cells these cells cannot be easily re-charged; once they die… they stay dead.
Reaping what we Sow The ever-increasing need for energy storage Andy West Senior Chemist.
FUEL CELL TECHNOLOGY An Alternative Form of Electrical Power.
Presented by Kareem El-Aswad on 12/4/2012 Article & Research by D. Mori & K. Hirose.
Hydrogen Fuel Cells as an Alternative Automobile Power Source By Kenneth Noyce Physics 3150 Energy and Sustainability.
1 Hydrogen and Fuel Cells. Hydrogen: The Reality - Hydrogen is the lightest of all gases - Its physical properties are incompatible with the requirements.
Airborne Wind Energy: Beyond Electricity Generation
بسم الله الرّحمن الرّحیم
FREE FROST HEAT EXCHANGER FOR CRYOGENIC AUTOMOTIVE PROPULSION.
Development of Chemical Hydrogen Methods for ITS Applications Venkatram R. Mereddy Department of Chemistry and Biochemistry University of Minnesota Duluth.
Harnessing Free Heat. The Energy Harness provides hot water using multiple heat sources, making the best use of low grade heat. It improves the efficiency.
POWER PLANT.
44 th Annual Conference & Technical Exhibition By Thomas Hartman, P.E. The Hartman Company Georgetown, Texas Sustainable Chilled Water.
Hydrogen Fuel Cells Maddie Droher. What is a fuel cell? An energy conversion device set to replace combustion engines and additional batteries in a number.
Hybrid Power Systems. INTRODUCTION In the last lecture, we studied –Principles of generation of electricity –Faraday’s law –Single phase and 3 phase generators.
Energy Storage Overview Thomas Johnson Alaska Center for Energy and Power ACEP (907) Alaska Center for Energy and Power
Introduction Muhajir Ab. Rahim School of Mechatronic Engineering.
Confidential & Proprietary. What happens when Wind /Solar do not meet requirements? What next?
Proton Exchange Membrane Fuel cell
Solar cooling systems.
Energy storage innovation: technology + policy Dr Jonathan Radcliffe University of Birmingham & Centre for Low Carbon Futures.
HYDROGEN AND FUEL CELLS. WHAT IS HYDROGEN? Hydrogen is the simplest element. An atom of hydrogen consists of only one proton and one electron.
1 Copyright © 2009, Hitachi, Ltd., All rights reserved. 1 Hitachi’s experience in developing Smart Grids Shin-ichi INAGE Renewable Energy & Smart Grid.
Electric Vehicle Teacher : RU-LI,LIN Student : 4A YING-TI,LAI 4A CHIH-TING,WANG.
Mechanical Energy Storage Guided by: - Presented by: - Mr.S.K. Choudhary DINESH SAHU Lecturer B.E. (VI semester) 0133ME
Power Generation from Renewable Energy Sources Fall 2013 Instructor: Xiaodong Chu : Office Tel.:
1 FIELD DEMONSTRATION Verizon site at Albany International Airport.
Energy conversion and storage Some energy sources have storage ‘built in’ Fossil fuels Biofuels Hydro power (to some extent) Others are available on demand.
TECHNICAL SEMINAR ON HYBRID ELECTRIC VEHICLES PRESENTED BY:Sanjib ku.Dey Adm no:27I&E/2K.
1 PRESENTEDBY :- vinod rawat Me(b)  INTRODUCTION  HISTORY OF ENERGY  REQUIREMENT OF ENERGY STORAGE  DIFFERENT TYPES OF ENERGY STORAGE.
1 © Alexis Kwasinski, 2012 Kitakyushu smart community.
Heliocentris Commercial Confidential 1 Integration of Industrial Fuel Cells in Technical Applications Using the NEXA ® Training System Dr. Claus Fischer.
CHAPTER Fuel Cells and Advanced Technologies 43 Copyright © 2016 by Pearson Education, Inc. All Rights Reserved AUTOMOTIVE ELECTRICAL AND ENGINE PERFORMANCE.
