Crossref
journal-article
Elsevier BV
Energy Conversion and Management (78)
References
176
Referenced
1,159
-
Rowe David M. Chapter 1. Introduction. CRC Handbook of Thermoelectrics, D. M. Rowe; 1995.
(
10.1201/9781420049718
) {'year': '2006', 'series-title': 'Thermoelectrics Handbook Macro to Nano', 'author': 'Min', 'key': '10.1016/j.enconman.2017.02.070_b0010'}
/ Thermoelectrics Handbook Macro to Nano by Min (2006){'key': '10.1016/j.enconman.2017.02.070_b0015', 'first-page': '7', 'article-title': 'Theory of Thermoelectric Refrigeration and Generation', 'volume': 'vol. 121', 'author': 'Goldsmid', 'year': '2010'}
/ Theory of Thermoelectric Refrigeration and Generation by Goldsmid (2010)10.1007/s11664-012-2299-8
/ J Electron Mater / Thermoelectric power generator design for maximum power: it’s all about ZT by McCarty (2013)10.1016/S1359-4311(03)00012-7
/ Appl Therm Eng / Thermoelectrics: a review of present and potential applications by Riffat (2003)10.1016/j.applthermaleng.2013.09.008
/ Appl Therm Eng / Thermoelectrics: a review of present and potential applications by Zheng (2014){'key': '10.1016/j.enconman.2017.02.070_b0035', 'first-page': '128', 'article-title': 'A review: thermoelectric generators in renewable energy', 'volume': '4', 'author': 'Ahıska', 'year': '2014', 'journal-title': 'IJRER'}
/ IJRER / A review: thermoelectric generators in renewable energy by Ahıska (2014)- Hi-z.com – Home, n.d. <http://www.hi-z.com/> [accessed June 6, 2016].
- Thermoelectric Generator (TEG) Modules|II-VI Marlow n.d. <http://www.marlow.com/power-generators/standard-generators.html> [accessed June 6, 2016].
- Tecteg Power Generator - Tecteg Power Generator.com n.d. <http://tecteg.com/> [accessed June 6, 2016].
- Thermonamic home page n.d. <http://www.thermonamic.com/> [accessed June 6, 2016].
- Thermoelectric Modules|LairdTech n.d. <http://www.lairdtech.com/product-categories/thermal-management/thermoelectric-modules> [accessed June 6, 2016].
- KELK Ltd. n.d. <http://www.kelk.co.jp/english/> [accessed June 6, 2016].
- Quick ohm thermoelectric generator n.d. <http://www.quick-cool.com/> [accessed June 6, 2016].
- Kryotherm, Home Page n.d. <http://www.kryotherm.com/index.html> [accessed June 6, 2016].
-
Gordon B, Haxel B, Hedrick JB, Orris GJ. Rare Earth Elements—Critical Resources for High Technology|USGS Fact Sheet 087-02 n.d. <http://pubs.usgs.gov/fs/2002/fs087-02/> [accessed November 20, 2015].
(
10.3133/fs08702
) 10.1016/j.mattod.2013.09.015
/ Mater Today / Recent progress of half-Heusler for moderate temperature thermoelectric applications by Chen (2013)10.1016/j.rser.2013.12.030
/ Renew Sustain Energy Rev / Material and manufacturing cost considerations for thermoelectrics by LeBlanc (2014)- TEG-HH-8_module_spec_sheet n.d. <http://www.evidentthermo.com/> [accessed June 6, 2016].
- TEG-HH-15_module_spec_sheet n.d. <http://www.evidentthermo.com> [accessed June 6, 2016].
- Tegma n.d. <http://tegma.no/> [accessed June 6, 2016].
- Tollefsen TA, Engvoll MA, Løvvik OM, Larsson A. Method for pre-processing semiconducting thermoelectric materials for metallization, interconnection and bonding; 2016.
- tEcteg cmo-oxide-cmo-cascade-thermoelectric-power-modules n.d. <http://tecteg.com/cmo-oxide-cmo-cascade-800c-hot-side-thermoelectric-power-modules/> [accessed June 6, 2016].
- MODULE TEG1-PB-12611-6.0 spec sheet n.d. <http://tecteg.com/wp-content/uploads/2015/01/TEG1-PB-12611-6.0_CBH-1-Final-November-17th-update.pdf> [accessed February 9, 2015].
- Hotblock Onboard n.d. <http://www.hotblock.fr/> [accessed June 6, 2016].
- Romny-scientific magnesium silicide modules n.d. <http://romny-scientific.com> [accessed June 6, 2016].
- Alphabet Energy’s Thermoelectric Advances - Alphabet Energy n.d. <http://www.alphabetenergy.com/thermoelectric-advances/> [accessed June 6, 2016].
- Green Car Congress: Alphabet Energy introduces PowerModules for modular thermoelectric waste heat recovery; partnership with Borla for heavy-duty trucks n.d. <http://www.greencarcongress.com/2015/06/20150624-alphabet.html> [accessed June 6, 2016].
