5 Dewson HEATRIC PRES
Transcription
5 Dewson HEATRIC PRES
Printed Circuit Heat Exchangers for Supercritical CO2 Cycles MIT-Symposium on Supercritical CO2 cycle 6th March 2007 Stephen John Dewson 1 © 2007 Meggitt (UK) Ltd Content • • • • Heatric & PCHE Development Strategy Materials Engineering Design – Heat Exchanger Developments • • • Software and Modelling Nuclear Applications Conclusions 2 © 2007 Meggitt (UK) Ltd Meggitt PLC Aerospace Systems Division Aerospace Equipment Division HEATRIC Defence Systems Division Electronics Division Avica UK Avica USA Aerospace Braking Systems Division Endevco Dunlop Wheels & Brakes Nacesa / Piher Whittaker Controls Meggitt Defence Systems UK Meggitt Avionics Airdynamics Meggitt Defense Systems (USA) S-TEC Meggitt Safety Systems Western Design Vibro-Meter Meggitt Silicone Products Caswell DSS Dunlop Ice Protectin Cartwright Electronics Dunlop Precision Rubber Dunlop Equipment Serck Stewart Warner South Wind 3 © 2007 Meggitt (UK) Ltd Meggitt plc • • • • FTSE 250 company; market capitalisation (March 2006) ca. £1.5 billion ($2.9 billion) 5600 employees across 30 companies predominantly in USA, UK, Switzerland, China Focus on aerospace, defence systems and electronics sectors 2005 Results: – Turnover for 2005 up 30%, at £616 million ($1.29 billion) – Underlying profit before tax up 29%, at £116 million ($228 million) • Product development spend during 2005 was £35 million ($69 million), 5% of turnover 4 © 2007 Meggitt (UK) Ltd Heatric Printed Circuit Heat Exchangers Printed Circuit Reactors 5 © 2007 Meggitt (UK) Ltd Heatric • 1980 PCHEs developed at Sydney University • 1985 Heatric founded in Australia • 1990 Relocated to UK joined Meggitt group • 2006 70 staff, $35 million annual sales. • 2007 Factory Extension 6 © 2007 Meggitt (UK) Ltd PCHE Characteristics – space and weight savings Shell & Tube 108 tonnes PCHE 15 tonnes 7 © 2007 Meggitt (UK) Ltd PCHE Characteristics – temperature and pressure 8 © 2007 Meggitt (UK) Ltd PCHE Characteristics – versatile design Size and cost reduction by multistream heat transfer 9 © 2007 Meggitt (UK) Ltd PCHE Characteristics – construction 10 © 2007 Meggitt (UK) Ltd PCHE Construction 11 © 2007 Meggitt (UK) Ltd Heatric Development Strategy • Maximise: – Value – Growth • Balance: – Technology Strengths • Materials • Engineering design • Manufacturing – Commercial Opportunity • Oil and Gas • Chemical processing • Non fossil fuels – Market Understanding • 12 © 2007 Meggitt (UK) Ltd Energy Commercial Opportunity Technology Strengths Market Understanding PCHE Materials – diffusion bonding • • • • • Stainless steels 300 series Duplex UNS S31803 Titanium grade 1, 2 & 3 Nickel 200 & 201 Copper pre-2004 • Alloy 800H 2004 • • • • 253MA Alloy HX Alloy 617 Alloy 230 development 13 © 2007 Meggitt (UK) Ltd Materials - development Aluminium Coated PCHE Passages Diffusion Bonded Alloy 617 14 © 2007 Meggitt (UK) Ltd Heat Exchanger Developments – Platelet Design 15 © 2007 Meggitt (UK) Ltd Heat Exchanger Developments – IHX Concept • • • • • He vs. He or N2 IHX 600MW Design Temp 950ºC Alloy HX, 617 or 230 Weight < 100 tonnes 16 © 2007 Meggitt (UK) Ltd Heat Exchanger Developments – s-CO2 Concept • • • • • s-CO2 vs. s-CO2 or water 170MW 98% Effectiveness Design pressure 200 bar Weight < 75 tonnes 17 © 2007 Meggitt (UK) Ltd Heat Exchanger Developments – Helium IHX Concept • • • • • Helium vs. Helium 170MW 98% Effectiveness Design pressure 80 bar Weight < 75 tonnes 18 © 2007 Meggitt (UK) Ltd Heat