Renewable-based heat supply of multi-apartment buildings with varied heat demands
暂无分享,去创建一个
[1] Ricardo Bernardo,et al. Retrofitted Solar Domestic Hot Water System for Single-Family Electrically-Heated Houses: Development and testing , 2013 .
[2] J. Widén,et al. Constructing load profiles for household electricity and hot water from time-use data—Modelling approach and validation , 2009 .
[3] Alessandro Dalla Rosa,et al. Case Study of a Low-Energy District Heating Network in Energy-Efficient Settlements in Denmark , 2012 .
[4] Leif Gustavsson,et al. Climate effects of bioenergy from forest residues in comparison to fossil energy , 2015 .
[5] H. Ravn,et al. The role of district heating in the future Danish energy system , 2012 .
[6] Marc Londo,et al. Bioenergy: a sustainable and reliable energy source. A review of status and prospects. , 2009 .
[7] L. Gustavsson,et al. CO2 Mitigation: On Methods and Parameters for Comparison of Fossil-Fuel and Biofuel Systems , 2006 .
[8] Jan-Olof Dalenbäck,et al. Analysis of a Novel Solar District Heating System , 2014 .
[9] Jørgen Erik Christensen,et al. Low-energy district heating in energy-efficient building areas , 2011 .
[10] Pardo Garcia Nicolas,et al. Best available technologies for the heat and cooling market in the European Union , 2012 .
[11] Tomas Ekvall,et al. System boundaries and input data in consequential life cycle inventory analysis , 2004 .
[12] Leif Gustavsson,et al. Integrated biomass-based production of district heat, electricity, motor fuels and pellets of different scales , 2013 .
[13] Filip Johnsson,et al. Retrofitting measures for energy savings in the Swedish residential building stock – assessing methodology , 2010 .
[14] Roger Sallent Cuadrado. Return temperature influence of a district heating network on the CHP plant production costs , 2008 .
[15] Svend Svendsen,et al. Renewable-based low-temperature district heating for existing buildings in various stages of refurbishment , 2013 .
[16] O. Edenhofer,et al. Climate change 2014 : mitigation of climate change , 2014 .
[17] B. Mathiesen,et al. Energy system analysis of marginal electricity supply in consequential LCA , 2010 .
[18] Ambrose Dodoo,et al. Effects of heat and electricity saving measures in district-heated multistory residential buildings , 2014 .
[19] Bernd Möller,et al. Heat Roadmap Europe 2050 : Second Pre-study for the EU27 , 2013 .
[20] Diana Avasoo. Energy down the drain. The energy saving potential in water conservation , 2007 .
[21] Brian Vad Mathiesen,et al. Energy system analysis of 100% renewable energy systems-The case of Denmark in years 2030 and 2050 , 2009 .
[22] Leif Gustavsson,et al. Cost and primary energy efficiency of small-scale district heating systems , 2014 .
[23] Soteris A. Kalogirou,et al. Solar thermal collectors and applications , 2004 .
[24] T. Graedel,et al. Dysprosium, the balance problem, and wind power technology , 2014 .
[25] L. Gustavsson,et al. Minimum-cost district heat production systems of different sizes under different environmental and social cost scenarios , 2014 .
[26] L. D. Danny Harvey,et al. Recent Advances in Sustainable Buildings: Review of the Energy and Cost Performance of the State-of-the-Art Best Practices from Around the World , 2013 .
[27] Brian Vad Mathiesen,et al. 4th Generation District Heating (4GDH) Integrating smart thermal grids into future sustainable energy systems , 2014 .
[28] Adisa Azapagica,et al. Allocation of Environmental Burdens in Multiple-function Systems , 1999 .
[29] Leif Gustavsson,et al. District heating and energy efficiency in detached houses of differing size and construction , 2009 .
[30] Louise Trygg,et al. Energy conservation measures in buildings heated by district heating – A local energy system perspective , 2010 .