10.1038/nmat3635
/ Nat Mater / Engineered doping of organic semiconductors for enhanced thermoelectric efficiency by Kim (2013)10.1002/adma.201104305
/ Adv Mater / Organic thermoelectric materials and devices based on p- and n-Type Poly(metal 1,1,2,2-ethenetetrathiolate)s by Sun (2012)10.1002/adma.201305371
/ Adv Mater / Organic thermoelectric materials: emerging green energy materials converting heat to electricity directly and efficiently by Zhang (2014)10.3390/ma7096701
/ Materials / Review on polymers for thermoelectric applications by Culebras (2014)- Thermoelectric Generators (TEG) for Energy Harvesting Applications|otego n.d. <http://www.otego.de/en/> [accessed November 7, 2016].
- Energy harvesting and storage | CDT Ltd n.d. <https://www.cdtltd.co.uk/technology-scope/energy-harvesting-and-storage/> [accessed November 7, 2016].
{'year': '2016', 'series-title': 'Progress on flexible low-cost organic thermoelectric material and device development at CDT', 'author': 'Nikolaenko', 'key': '10.1016/j.enconman.2017.02.070_b0175'}
/ Progress on flexible low-cost organic thermoelectric material and device development at CDT by Nikolaenko (2016)10.1016/j.applthermaleng.2016.03.037
/ Appl Therm Eng / Optimized design for flexible polymer thermoelectric generators by Aranguren (2016)10.1016/j.enconman.2009.02.015
/ Energy Convers Manage / Thermoelectric automotive waste heat energy recovery using maximum power point tracking by Yu (2009)10.1007/s11664-014-3046-0
/ J Electron Mater / Hardware implementation of maximum power point tracking for thermoelectric generators by Maganga (2014){'key': '10.1016/j.enconman.2017.02.070_b0195', 'first-page': '1', 'article-title': 'Prototype combined heater/thermoelectric power generator for remote applications', 'author': 'Champier', 'year': '2013', 'journal-title': 'J Electron Mater'}
/ J Electron Mater / Prototype combined heater/thermoelectric power generator for remote applications by Champier (2013)10.1007/s11664-012-2460-4
/ J Electron Mater / Investigation of maximum power point tracking for thermoelectric generators by Phillip (2013)10.1109/TIE.2009.2025717
/ IEEE Trans Industr Electron / Analysis and design of maximum power point tracking scheme for thermoelectric battery energy storage system by Kim (2009){'key': '10.1016/j.enconman.2017.02.070_b0210', 'series-title': 'Energy Conversion Congress and Exposition (ECCE), 2012 IEEE', 'first-page': '2777', 'article-title': 'Simple, fast and accurate maximum power point tracking converter for thermoelectric generators', 'author': 'Montecucco', 'year': '2012'}
/ Energy Conversion Congress and Exposition (ECCE), 2012 IEEE / Simple, fast and accurate maximum power point tracking converter for thermoelectric generators by Montecucco (2012)10.1109/TPEL.2014.2313294
/ IEEE Trans Power Electron / Maximum power point tracking converter based on the open-circuit voltage method for thermoelectric generators by Montecucco (2015)10.1109/TPEL.2012.2219393
/ IEEE Trans Power Electron / High step-up DC/DC topology and MPPT algorithm for use with a thermoelectric generator by Laird (2013){'key': '10.1016/j.enconman.2017.02.070_b0225', 'series-title': 'Power Engineering Conference, 2008. AUPEC ’08', 'first-page': '1', 'article-title': 'Comparative study of maximum power point tracking algorithms for thermoelectric generators', 'author': 'Laird', 'year': '2008'}
/ Power Engineering Conference, 2008. AUPEC ’08 / Comparative study of maximum power point tracking algorithms for thermoelectric generators by Laird (2008)10.1016/j.renene.2016.05.001
/ Renewable Energy / A novel maximum power point tracker for thermoelectric generation system by Liu (2016)10.1016/j.apenergy.2013.12.028
/ Appl Energy / Accurate simulation of thermoelectric power generating systems by Montecucco (2014)10.1016/j.apenergy.2015.03.120
/ Appl Energy / Constant heat characterisation and geometrical optimisation of thermoelectric generators by Montecucco (2015)10.1016/j.energy.2014.02.030
/ Energy / Numerical optimization of the occupancy rate of thermoelectric generators to produce the highest electrical power by Favarel (2014)10.1039/C3EE41504J
/ Energy Environ Sci / $ per W metrics for thermoelectric power generation: beyond ZT by Yee (2013)- Cataldo RL, Bennett GL. U.S. space radioisotope power systems and applications: past, present and future, radioisotopes - applications in physical sciences; 2011.
{'key': '10.1016/j.enconman.2017.02.070_b0260', 'series-title': 'Fifty-Eight National Meeting of the American Institute of Chemical Engineers Philadelphia, Pennsylvania, December 5–9, 1965', 'article-title': 'Survey of electric power plants for space applications', 'author': 'Schwartz', 'year': '1965'}
/ Fifty-Eight National Meeting of the American Institute of Chemical Engineers Philadelphia, Pennsylvania, December 5–9, 1965 / Survey of electric power plants for space applications by Schwartz (1965)- Voyager, the interstellar mission n.d. <http://voyager.jpl.nasa.gov/spacecraft/index.html> [accessed September 24, 2015].
