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Energy efficiency model for small/medium geothermal heat pump systems


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Ala-Risku T. and Kopri E. (2008), “Life cycle costing: a review of published case studies”, Managerial Auditing Journal, Vol. 23, No. 3, pp. 240 - 261.10.1108/02686900810857703Search in Google Scholar

Baehr, H.D. and Kabelac, S. (2006), Thermodynamik, 13th Edition, Springer, Berlin.Search in Google Scholar

BAFA, (2015), Erneuerbare Energien Wärmepumpen mit Prüfzertifikat des COPWertes, available online at: www.bafa.de/bafa/de/energie/erneuerbare_energien/publikationen/energie_ee_waermepumpe_liste_ab_2013.pdf (Accessed on January 15, 2015).Search in Google Scholar

Bayer, P., Saner, D., Bolay, S., Rybach, L. and Blum, P. (2012), “Greenhouse gas emission savings of ground source heat pump systems in Europe: A review”, Renew. Sustain. Energy Rev., Vol. 16, pp. 1256-1267.10.1016/j.rser.2011.09.027Search in Google Scholar

BDH (2012), Positionspapier Smart Grid und Smart Market, Bundesverband Wärmepumpe.Search in Google Scholar

BMU (2012), Policy Report Contribution of Energy Efficiency Measures to Climate Protection within the European Union until 2050, BMU, Berlin.Search in Google Scholar

Bohne, D. (2014), Technischer Ausbau von Gebäuden, 10th Edition, Kohlhammer, Stuttgart.10.1007/978-3-8348-2253-6Search in Google Scholar

Böhm R. (2010), Heiße Luft - nach Kopenhagen. Reizwort Klimawandel. Fakten - Ängste Geschäfte, 2nd Edition, Va Bene, Klosterneuburg.Search in Google Scholar

Buchal C. and Schönwiese, C. (2010), Klima. Die Erde und ihre Atmosphäre im Wandel der Zeiten, Helmholtz-Gemeinschaft, Berlin.Search in Google Scholar

BWP (2015), EU-Energielabel wird wichtigstes Verkaufsargument für Wärmepumpen, Jasmin Herbell (Pressesprecherin BWP), Berlin.Search in Google Scholar

Coenenberg, A.G. (2009), Einführung in das Rechnungswesen, 3rd Edition, Schäffer- Poeschel, Stuttgart.Search in Google Scholar

Crowley, T.J. (2000), “Causes of climate change over the past 1000 years”, Science, Vol. 289, pp 270-277.10.1126/science.289.5477.270Search in Google Scholar

Cube von, H.L., Steimle, F., Lotz, H. and Kunis, J. (1997), Lehrbuch der Kältetechnik, Band1, 4th Edition, C.F.Müller Verlag, Heidelberg.Search in Google Scholar

Dimplex (2015), Data Sheet SI 11T GHP 11 kW.Search in Google Scholar

Edenhofer, O. and Sokona, Y. (coord.), (2011), “Summary for Policy Makers”, in: IPCC Special Report on Renewable Energy Sources and Climate Change Mitigation, Edenhofer, O., Pichs-Madruga, R., Sokona, Y., Seyboth, K., Matschoss, P., Kadner, S., Zwickel, T., Eickemeier, P., Hansen, G., Schlomer, S., v. Stechow, C. (Eds), pp. 3-26, Cambridge University Press, Cambridge.10.1017/CBO9781139151153.003Search in Google Scholar

EU (2009), Directive 2009/28/EC of the European Parliament and of the Council of 23 April 2009 on the promotion of the use of energy from renewable sources and amending and subsequently repealing Directives 2001/77/EC and 2003/30/EC, Official Journal of the European Union, L 140/16, 2009.Search in Google Scholar

EU (2010a), Energy savings 2020 - How to triple the impact of energy saving policies in Europe, Ecofys and Fraunhofer ISI.Search in Google Scholar