Exchanger Developments – Diffusion Bonded Formed Plate Heat Exchanger (FPHE) 19 © 2007 Meggitt (UK) Ltd Heat Exchanger Developments – Diffusion Bonded Formed Plate Heat Exchanger (FPHE) • • • • Manufacture in Corrosion Resistant Alloys Weight Reduction Size Reduction Cost Savings 20 © 2007 Meggitt (UK) Ltd Bonded FPHE core 21 © 2007 Meggitt (UK) Ltd Current PCHE and FPHE Heat Exchangers Requirements PCHE FPHE High Temperatures 800°C+ (limited by material) 800°C+ (limited by material) High Pressures 500 Bar (Max Typical) 200 Bar (Max Typical) High Effectiveness 98% + 98% + Low Pressure Drop Based on Design Bigger channels High Compactness Highly Compact Erosion Resistance Limited by material Corrosion Resistance Limited by material Longer Life Limited by material Over 700 PCHEs in operation worldwide Over 20 tonnes of FPHEs sold since market launch in 2005 22 © 2007 Meggitt (UK) Ltd Software and Modelling • In-House Design Capabilities for: – Thermal Design – Hydraulic Design – Mechanical Design • • • Steady state and Transient Analysis Design models proven with operational experience Supported by 15 years testing at Sydney University 23 © 2007 Meggitt (UK) Ltd Software and Modelling – Transient Analysis Temperature °C PCU Trip Average Metal Temperatures 800 700 600 500 400 300 200 100 0 Cold Mid Hot 1 10 100 Time Seconds 24 © 2007 Meggitt (UK) Ltd 1000 10000 Software and Modelling – Validation • Transient Testing 25 © 2007 Meggitt (UK) Ltd Nuclear Applications • Helium Recuperators – operating temperatures 550°C – operating pressures 100 bar • Carbon Dioxide Recuperators – operating temperatures 450°C – operating pressures 200 bar • Intermediate Heat Exchangers – operating temperatures 1000°C – operating pressures 100 bar – He / He and He / N2 26 © 2007 Meggitt (UK) Ltd Nuclear Applications - Supplied • Helium Recuperators KAIST –operating temperatures 800°C –operating pressures 30 bar IST –operating temperatures 450°C –operating pressures 100 bar PBMR (design contract) –operating temperatures 500°C –operating pressures 86 bar 27 © 2007 Meggitt (UK) Ltd Nuclear Applications - Supplied Carbon Dioxide Recuperators • MIT – operating temperatures 650°C (design T 662oC) – operating pressures 200 bar ( design P 210 bar) • Argonne – operating temperatures 200°C – operating pressures 215 bar • TIT – operating temperatures 300°C – operating pressures 130 bar 28 © 2007 Meggitt (UK) Ltd Nuclear Applications – Commercial Experience Industry Govt. Agencies & Commissions Westinghouse Bechtel Bettis JAERI MHI Purdue Univ. IHI MIT Eskom Fuji Electric EDF CEA TIT Toshiba KAIST Argonne Natl. Lab IST HTR-E KHI Framatome PBMR GA Academic End Users 29 © 2007 Meggitt (UK) Ltd Conclusions • • • • • Heatric PCHE and FPHE Heat Exchangers are fully developed, commercially available, and capable of meeting the requirements of Generation IV. Heatric manufacture a wide range of PCHE, FPHE and PCR products. PCHE and FPHE have Thermal, hydraulic, mechanical and life characteristic fully developed. Continual leading edge product development. Have the engineering resource to undertake studies and development programmes. • Actively involved in nuclear applications since 1999 • A leading position for the supply of recuperators • The only currently available technology for the supply of high temperature IHX • Heatric are ideally placed to support the US nuclear renaissance. 30 © 2007 Meggitt (UK) Ltd www.heatric.com Smart engineering for extreme environments 31 © 2007 Meggitt (UK) Ltd