- Spacecraft Power for Cassini - NASA fact sheet; 1999.
- Radioisotope Thermoelectric Generator n.d. <http://solarsystem.nasa.gov/rps/rtg.cfm> [accessed September 24, 2015].
{'key': '10.1016/j.enconman.2017.02.070_b0280', 'series-title': 'STAIF 23rd Symposium on Space Nuclear Power and Propulsion', 'article-title': 'Status of skutterudite-based segmented thermoelectric technology components development at JPL', 'author': 'Caillat', 'year': '2006'}
/ STAIF 23rd Symposium on Space Nuclear Power and Propulsion / Status of skutterudite-based segmented thermoelectric technology components development at JPL by Caillat (2006){'key': '10.1016/j.enconman.2017.02.070_b0285', 'series-title': 'DOE Thermoelectric Applications Workshop', 'article-title': 'Advanced high-temperature thermoelectric devices', 'author': 'Caillat', 'year': '2009'}
/ DOE Thermoelectric Applications Workshop / Advanced high-temperature thermoelectric devices by Caillat (2009){'key': '10.1016/j.enconman.2017.02.070_b0290', 'series-title': 'Proceedings of Nuclear and Emerging Technologies for Space 2011', 'article-title': 'Advanced High Temperature Bulk Thermoelectric Materials', 'author': 'Fleurial', 'year': '2011'}
/ Proceedings of Nuclear and Emerging Technologies for Space 2011 / Advanced High Temperature Bulk Thermoelectric Materials by Fleurial (2011)- Alimov. Radioisotope Thermoelectric Generators - Bellona n.d. <http://bellona.ru/bellona.org/english_import_area/international/russia/navy/northern_fleet/incidents/31772> [accessed September 24, 2015].
- Welcome to Gentherm Global Power Technologies | Gentherm Global Power Technologies n.d. <http://www.genthermglobalpower.com/> [accessed September 24, 2015].
- Energy Flow Charts. Energy, Water, and Carbon Informatics Lawrence Livermore National Laboratory n.d. <https://flowcharts.llnl.gov/> [accessed December 4, 2015].
{'key': '10.1016/j.enconman.2017.02.070_b0310', 'series-title': '9th European conference on thermoelectrics', 'article-title': 'Impact of novel thermoelectric materials on automotive applications', 'author': 'Brignonea', 'year': '2011'}
/ 9th European conference on thermoelectrics / Impact of novel thermoelectric materials on automotive applications by Brignonea (2011){'key': '10.1016/j.enconman.2017.02.070_b0315', 'series-title': '3rd Thermoelectrics Applications Workshop, Amerigon, Irwnidale, CA', 'article-title': 'Thermoelectric generator performance for passenger vehicles', 'author': 'Crane', 'year': '2012'}
/ 3rd Thermoelectrics Applications Workshop, Amerigon, Irwnidale, CA / Thermoelectric generator performance for passenger vehicles by Crane (2012){'key': '10.1016/j.enconman.2017.02.070_b0320', 'series-title': '2nd Thermoelectrics Applications Workshop 2011', 'article-title': 'Overview of ford-DOE thermoelectric programs: waste heat recovery and climate control', 'author': 'Maranville', 'year': '2011'}
/ 2nd Thermoelectrics Applications Workshop 2011 / Overview of ford-DOE thermoelectric programs: waste heat recovery and climate control by Maranville (2011){'year': '2012', 'series-title': 'Thermoelectric opportunities for light-duty vehicles', 'author': 'Maranville', 'key': '10.1016/j.enconman.2017.02.070_b0325'}
/ Thermoelectric opportunities for light-duty vehicles by Maranville (2012){'key': '10.1016/j.enconman.2017.02.070_b0330', 'series-title': '3rd Thermoelectrics Applications Workshop 2012, BMW, Munich, Germany', 'article-title': 'State of the art prototype vehicle with a thermoelectric generator', 'author': 'Mazar', 'year': '2012'}
/ 3rd Thermoelectrics Applications Workshop 2012, BMW, Munich, Germany / State of the art prototype vehicle with a thermoelectric generator by Mazar (2012){'key': '10.1016/j.enconman.2017.02.070_b0335', 'series-title': '2nd Thermoelectrics Applications Workshop', 'article-title': 'Efficient and dynamic the BMW group roadmap for the application of thermoelectric generators', 'author': 'Eder', 'year': '2011'}
/ 2nd Thermoelectrics Applications Workshop / Efficient and dynamic the BMW group roadmap for the application of thermoelectric generators by Eder (2011){'key': '10.1016/j.enconman.2017.02.070_b0340', 'series-title': '3rd Thermoelectrics Applications Workshop 2012', 'article-title': 'Skutterudite thermoelectric generator for automotive waste heat recovery', 'author': 'Meisner', 'year': '2012'}
/ 3rd Thermoelectrics Applications Workshop 2012 / Skutterudite thermoelectric generator for automotive waste heat recovery by Meisner (2012){'key': '10.1016/j.enconman.2017.02.070_b0345', 'series-title': '2nd Thermoelectrics Applications Workshop 2011', 'article-title': 'Advanced thermoelectric materials and generator technology for automotive waste heat at GM', 'author': 'Meisner', 'year': '2011'}
/ 2nd Thermoelectrics Applications Workshop 2011 / Advanced thermoelectric materials and generator technology for automotive waste heat at GM by Meisner (2011){'key': '10.1016/j.enconman.2017.02.070_b0350', 'series-title': '3rd Thermoelectrics Applications Workshop 2012', 'article-title': 'RENOTER Project', 'author': 'Aixala', 'year': '2012'}
/ 3rd Thermoelectrics Applications Workshop 2012 / RENOTER Project by Aixala (2012)- Aixala L, Monnet V. Conclusion of RENOTER project (Waste Heat Recovery for Trucks and Passenger Cars). In: Junsch D, editor. Thermoelectrics Goes Automotive II; 2012. p. 241–59.