EU (2010b), Roadmap 2050, ECF, The Netherlands.Search in Google Scholar

EU (2012a), Directive 2012/27/EU of the European Parliament and of the Council of 25 October 2012 on energy efficiency, Official Journal of the European Union, L 315, 14.11.2012, pp. 1-56.Search in Google Scholar

Pardo Garcia, N., Vatopoulos, K., Krook-Riekkola, A., Perez Lopez, A. and Olsen, L. (2012), Best available technologies for the heat and cooling market in the European Union, Publications Office of the European Union, The Netherlands.Search in Google Scholar

EU (2012b), Building directive, Directive 2010/31/EU of the European Parliament and of the Council on the energy performance of buildings by establishing a comparative methodology framework for calculating cost-optimal levels of minimum energy performance requirements for buildings and building elements, 16 January 2012.Search in Google Scholar

EU (2013a), Commission Decision of 1 March 2013 establishing the guidelines for Member States on calculating renewable energy from heat pumps from different heat pump technologies.Search in Google Scholar

EU (2013b), Regulation (EU) No 811/2013 of 18 February 2013, The energy labelling of space heaters, combination heaters, packages of space heater, temperature control and solar device and packages of combination heater, temperature control and solar device. Search in Google Scholar

EU (2014a), Communication from the Commission to the European Parliament and the Council on Energy Efficiency and its contribution to energy security and the 2030 Framework for climate and energy policy, Brussels, 23.7.2014COM(2014) 520 final.Search in Google Scholar

EU (2014b), EU Energy in Figures, Statistical Pocketbook, Publications Office of the European Union, Luxembourg.Search in Google Scholar

FAWA, (2004), Feldanalyse von Wärmepumpenanlagen FAWA 1996-2003, Max Ehrbar.Search in Google Scholar

Gege, M. and Heib, M. (2011), Erfolgsfaktor Energieeffizienz, 1st Edition, oekom, München.Search in Google Scholar

Günter, M. (2015), Energieeffizienz durch Erneuerbare Energien: Möglichkeiten, Potenziale, Systeme, Springer, Berlin.10.1007/978-3-658-06753-3Search in Google Scholar

IEA (2013), International Energy Agency: World Energy Outlook Search in Google Scholar

Inkenberry, J.G. (1986), "The The Irony of State Strength: Comparative Responses to the Oil Shocks in the 1970s", International Organization, Vol. 40, pp.105-137.10.1017/S0020818300004495Search in Google Scholar

IPCC (2014), Climate change 2014, 5th edition, IPCC, Geneva.Search in Google Scholar

Günther, D. Miara, M., Langner, R., Helmling, S. and Wapler, J. (2014), "WP Monitor“ Feldmessung von Wärmepumpenanlagen, ISE, Freiburg.Search in Google Scholar

Jeong, H. (2014), “A novel defrosting method using heat energy dissipated by the compressor of an air source heat pump”, Applied Energy, Vol. 133, 15 November 2014, pp. 101-111.Search in Google Scholar

Khan, B.H. (2006), Non-conventional Energy Resources, Tata McGraw-Hill Education, New Delhi.Search in Google Scholar

Klöpffer, W. (2009), Ökobilanz, Wiley, Weihnheim.10.1002/9783527627158Search in Google Scholar

Kohler, St. and Bonekamp, B. (2008), "Der Wärmepumpen-Berater“ und "PlanungsHilfe Wärmepumpen“, Deutsche Energie-Agentur, Berlin.Search in Google Scholar

Königsdorff, R. (2011), Oberflächennahe Geothermie für Gebäude: Grundlagen und Anwendungen zukunftsfähiger Heizung und Kühlung, IRB2011.Search in Google Scholar

Lahr (2014), Agende Energie, available online at: www.agenda-energielahr.de/WP-Ph2_Uebersicht.html (Accessed January 12, 2015).Search in Google Scholar