Portable Direct Methanol Fuel Cell Power Supply/Battery Charger
Chapter 27 – Cells and Batteries
 fuel cell = device that generates electricity by a chemical reaction.  Every fuel cell has two electrodes, one positive and one negative, called, respectively,
A Hybrid Fuel Cell – Battery Power Supply Connections 2006, ECE Graduate Symposium Presented by Edward Chan, M.A.Sc. Candidate Supervisor: Professor Francis.
Energy, Power and Climate Change
Racing With Hydrogen Fuel Cell Cars Hydrogen is #1 on the Periodic Table ↓
CAD Examples Jianlang (Simon) Mai Address: 67 Kentish Cres, Scarborough, Ontario Phone: Bachelor of Applied.
CH 4 TYPES OF ENERGY STORAGE DR. M A Islam EEE, IIUC.
Hydrogen Fuel Cell & Photovoltaics. Photovoltaics.
Diagnosis and Troubleshooting of Automotive Electrical, Electronic, and Computer Systems, 6/e - By James D. Halderman Copyright © 2012, 2010, 2005, 2001,
Hydro WHY PRODUCTIONSTORAGE HARVESTING ENERGY BENEFITS PRACTICALITY The demand for energy is increasing while the finite supply of fossil fuel is being.
Fuel Cells and Advanced Technologies 29 © 2013 Pearson Higher Education, Inc. Pearson Prentice Hall - Upper Saddle River, NJ Advanced Automotive.
Hydrogen Fuel And its place in our future. Some Chemistry 2 H 2 + O 2 2 H 2 O kJ.
Fuel cell.
Thermal Energy Storage Thermal energy storage (TES) systems heat or cool a storage medium and then use that hot or cold medium for heat transfer at a later.
HYDROGEN Hydrogen is the lightest element and the most abundant chemical substance in nature, constituting roughly 75% of the Universe's mass Fuel.
ENERGY NOTES MS. FISHER CHAPTER THREE NOTES: ENERGY Section 3.1-Energy exists in different forms Just about everything you see happening around.
Fuel cell is an electrochemical device converts the chemical energy taken from fuel to electrical energy.
By Mark Oxley and James Robeson.  More than 85% of the energy used in the United States is supplied by fossil fuels [1].  Our project’s goal is to create.
ERGA'S HYBRID BAKU
Next Generation Flow Batteries for Grid Scale Energy Storage June 2012 EnStorage Confidential Information.
Nabil Reza.  Off-peak electricity is used to power a motor/generator that drives compressors to force air into an underground storage reservoir.  When.
Advanced Energy Storage: Flywheel Storage Flywheels store off-peak energy as kinetic energy. Connected to engine crankshafts and are larger the smaller.
HEV Fundamentals Hybrid electric vehicles (HEVs) are vehicles that combine an internal combustion engine (ICE) with an electrical traction system. It usually.
Design, Evaluation and Application of a Fuel Cell Vehicle
Fluid Power systems Zonal hydraulics - industrial case 10 October 2017
Presentation by Shreenithi Lakshmi Narasimhan
Determining the optimal placements of renewable power generation systems using regional geographic information system Prof. Tyagunov M. G. , PhD Zay Yar.
Fuel Cells.
FIGURE 41-1 Ford Motor Company has produced a number of demonstration fuel-cell vehicles based on the Ford Focus.