- Magnetto D. HeatReCar: first light commercial vehicle equipped with a TEG, Darmstadt; 2013.
10.1063/1.4731598
/ AIP Conf Proc / Reduced energy consumption by massive thermoelectric waste heat recovery in light duty trucks by Magnetto (2012)- European Commission : CORDIS : Projects & Results Service : Final Report Summary – HEATRECAR (Reduced energy consumption by massive thermoelectric waste heat recovery in light-duty trucks) n.d. <http://cordis.europa.eu/result/rcn/58791_en.html> [accessed December 2, 2015].
{'key': '10.1016/j.enconman.2017.02.070_b0375', 'first-page': '1', 'article-title': 'Thermoelectric generators for the integration into automotive exhaust systems for passenger cars and commercial vehicles', 'author': 'Frobenius', 'year': '2015', 'journal-title': 'J Electron Mater'}
/ J Electron Mater / Thermoelectric generators for the integration into automotive exhaust systems for passenger cars and commercial vehicles by Frobenius (2015)- Brunetti M, Cogliati A, Iannucci D, Scandroglio A. Aircraft capable of hovering having an exhaust duct with thermoelectric conversion circuit. Google Patents; 2015.
- Brillet C. Thermoelectric generation for a gas turbine. Google Patents; 2015.
- Kwok DW, Huang JP, Skorupa JA, Smith JW. Thermoelectric generation system. Google Patents; 2009.
10.1016/j.jpowsour.2010.12.015
/ J Power Sources / Numerical study of thermoelectric power generation for an helicopter conical nozzle by Kousksou (2011)- Chabas J. European Commission : CORDIS : Projects & Results Service : Final Report Summary – THETAGEN (Thermoelectric generator for engine control system) n.d. <http://cordis.europa.eu/result/rcn/164433_en.html> [accessed December 15, 2015].
{'key': '10.1016/j.enconman.2017.02.070_b0405', 'series-title': '2nd Thermoelectrics Applications Workshop 2011', 'article-title': 'Development of marine thermoelectric heat recovery systems', 'author': 'Wallace', 'year': '2011'}
/ 2nd Thermoelectrics Applications Workshop 2011 / Development of marine thermoelectric heat recovery systems by Wallace (2011)10.1007/s11664-012-2009-6
/ J Electron Mater / Waste heat recovery from a marine waste incinerator using a thermoelectric generator by Kristiansen (2012)10.1007/s11664-010-1189-1
/ J Electron Mater / Potential for usage of thermoelectric generators on ships by Kristiansen (2010)- Wlodkowski P, Sarnacki P, Wallace T. A-Hybrid-Marine-Vessel-–-Supplemented-by-a-Thermoelectric-Generator-TEG-Power-System-–-as-a-Case-Study-for-Reducing-Emissions-and-Improving-Diesel-Engine-Efficiency.pdf n.d. <http://iamu-edu.org/wp-content/uploads/2014/07/A-Hybrid-Marine-Vessel-%E2%80%93-Supplemented-by-a-Thermoelectric-Generator-TEG-Power-System-%E2%80%93-as-a-Case-Study-for-Reducing-Emissions-and-Improving-Diesel-Engine-Efficiency.pdf> [accessed December 31, 2015].
- Wallace T, Bailey M, Starbird N, Blackman A, Wallace C, Logus J, et al. Thermoelectric generator development efforts at the maine maritime academy. Thermoelectrics applications 2009; 2009.
- Geradts K, Sonnleitner W. Operation of an internal combustion engine. Google Patents; 2013.