Lahr (2011), Feldtest Phase 1 von 2006 - 2008: "Normale Wärmepumpensysteme.Search in Google Scholar

MacKay, D. (2009), Sustainable energy without the hot air, UIT Cambridge, Cambridge.Search in Google Scholar

Merrill, K.R. (2007), The Oil Crisis of 1973-1974: A Brief History with Documents, Bedford/St. Martin’s.Search in Google Scholar

Miara, M., (2013), Wärmepumpen, Frauenhofer IRB Verlag.10.51202/9783816790471Search in Google Scholar

Mojic, I., Haler, M. and Frank, E. (2014), “Heat Pump System with Uncovered and Free Ventilated Covered Collectors in Combination with a Small Ice Storage Energy”, Energy Procedia, Volume 48, pp. 608-617.10.1016/j.egypro.2014.02.071Search in Google Scholar

Nast, M. (2014), Strukturwandel für die Energiewende im Wärmesektor Search in Google Scholar

Nordmann, R., (2012): D2.5/D3.5. Position paper on heat pump SPF.Search in Google Scholar

Nowak, T., (2013): Future Perspectives for Heat Pumps in Europe, Thomas Nowak | EHPA Search in Google Scholar

DTU International Energy Conference 10. - 12.9.2013Search in Google Scholar

Park, H., (2013): The cooling seasonal performance factor of a hybrid groundsource heat pump with parallel and serial configurations, Original Research Article, Applied Energy, Volume 102, February 2013, Pages 877-88410.1016/j.apenergy.2012.09.035Search in Google Scholar

Park, H., Lee, J., (2009): Comprehensive exergy analysis of a ground-source heat pump system for both building heating and cooling modes, Original Research Article, Applied Energy, Volume 86, Issue 12, December 2009, Pages 2560-256510.1016/j.apenergy.2009.04.005Search in Google Scholar

Park, Y.S., (2014): Heat pump control method based on direct measurement of evaporation pressure to improve energy efficiency and indoor air temperature stability at a low cooling load condition, Original Research Article, Applied Energy, Volume 132, 1 November 2014, Pages 99-107, Young Sung Park 10.1016/j.apenergy.2014.07.011Search in Google Scholar

Pehnt, M., (2010): Energieeffizienz, 1 Aufl., Heielberg, 2010Search in Google Scholar

Rasmussen, P. (2011): Energy labelling and ecodesign requirements for heat pumps, Danish Technological Institute, Dec. 2011Search in Google Scholar

Rebitzer G, Seuring S. ,(2003): Methodology and Application of Life Cycle Costing. International Journal of LCA 8(2): 110-11110.1007/BF02978436Search in Google Scholar

Rees, S. ,(2014): National Deployment of Domestic Geothermal Heat Pump Technology: Observations on the UK Experience 1995-2013, Energy Journal Energies 2014, 7, 5460-549910.3390/en7085460Search in Google Scholar

Reisner, K., (2013): Fachwissen Kältetechnik: Eine Einführung für die Aus- und Weiterbildung, 5. Aufl., 2013Search in Google Scholar

RHPP, (2014): Preliminary data from the RHPP heat pump metering programme, Chris Wickins, Principal Engineer, RHI Team, Department of Energy and Climate Change Search in Google Scholar

Rogall, H., (2000): Bausteine einer zukunftsfähigen Umwelt- und Wirtschaftspolitik, Berlin 200010.3790/978-3-428-10213-6Search in Google Scholar

SANCHEZ, J., A. (2014): ENHANCING THE QUALITY OF GROUND COUPLED HEAT PUMPS, dissertation, ETH Zürich Search in Google Scholar

Schneidewind, U., (2011): Nachhaltige Entwicklung Nr.2/2011 UNEP / Wuppertal Institute Collaborating Search in Google Scholar

Schröder, T., Lüke, B. (2012): Wärmequellen für Wärmepumpen, Dortmunder Buch, Dortmund 2013Search in Google Scholar

