This content is not included in your SAE MOBILUS subscription, or you are not logged in.

Design of a Thermoelectric Generator for Waste Heat Recovery Application on a Drivable Heavy Duty Vehicle

Journal Article
2017-01-9178
ISSN: 1946-391X, e-ISSN: 1946-3928
Published April 11, 2017 by SAE International in United States
Design of a Thermoelectric Generator for Waste Heat Recovery Application on a Drivable Heavy Duty Vehicle
Citation: Risseh, A., Nee, H., Erlandsson, O., Brinkfeldt, K. et al., "Design of a Thermoelectric Generator for Waste Heat Recovery Application on a Drivable Heavy Duty Vehicle," SAE Int. J. Commer. Veh. 10(1):26-44, 2017, https://doi.org/10.4271/2017-01-9178.
Language: English

References

  1. Olivier J. , Janssens-Maenhout G. , Muntean M. and Peters P. Trends in Global CO2 Emissions PBL Netherlands Environmental Assessment Agency Netherland 2014
  2. The 2020 climate and energy package 14 07 2015 http://ec.europa.eu/clima/policies/strategies/2020 15 07 2015
  3. ACEA http://acea.be/industry-topics/tag/category/environment-and-sustainability 15 07 2015
  4. Reducing emissions from transport http://ec.europa.eu/clima/policies/transport 01 07 2014
  5. Ping W. , Chunjun J. , Bin T. and Xigeng S. Effect of Common Rail System on Vehicle Engine Combustion Performance Optoelectronics and Image Processing (ICOIP), 2010 International Conference on Haiko 2010
  6. Kang H. , Hanbao C. , Jianwen Q. and Shijie A. The exploration of HCCI combustion in the high-power direct-injection diesel engine Computing, Control and Industrial Engineering (CCIE), 2011 IEEE 2nd International Conference on Wuhan 2011
  7. Arsie , I. , Cricchio , A. , Pianese , C. , De Cesare , M. et al. A Comprehensive Powertrain Model to Evaluate the Benefits of Electric Turbo Compound (ETC) in Reducing CO2 Emissions from Small Diesel Passenger Cars SAE Technical Paper 2014-01-1650 2014 10.4271/2014-01-1650
  8. Hatami M. , Ganji D. D. and Gorji-Bandpy M. A review of different heat exchangers designs for increasing the diesel exhaust waste heat recovery Renewable and Sustainable Energy Reviews 37 168 181 2014
  9. Hountalas , D. , Katsanos , C. , and Lamaris , V. Recovering Energy from the Diesel Engine Exhaust Using Mechanical and Electrical Turbocompounding SAE Technical Paper 2007-01-1563 2007 10.4271/2007-01-1563
  10. Thomas , J. Drive Cycle Powertrain Efficiencies and Trends Derived from EPA Vehicle Dynamometer Results SAE Int. J. Passeng. Cars -Mech. Syst. 7 4 1374 1384 2014 10.4271/2014-01-2562
  11. Liming F. , Wenzhi G. , Hao Q. and Bixian X. Heat Recovery from Internal Combustion Engine with Rankine Cycle Power and Energy Engineering Conference (APPEEC), 2010 Asia-Pacific Chengdu 2010
  12. Wei M. , Fang J. , Ma C. and Danish S. N. Waste heat recovery from heavy-duty diesel engine exhaust gases by medium temperature ORC system Science China Technological Sciences 54 10 2746 2753 2011
  13. Amicabile S. , Lee J.-I. and Kum D. A comprehensive design methodology of organic Rankine cycles for the waste heat recovery of automotive heavy-duty diesel engines Applied Thermal Engineering 87 574 585 2015
  14. Haidar J. G. and Ghojel J. Waste heat recovery from the exhaust of low-power diesel engine using thermoelectric generators Thermoelectrics, Proceedings ICT, International Conference on Beijing 2001
  15. Kahn A. R. , Hixson J. D. , Puffer J. E. and Bakken E. Three-Years' Clinical Experience with Radioisotope Powered Cardiac Pacemakers Biomedical Engineering, IEEE Transactions on BME-20 5 326 331 1973
  16. Dyches P. Radioisotope Power Systems NASA http://solarsystem.nasa.gov/rps 06 08 2015
  17. Fisk L. A. Journey into the Unknown Beyond Science 309 2016 2017 2005
  18. Srinivasan M. and Praslad S. Advanced Thermoelectric Energy Recovery System in Light Duty and Heavy Duty Vehicles: Analysis on Technical and Marketing Challenges Power Electronics and Drives Systems, PEDS. International Conference on Kuala Lumpur 2005
  19. Bass J. , Elsner N. and Leavitt F. Performance of the 1 kW thermoelectric generator for diesel engines the International Conference on Thermoelectrics Kansas City, Missouri 1994
  20. Bass J. , Kushch A. and Elsner N. Thermoelectric Generator (TEG) for Heavy Diesel Trucks International Conference on Thermoelectrics: Proceedings ICT2001 Beijing 2001