10.1063/1.4731609
/ AIP Conf Proc / Thermoelectric generating system attached to a carburizing furnace at Komatsu Ltd., Awazu Plant by Kaibe (2012)10.1016/j.energy.2014.06.094
/ Energy / Computational and experimental study of a complete heat dissipation system using water as heat carrier placed on a thermoelectric generator by Aranguren (2014)10.1016/j.apenergy.2015.04.077
/ Appl Energy / Experimental investigation of the applicability of a thermoelectric generator to recover waste heat from a combustion chamber by Aranguren (2015)10.1007/s11664-015-3722-8
/ J Electron Mater / Research and development for thermoelectric generation technology using waste heat from steelmaking process by Kuroki (2015)10.1007/s11664-014-3094-5
/ J Electron Mater / Thermoelectric generation using waste heat in steel works by Kuroki (2014)10.1016/j.matpr.2015.05.104
/ Mater Today: Proceed / Study of thermoelectric generation unit for radiant waste heat by Kajihara (2015)10.1007/s11664-014-3543-1
/ J Electron Mater / A thermoelectric waste-heat-recovery system for Portland cement rotary kilns by Luo (2015){'key': '10.1016/j.enconman.2017.02.070_b0470', 'series-title': 'Proceedings of 15th international conference on thermoelectrics', 'first-page': '390', 'article-title': 'A stove-top generator for cold areas', 'author': 'Killander', 'year': '1996'}
/ Proceedings of 15th international conference on thermoelectrics / A stove-top generator for cold areas by Killander (1996)- IEA – Energy access database n.d. <http://www.worldenergyoutlook.org/resources/energydevelopment/energyaccessdatabase/> [accessed March 7, 2016].
10.1016/j.energy.2006.07.004
/ Energy / Evaluation of cooking energy cost, efficiency, impact on air pollution and policy in Nigeria by Anozie (2007)10.1016/S0360-5442(01)00043-3
/ Energy / Exposure from cooking with biofuels: pollution monitoring and analysis for rural Tamil Nadu, India by Parikh (2001)10.1016/S0140-6736(07)61257-4
/ The Lancet / Policies for accelerating access to clean energy, improving health, advancing development, and mitigating climate change by Haines (2007)- Brazil Background Study for a National Rural Electrification Strategy Aiming for Universal Access, March 2005 | ESMAP n.d. <http://www.esmap.org/node/338> [accessed March 8, 2016].
10.1016/j.rser.2007.01.008
/ Renew Sustain Energy Rev / Providing electricity access to remote areas in India: an approach towards identifying potential areas for decentralized electricity supply by Nouni (2008)10.1016/S0960-1481(02)00024-1
/ Renewable Energy / Low cost stove-top thermoelectric generator for regions with unreliable electricity supply by Nuwayhid (2003)10.1016/j.enconman.2004.07.006
/ Energy Convers Manage / Development and testing of a domestic woodstove thermoelectric generator with natural convection cooling by Nuwayhid (2005)10.1016/j.renene.2004.09.008
/ Renewable Energy / Design and testing of a locally made loop-type thermosyphonic heat sink for stove-top thermoelectric generators by Nuwayhid (2005)10.1016/j.biortech.2006.05.048
/ Bioresour Technol / Electrical performance analysis and economic evaluation of combined biomass cook stove thermoelectric (BITE) generator by Lertsatitthanakorn (2007){'key': '10.1016/j.enconman.2017.02.070_b0525', 'series-title': 'ETHOS 2005 Engineers in Technical and Humanitarian Opportunities of Service international stove research conference', 'article-title': 'Generating light from stoves using a thermoelectric generator', 'author': 'Mastbergen', 'year': '2005'}
/ ETHOS 2005 Engineers in Technical and Humanitarian Opportunities of Service international stove research conference / Generating light from stoves using a thermoelectric generator by Mastbergen (2005){'key': '10.1016/j.enconman.2017.02.070_b0530', 'series-title': 'ETHOS 2007 Engineers in Technical and Humanitarian Opportunities of Service international stove research conference', 'article-title': 'Field testing of stove-powered thermoelectric generators', 'author': 'Joshi', 'year': '2007'}
/ ETHOS 2007 Engineers in Technical and Humanitarian Opportunities of Service international stove research conference / Field testing of stove-powered thermoelectric generators by Joshi (2007){'key': '10.1016/j.enconman.2017.02.070_b0535', 'series-title': 'Open 2010: NCIIA’s 14th annual conference', 'article-title': 'The Twig Light: Affordable, Sustainable Lighting for Villagers in Rural Ghana', 'author': 'Rogers', 'year': '2010'}
/ Open 2010: NCIIA’s 14th annual conference / The Twig Light: Affordable, Sustainable Lighting for Villagers in Rural Ghana by Rogers (2010)10.1016/j.ijhydene.2010.02.093
/ Int J Hydrogen Energy / Development of thermoelectric generators for electrification of isolated rural homes by Rinalde (2010)10.1016/j.ijhydene.2012.01.177
/ Int J Hydrogen Energy / Design of innovative power conditioning system for the grid integration of thermoelectric generators by Molina (2012)10.1016/j.apenergy.2012.07.032
/ Appl Energy / Small scale electricity generation from a portable biomass cookstove: prototype design and preliminary results by O’Shaughnessy (2013)10.1016/j.esd.2014.01.009
/ Energy Sustain Develop / Field trial testing of an electricity-producing portable biomass cooking stove in rural Malawi by O’Shaughnessy (2014)10.1016/j.apenergy.2015.07.064
/ Appl Energy / Performance analysis of a prototype small scale electricity-producing biomass cooking stove by O’Shaughnessy (2015)10.1016/j.esd.2015.06.005
/ Energy Sustain Develop / Adaptive design of a prototype electricity-producing biomass cooking stove by O’Shaughnessy (2015)- Champier D, Rivaletto M, Strub F. TEGBioS :a prototype of thermoelectric power generator for biomass stoves. In: ECOS 2009, 22nd Internacional conference on efficiency, cost, optimization, simulation, and environmental impact of energy systems; 2009.