Presentation transcript:

Dr Alex Bevan 1, Dr David Book 1, Professor Andreas Z ü ttel 2 and Professor Rex Harris 1 1 University of Birmingham UK. 2 EMPA Z ü rich, Switzerland Performance Key Objectives Energy performance of the boat was monitored, with speed data being provided through GPS measurements. The motor power requirements vs. speed (fig 9) shows an exponential relationship (fitted line). The theoretical range of the boat (fig 10) has been calculated based on the energy/ speed requirement. Utilizing a fully charged battery stack with 47kWhrs of energy and 2.5kg of hydrogen. The metal hydride/ fuel cell combination increases the boat range by 66%  Provide vital practical data on the on-board use of hydrogen as an energy store.  Develop the necessary local scale hydrogen infrastructure which could provide a model and a catalyst for a much larger scale operation throughout the entire inland waterway network, with Birmingham as the hub.  Develop technical innovations which will lead to wider exploitation of the energy storage and propulsion systems.  Demonstrate an early, practical and economic alternative to diesel canal boats. Figure 9 Power requirement vs. Speed Figure 10 Theoretical boat range vs. Speed Key features Hydride store has a significantly faster charging rate than the batteries The craft will have a longer range of operation in the hybrid form before needing access to electric charging facilities Batteries can be “trickle-charged” using solar panels, wind and water generators. PM electric motor can also serve as a generator Fuel cell would prefer to operate at a constant load and any variability can be taken up by the battery stack Hot water (80°C) supplied by fuel cell can be used to heat store and living space Unlike batteries, hydride stores will not discharge on standing idle, even for prolonged periods Other advantages (and disadvantages) will be revealed by operational experience Potential Advantages of a Hybrid System  Solid state metal hydride store  1kW ReliOn PEM fuel cell (fig 2)  Computer monitoring and control (fig 3)  10kW NdFeB-based drive motor (Fig 4)  47kWhr lead acid battery stack  Display area with LCD screen Project contact: Prof Rex Harris ( Tel: +44-(0) web: Hydrogen also plays a crucial role in the manufacture of the NdFeB sintered magnets employed in the electric motor. The Hydrogen Store Based on 26kg of Laves-phase composition Ti 0.93 Zr 0.05 (Mn 0.73 V 0.22 Fe 0.04 ) 2 powder. Each of the 5 storage modules (fig 5) contains 7 connected stainless steel tubes which are each surrounded by a water cooling jacket. This provides 28m 3 of pure hydrogen at STP (fig 6). Based on the hydrogen consumption of the ReliOn fuel cell, this is equivalent to 31kWhrs of stored energy. Thermal management of the storage units is accomplished by heat exchanging with canal water (fig 7), and the charging characteristics of one hydride module are shown in figure 8. Hydride module Fuel cell Gas distribution Motor Heat exchanger Canal water in Water pump (1) Filter Water pump (2) Expansion tank Canal water out Hydride modules Antifreeze Hydrogen charging vs. time Figure 5 Stainless steel storage modules Figure 6 PCT diagram Figure 7 Thermal management Figure 8 Charging characteristics of one hydride module, showing (a) accumulated flow of hydrogen with and without controlling the (b) water jacket temperature (a) (b) Boat Conversion 5 cylinders, each containing 26 kg of metal hydride power. Gives about 2.5 kg of hydrogen. Operating pressure is < 10 bar PEM Fuel Cell Batteries & Motor Start Finish Figure 2 PEM Fuel cell PEM 1kW FUEL CELL Figure 1 Energy flow diagram Figure 3 Computer monitoring systems Drive belt Motor Propeller shaft Figure 4 NdFeB Motor HYDROGEN SOLID STATE STORE 2.5kg H2 Throughout the world there is a huge effort to develop an effective, solid state, reversible, lightweight hydrogen store for road transport applications. There are, however, much less demanding transport applications which can employ established intermetallic metal hydrides as hydrogen stores. Development of these systems would allow solid state storage technologies to gain a “toe-hold” and hence accumulate invaluable operating experience. At Birmingham (and in collaboration with EMPA Switzerland) we have been developing a hybrid electric canal boat using a combination of a NdFeB-type permanent magnet electric motor, a lead acid battery stack and a PEM fuel cell supplied by a (TiV)(FeMn) 2 - metal hydride store (fig 1) The boat weighs 12 tonnes and the volume and weight (350 kg; metal frame, tank and metal hydrides) of the hydrogen storage system can readily be accommodated on the vessel, replacing the existing ballast.