Cite

1. Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions. Energy 2020. A strategy for competitive, sustainable and secure energy. Available at <http://www.energy.eu/directives/com-2010-0639.pdf>>. [Accessed 01.12.2011].Search in Google Scholar

2. Rezaie B, Rosen MA. District heating and cooling: Review of technology and potential enhancements. Applied Energy 2012; 93: 2-10.10.1016/j.apenergy.2011.04.020Search in Google Scholar

3. Hlebnikov A., Volkova A., Džuba O., Poobus A., Kask U. Damages of the Tallinn District Heating Networks and indicative parameters for an estimation of the networks general condition In:Proceedings of 12th International Symposium on District Heating and Cooling, Estonia, Tallinn, 5.-7. September, 2010. - 277.-282. pp.10.2478/v10145-010-0034-3Search in Google Scholar

4. Vallios I., Tsoutsos T., Papadakis G. Design of biomass district heating systems. Biomass and Bioenergy 2009; 33(4): 659-678.10.1016/j.biombioe.2008.10.009Search in Google Scholar

5. Difs K., Wetterlund E., Trygg L., Söderström M. Biomass gasification opportunities in a district heating system. Biomass and Bioenergy 2010, 34(5): 637-651.10.1016/j.biombioe.2010.01.007Search in Google Scholar

6. Holmgren K., Gebremedhin A. Modelling a district heating system: Introduction of waste incineration, policy instruments and co-operation with an industry. Energy Policy 2004; 32(16): 1807-1817.10.1016/S0301-4215(03)00168-XSearch in Google Scholar

7. Hepbasli A. A review on energetic, exergetic and exergoeconomic aspects of geothermal district heating systems (GDHSs) Energy Conversion and Management 2010; 51(10): 2041-2061.Search in Google Scholar

8. Lund H., Möller B., Mathiesen B.V., Dyrelund A. The role of district heating in future renewable energy systems. Energy 2010; 35(3): 1381-1390.10.1016/j.energy.2009.11.023Search in Google Scholar

9. Tveit T.-M., Savola T., Gebremedhin A., Fogelholm C.-J. Multiperiod MINLP model for optimising operation and structural changes to CHP plants in district heating networks with long-term thermal storage. Energy Conversion and Management 2009; 50(3): 639-647.10.1016/j.enconman.2008.10.010Search in Google Scholar

10. Volkova A., Hlebnikov A., Siirde A. Methodology for defining of eligible capacity for wood fuel based cogeneration plants in small towns in Estonia. Journal of Energy and Power Engineering: 2011; 5(6): 481 -489.Search in Google Scholar

11. Barelli L., Bidini G., Pinchi E.M. Implementation of a cogenerative district heating system: Dimensioning of the production plant Energy and Buildings: 2007; 39(6): 658-664.Search in Google Scholar

12. Kelly S., Pollitt M. An assessment of the present and future opportunities for combined heat and power with district heating (CHPDH) in the United Kingdom Energy Policy 2010, 38(11):6936-694510.1016/j.enpol.2010.07.010Search in Google Scholar

13. TERMIS Operation User Guide, 7-Technologies, 2011.Search in Google Scholar

14. Tol H.I., Svendsen S. Improving the dimensioning of piping networks and network layouts in low-energy district heating systems connected to low-energy buildings: A case study in Roskilde, Denmark, Energy 2012: 38(1): 276-290.10.1016/j.energy.2011.12.002Search in Google Scholar

15. Li H., Dalla Rosa A., Svendsen S. Design of low temperature district heating network with supply water recirculation, In: Proceedings of 12th International Symposium on District Heating and Cooling, Estonia, Tallinn, 5.-7. September, 2010: 73-80.Search in Google Scholar

16. Hinojosa L.R., Day A.R., Maidment G.G., Dunham C. A Comparison of combined heat and power feasibility models, Applied Thermal Engineering 2007; 27 (13): 2166-2172.Search in Google Scholar

17. User's Guide EnergyPRO, EMD, 2008.Search in Google Scholar

18. Tallina Küte www.soojus.ee.Search in Google Scholar

19. Report of environmental assessment. Waste use for combined heat and power production on the territory of Iru Plant. (Kütusena jäätmeid kasutava soojus- ja elektrienergia koostootmisploki rajamine Iru elektrijaama territooriumile, KMH hindamise aruanne), EestiEnergia 2007.Search in Google Scholar

20. IRU WtE - technical overview Jäätme energia plokk WTE, 2010, CNIM.Search in Google Scholar

eISSN:
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Language:
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Journal Subjects:
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