10.1016/j.energy.2009.07.015
/ Energy / Thermoelectric power generation from biomass cook stoves by Champier (2010)10.1016/j.energy.2011.01.012
/ Energy / Study of a TE (thermoelectric) generator incorporated in a multifunction wood stove by Champier (2011)10.13044/j.sdewes.2015.03.0020
/ J Sustain Develop Energy, Water Environ Syst / Thermoelectricity a promising complementary with efficient stoves in off grid areas by Favarel (2015)10.1016/j.applthermaleng.2016.03.114
/ Appl Therm Eng / Heat transfer and performance analysis of thermoelectric stoves by Najjar (2016)10.1016/j.egypro.2014.07.066
/ Energy Procedia / Study of combined rice husk gasifier thermoelectric generator by Lertsatitthanakorn (2014)- Mal R, Prasad R, Vijay VK, Verma AR, Tiwari R. Self – energy generating cookstove. Emerging Energy Technology Perspectives – A Sustainable Approach; 2014.
{'key': '10.1016/j.enconman.2017.02.070_b0605', 'article-title': 'Thermoelectric power generator intagrated cookstove : a sustainable approach of waste heat to energy conversion. ICAESA 2014, vol. 3, IJRET: International Journal of Research', 'author': 'Mal', 'year': '2014', 'journal-title': 'Eng Technol'}
/ Eng Technol / Thermoelectric power generator intagrated cookstove : a sustainable approach of waste heat to energy conversion. ICAESA 2014, vol. 3, IJRET: International Journal of Research by Mal (2014)- Biolite; 2015. <http://biolitestove.com/> [accessed September 25, 2015].
10.1016/j.applthermaleng.2015.11.032
/ Appl Therm Eng / Development of stove-powered thermoelectric generators: a review by Gao (2016){'key': '10.1016/j.enconman.2017.02.070_b0620', 'series-title': '28th International_and 7th European_Conference_on_Thermoelectrics', 'article-title': 'Micro-CHP Experiences with thermoelectric generators integrated in a wood pellet combustion unit', 'author': 'Friedl', 'year': '2009'}
/ 28th International_and 7th European_Conference_on_Thermoelectrics / Micro-CHP Experiences with thermoelectric generators integrated in a wood pellet combustion unit by Friedl (2009){'key': '10.1016/j.enconman.2017.02.070_b0625', 'article-title': 'Grid autarchy of automated pellets combustion systems by the means of thermoelectric generators', 'author': 'Hoftberger', 'year': '2010', 'journal-title': 'Konferenz Automotive Goes Thermoelectrics'}
/ Konferenz Automotive Goes Thermoelectrics / Grid autarchy of automated pellets combustion systems by the means of thermoelectric generators by Hoftberger (2010){'key': '10.1016/j.enconman.2017.02.070_b0630', 'series-title': 'European biomass conference and exhibition proceedings', 'article-title': 'Evaluating the transient behaviour of biomass based micro-chp systems – steam piston engine and integrated thermoelectric power generation', 'author': 'Friedl', 'year': '2010'}
/ European biomass conference and exhibition proceedings / Evaluating the transient behaviour of biomass based micro-chp systems – steam piston engine and integrated thermoelectric power generation by Friedl (2010)10.1016/j.egypro.2015.07.462
/ Energy Procedia / A combined heat and power system for solid-fuel stoves using thermoelectric generators by Montecucco (2015)10.1016/j.applthermaleng.2013.10.054
/ Appl Therm Eng / Analysis of a wooden pellet-fueled domestic thermoelectric cogeneration system by Alanne (2014)- Ecofan - Caframo Lifestyle Solutions; 2016. <http://www.caframolifestylesolutions.com/ecofan/> [accessed March 17, 2016].
- Fuel Usage Title Page-5 – Studie_Energieeinsparung_Ecofan_komplett.pdf; 2010. <http://www.ecofan.ch/pdf/Studie_Energieeinsparung_Ecofan_komplett.pdf> [accessed March 17, 2016].
{'key': '10.1016/j.enconman.2017.02.070_b0655', 'series-title': '9th European conference on thermoelectrics', 'article-title': 'Design and development of a TEG cogenerator device integrated in self standing gas heaters', 'author': 'Codecasa', 'year': '2011'}
/ 9th European conference on thermoelectrics / Design and development of a TEG cogenerator device integrated in self standing gas heaters by Codecasa (2011)10.1063/1.4731606
/ AIP Conf Proc / Design and development of a thermoelectric cogeneration device integrated in autonomous gas heaters by Codecasa (2012)10.1007/s11664-014-3297-9
/ J Electron Mater / Design and development of a TEG cogenerator device integrated into a self-standing natural combustion gas stove by Codecasa (2015)10.1016/j.applthermaleng.2013.09.008
/ Appl Therm Eng / Experimental study of a domestic thermoelectric cogeneration system by Zheng (2014)- Micropelt. Micropelt thermoelectric generators MPG-D751. n.d.