  21. KUMAR S. , HEISTER S. D. , XU X. , SALVADOR J. R. and MEISNER G. P. Thermoelectric Generators for Automotive Waste Heat Recovery Systems Part II: Parametric Evaluation Journal of Electronic Materials 42 6 944 955 2013
  22. Matsubara K. Development of a high efficient thermoelectric stack for a waste exhaust heat recovery of vehicles Thermoelectrics, Proceedings ICT, Twenty-First International Conference on 2002
  23. Hussain , Q. , Brigham , D. , and Maranville , C. Thermoelectric Exhaust Heat Recovery for Hybrid Vehicles SAE Int. J. Engines 2 1 1132 1142 2009 10.4271/2009-01-1327
  24. Arsie , I. , Cricchio , A. , Marano , V. , Pianese , C. et al. Modeling Analysis of Waste Heat Recovery via Thermo Electric Generators for Fuel Economy Improvement and CO2 Reduction in Small Diesel Engines SAE Int. J. Passeng. Cars - Electron. Electr. Syst. 7 1 246 255 2014 10.4271/2014-01-0663.d
  25. DENG Y. , HU T. , SU C. and YUAN X. Fuel Economy Improvement by Utilizing Thermoelectric Generator in Heavy-Duty Vehicle Journal of Electronic Materials 1 8 2016
  26. Rowe D. Handbook of THERMOELECTRICS CRC Press LLC 1995
  27. Sootsman J. , Chung D. and Mercouri Kanatzidis New and Old Concepts in Thermoelectric Materials Angewandte Chemie International Edition 48 46 8616 39 2009
  28. Snyder G. J. and Toberer E. S. Complex thermoelectric materials Nature Materials 7 2 105 114 2008
  29. Rowe D. M. Thermoelectrics Handbook-MACRO TO NANO CRC Press Inc 2006
  30. Rosi F. Thermoelectricity and thermoelectric power generation Solid-State Electronics 11 9 849 848 1968
  31. Rosi F. , Hockings E. and Lindenblad N. SEMICONDUCTING MATERIALS FOR THERMOELECTRIC POWER GENERATION Radio Corporation of America 22 1961
  32. LaLonde A. D. , Pei Y. and Snyder G. J. Reevaluation of PbTe1-xIx as high performance n-type thermoelectric material Energy & Environmental Science 4 6 2090 96 2011
  33. Joshi G. , Yan X. , Wang H. , Liu W. , Chen G. and Ren Z. Enhancement in Thermoelectric Figure-Of-Merit of an N-Type Half-Heusler Compound by the Nanocomposite Approach Advanced Energy Materials 1 4 643 647 2011
  34. Heremans J. P. , Jovovic V. , Toberer E. S. , Saramat A. , Kurosaki K. , Charoenphakdee A. , Yamanaka S. and Snyder3 G. J. Enhancement of thermoelectric efficiency in PbTe by distortion of the electronic density of states Science 321 554 557 2008
  35. Yu B. , Zebarjadi M. , Wang H. , Lukas K. , Wang H. , Wang D. , Opeil C. , Dresselhaus M. , Chen G. and Ren Z. Enhancement of Thermoelectric Properties by Modulation-Doping in Silicon Germanium Alloy Nanocomposites Nano Lett 12 4 2077 82 2012
  36. Saramat A. , Svensson G. , Palmqvist A. E. C. , Stiewe C. , Mueller E. , Platzek D. , Williams S. G. K. , Rowe D. M. , Bryan J. D. and Stucky G. D. Large thermoelectric figure of merit at high temperature in Czochralski-grown clathrate Appl. Phys 99 23708 2006
  37. Horák J. , Čermák K. and Koudelka L. Energy formation of antisite defects in doped Sb2Te3 and Bi2Te3 crystals Journal of Physics and Chemistry of Solids 47 8 805 809 1986
  38. CHIZHEVSKAYA S. N. och SHELIMOVA L. E. Electroactive and electroinactive dopants in Bi2Te3 and their interaction with antisite defects Inorganic materials 31 9 1083 95 1995
  39. Borkowski K. and Przyłuski J. Investigation of vacuum deposition of Bi2Te3 - based thermoelectric materials Materials Research Bulletin 22 3 381 387 1987
  40. Chung D.-Y. , Hogan T. P. , Rocci-Lane M. , Brazis P. , Ireland J. R. , Kannewurf C. R. , Bastea M. , Uher C. and Kanatzidis M. G. A New Thermoelectric Material: CsBi4Te6 Am. Chem. Soc 126 20 6414 28 2004
  41. Frobenius F. , Gaiser G. , Rusche U. and Weller B. Thermoelectric Generators for the Integration into Automotive Exhaust Systems for Passenger Cars and Commercial Vehicles Journal of Electronic Materials 0361-5235 1 8 2015
  42. Risseh A. and Nee H. P. Design of high-efficient converter for on-board Thermoelectric Generator Transportation Electrification Asia-Pacific, IEEE Conference and Expo Beijing 2014
  43. Risseh A. and Nee H. P. High-efficiency step-down converter for on-board thermoelectric generators on heavy duty vehicles Power Electronics and ECCE ,9th International Conference on Seoul 2015
  44. Femia N. , Petrone G. , Spagnuolo G. and Vitelli M. Optimization of Perturb and Observe Maximum Power Point Tracking Method IEEE TRANSACTIONS ON POWER ELECTRONICS 20 4 963 973 2005
  45. Thome J. R. Heat Transfer to Air-Cooled Heat Exchangers HEAT TRANSFER ENGINEERING DATA BOOK III Wolverine Tube, Inc 1 4

Cited By