Schulz, M. (2013) Die neue Heizung, Freiburg 2013Self, S., (2013): Geothermal heat pump systems: Status review and comparison with other heating options, Original Research Article, Applied Energy, Volume 101, January 2013, Pages 341-348, Stuart J. Self, Bale V. Reddy, Marc A. Rosen 10.1016/j.apenergy.2012.01.048Search in Google Scholar

Staiger, R., (2004): German Patent and trademark office, Wärmetauscher- Vorrichtung für den Kältekreislauf einer Wärmepumpe DE 10306148 B3Search in Google Scholar

Staiger, R., (2005): German Patent and trademark office, Wärmepumpen- Vorrichtung DE 10339066 A1Search in Google Scholar

Staiger, R., (2006) German Patent and trademark office,Wärmepumpen- Vorrichtung DE 10339066 B4Search in Google Scholar

Staiger, R., (2015): Measurement Protocols GHP south of Germany, E²Sys GmbG, RS Solar Search in Google Scholar

Tanţău A., Regneala H., Coraş E. (2014) Layout design as a risk driver for energy efficiency of photovoltaic power systems, The International Journal of Management Science and Information Technology (IJMSIT), Issue11, Jan-Mar 2014, 124 - 151, ISSN 1923-0265, www.naisit.org Search in Google Scholar

Tiator, I. and Schenker, M. (2013), Wärmepumpen, Wärmepumpenanlagen, 2nd Edition, Vogel Business Media, Wurzburg.Search in Google Scholar

Tonert, M., Bach, E., Bertrand, P., Biewerth, W. and Herr, H. (2013), Wärme, Kälte, Klima, 6th Edition, Europa-Lehrmittel.Search in Google Scholar

UBA (2008): Elektrische Wärmepumpen - eine erneuerbare Energie? Jens Schuberth, Helmut Kaschenz, Search in Google Scholar

UKtrust, (2010): Getting warmer: a field trial of heat pumps, The Energy Saving Trust, Simon Green, Project Director, Jaryn Bradford, Project Manager Search in Google Scholar

UKTrust, (2012): Detailed analysis from the first phase of the Energy Saving Trust’s heat pump field trial, Dr. Penny Dunbabin, Chris Wickins, 2012Search in Google Scholar

UKTrust, (2013): the heat is on: phase 2 heat pump field trials, Jaryn Bradford, project director, Tom Byrne, project manage Search in Google Scholar

Veith, H. (2011): Grundkursus der Kältetechnik, 10 Aufl., 2011Search in Google Scholar

Wang, F. (2015): Performance investigation of a novel frost-free air-source heat pump water heater combined with energy storage and dehumidification, Applied Energy Volume 139, 1 February 2015, Pages 212-219, Fenghao Wang , Zhihua Wang, Yuxin Zheng , Zhang Lin, Pengfei ao, Chao Huan, Tian Wang 10.1016/j.apenergy.2014.11.018Search in Google Scholar

WPZ, (2014a): Prüfresultate Luft/Wasser-Wärmepumpen basierend auf der EN 14511:2013 und EN 14825:2013, 06.10.2014Search in Google Scholar

WPZ, (2014b): Prüfresultate Sole/Wasser- und Wasser/Wasser-Wärmepumpen basierend auf der EN 14511:2011, 11.06.2014Search in Google Scholar

WPZ, (2014c): Prüfresultate Warmwasser-Wärmepumpen (Wärmepumpenboiler) basierend auf der EN 16147:2011, 19.01.2015Search in Google Scholar

Yergin, D., (2008): The Prize: The Epic Quest for Oil, Money, and Power. New York: Simon and Schuster Search in Google Scholar

Zogg, M., (2008): History of Heat Pumps, 2008, Department of Environment, Transport, Energy and Communications DETEC, Swiss Federal Office of Energy SFOE, Section Energy Efficiency and Renewable EnergiesSearch in Google Scholar