- Nextreme Laird. Microscale Thermal and Power Management n.d. <http://www.lairdtech.com/products/thermobility-wpg-1> [accessed May 31, 2016].
- Perpetua Power Source Technologies, Inc. | Energy harvesting solutions n.d. <http://perpetuapower.com/> [accessed June 1, 2016].
- Emerson Process Management - Wireless Power Module | Smart Wireless Battery | Emerson n.d. <http://www2.emersonprocess.com/en-us/brands/rosemount/wireless/smartpower-solutions/pages/index.aspx> [accessed June 1, 2016].
- Perpetua_power_puck_energy_harvesters_factsheet.pdf n.d. <https://www.gemeasurement.com/sites/gemc.dev/files/perpetua_power_puck_energy_harvesters_factsheet.pdf> [accessed June 1, 2016].
- ABB. Moisson énergétique Capteur de temperature autonome n.d. <https://library.e.abb.com/public/c901f23cbe6d7828c1257988005d6f79/47-51%201m102_FRA_72dpi.pdf> [accessed June 1, 2016].
{'key': '10.1016/j.enconman.2017.02.070_b0705', 'first-page': '14', 'article-title': 'Thermoelectric energy harvesting for building energy management wireless sensor networks', 'volume': '2013', 'author': 'Wang', 'year': '2013', 'journal-title': 'Int J Distrib Sens Netw'}
/ Int J Distrib Sens Netw / Thermoelectric energy harvesting for building energy management wireless sensor networks by Wang (2013)10.1007/s11664-009-0997-7
/ J Electron Mater / Aircraft-specific thermoelectric generator module by Samson (2010)10.1007/s11664-012-1928-6
/ J Electron Mater / Flight test results of a thermoelectric energy harvester for aircraft by Samson (2012){'key': '10.1016/j.enconman.2017.02.070_b0720', 'series-title': 'Proceedings power MEMS 2011', 'first-page': '454', 'article-title': 'Optimization of heat flow for phase change thermoelectric harvesters', 'author': 'Kiziroglou', 'year': '2011'}
/ Proceedings power MEMS 2011 / Optimization of heat flow for phase change thermoelectric harvesters by Kiziroglou (2011)10.1007/s11664-012-2468-9
/ J Electron Mater / Efficient power management for energy-autonomous wireless sensor nodes for aeronautical applications by Elefsiniotis (2013)10.1007/s11664-012-2411-0
/ J Electron Mater / Investigation of the performance of thermoelectric energy harvesters under real flight conditions by Elefsiniotis (2013)10.1016/j.sna.2013.11.036
/ Sens Actuators, A / A thermoelectric-based energy harvesting module with extended operational temperature range for powering autonomous wireless sensor nodes in aircraft by Elefsiniotis (2014)10.1007/s11664-013-2880-9
/ J Electron Mater / Thermoelectric energy harvesting using phase change materials (PCMs) in high temperature environments in aircraft by Elefsiniotis (2014)10.1016/j.matpr.2015.05.105
/ Mater Today: Proceed / A novel high-temperature aircraft-specific energy harvester using PCMs and state of the art {TEGs} by Elefsiniotis (2015)10.1016/j.enconman.2014.01.010
/ Energy Convers Manage / A novel self-powered wireless temperature sensor based on thermoelectric generators by Shi (2014)10.1016/j.apenergy.2015.12.036
/ Appl Energy / Generation of electricity from deep-sea hydrothermal vents with a thermoelectric converter by Xie (2016)10.1007/s11664-010-1230-4
/ J Electron Mater / Hybrid thermoelectric-photovoltaic generators in wireless electroencephalography diadem and electrocardiography shirt by Leonov (2010)10.1063/1.4731617
/ AIP Conf Proc / Thermoelectric generator hidden in a shirt with a fabric radiator by Leonov (2012)10.1051/epjap/2010121
/ Eur Phys J Appl Phys / Thermoelectric generator placed on the human body: system modeling and energy conversion improvements by Lossec (2010){'key': '10.1016/j.enconman.2017.02.070_b0775', 'article-title': 'Body heat thermoelectric energy harvesting for self-powered wearable electronics', 'author': 'Siddique', 'year': '2014', 'journal-title': 'ICST'}
/ ICST / Body heat thermoelectric energy harvesting for self-powered wearable electronics by Siddique (2014)-
Dziurdzia P, Brzozowski I, Bratek P, Gelmuda W, Kos A. Estimation and harvesting of human heat power for wearable electronic devices. IOP Conference Series: Materials Science and Engineering, vol. 104; 2016. http://dx.doi.org/10.1088/1757-899X/104/1/012005.
(
10.1088/1757-899X/104/1/012005
) {'key': '10.1016/j.enconman.2017.02.070_b0785', 'series-title': 'Wearable autonomous wireless electro-encephalography system fully powered by human body heat. Sensors', 'first-page': '1269', 'author': 'Torfs', 'year': '2008'}
/ Wearable autonomous wireless electro-encephalography system fully powered by human body heat. Sensors by Torfs (2008)- Van Bavel M, Leonov V, Yazicioglu RF, Torfs T, Van Hoof C, Posthuma N, et al. Wearable battery-free wireless 2-channel EEG systems powered by energy scavengers, vol. 94 Issue 7; 2008. p. 103–15.
{'key': '10.1016/j.enconman.2017.02.070_b0795', 'series-title': 'Thermal investigations of ICs and systems, 2009. THERMINIC 2009. 15th International Workshop on', 'first-page': '95', 'article-title': 'Thermal matching of a thermoelectric energy harvester with the environment and its application in wearable self-powered wireless medical sensors', 'author': 'Leonov', 'year': '2009'}
/ Thermal investigations of ICs and systems, 2009. THERMINIC 2009. 15th International Workshop on / Thermal matching of a thermoelectric energy harvester with the environment and its application in wearable self-powered wireless medical sensors by Leonov (2009)10.1038/nmat3013
/ Nat Mater / High-performance flat-panel solar thermoelectric generators with high thermal concentration by Kraemer (2011)10.1063/1.3642988
/ J Appl Phys / Modeling of concentrating solar thermoelectric generators by McEnaney (2011)10.1016/j.solener.2012.01.025
/ Sol Energy / Modeling and optimization of solar thermoelectric generators for terrestrial applications by Kraemer (2012)10.1039/c2ee22248e
/ Energy Environ Sci / Concentrated solar thermoelectric generators by Baranowski (2012)10.1016/j.energy.2013.10.073
/ Energy / Modeling and simulation for the design of thermal-concentrated solar thermoelectric generator by Chen (2014)10.1016/j.renene.2015.03.026
/ Renewable Energy / Computational analysis and performance optimization of a solar thermoelectric generator by Kossyvakis (2015)10.1016/j.solmat.2008.03.018
/ Sol Energy Mater Sol Cells / Performance analysis of a double-pass thermoelectric solar air collector by Lertsatitthanakorn (2008)10.1016/j.egypro.2014.07.065
/ Energy Procedia / Electricity generation from a solar parabolic concentrator coupled to a thermoelectric module by Lertsatitthanakorn (2014)10.1016/j.enconman.2015.03.108
/ Energy Convers Manage / The experimental design of solar heating thermoelectric generator with wind cooling chimney by Özdemir (2015)10.1016/j.apenergy.2011.07.017
/ Appl Energy / Parametrical analysis of the design and performance of a solar heat pipe thermoelectric generator unit by He (2011)10.1016/j.renene.2011.06.002
/ Renewable Energy / A study on incorporation of thermoelectric modules with evacuated-tube heat-pipe solar collectors by He (2012)10.1016/j.solener.2011.10.020
/ Sol Energy / Solar hybrid systems with thermoelectric generators by Chávez-Urbiola (2012)10.1155/2013/704087
/ Int J Photoenergy / Investigation of solar hybrid electric/thermal system with radiation concentrator and thermoelectric generator by Chávez Urbiola (2013)10.1016/j.solener.2015.07.035
/ Sol Energy / The performance of a combined solar photovoltaic (PV) and thermoelectric generator (TEG) system by Bjørk (2015)10.1109/TIM.2015.2410353
/ Instrum Measur, IEEE Transact / Feasibility of a photovoltaic thermoelectric generator: performance analysis and simulation results by Attivissimo (2015)10.1016/j.enconman.2015.12.069
/ Energy Convers Manage / Numerical investigation of heat pipe-based photovoltaic–thermoelectric generator (HP-PV/TEG) hybrid system by Makki (2016)10.1016/j.enconman.2015.12.032
/ Energy Convers Manage / Experimental investigation of combined heat recovery and power generation using a heat pipe assisted thermoelectric generator system by Remeli (2016)
Dates
Type | When |
---|---|
Created | 8 years, 5 months ago (March 7, 2017, 5:16 p.m.) |
Deposited | 5 years, 11 months ago (Sept. 19, 2019, 4:29 a.m.) |
Indexed | 19 minutes ago (Aug. 27, 2025, 6:40 p.m.) |
Issued | 8 years, 3 months ago (May 1, 2017) |
Published | 8 years, 3 months ago (May 1, 2017) |
Published Print | 8 years, 3 months ago (May 1, 2017) |
@article{Champier_2017, title={Thermoelectric generators: A review of applications}, volume={140}, ISSN={0196-8904}, url={http://dx.doi.org/10.1016/j.enconman.2017.02.070}, DOI={10.1016/j.enconman.2017.02.070}, journal={Energy Conversion and Management}, publisher={Elsevier BV}, author={Champier, Daniel}, year={2017}, month=may, pages={167–181} }