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Smart Energy Europe: The technical and economic impact of one potential 100% renewable energy scenario for the European Union. (2016). Connolly, D ; Mathiesen, B V ; Lund, H.
In: Renewable and Sustainable Energy Reviews.
RePEc:eee:rensus:v:60:y:2016:i:c:p:1634-1653.

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  70. Energy, Environmental, and Economic Analyses of a District Heating (DH) Network from Both Thermal Plant and End-Users’ Prospective: An Italian Case Study. (2021). Mugnini, Alice ; Rossi, Mose ; Corradi, Erica ; Salvi, Danilo ; Arteconi, Alessia ; Comodi, Gabriele ; Nadeem, Anam.
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  71. Changes in Electricity Production from Renewable Energy Sources in the European Union Countries in 2005–2019. (2021). Matuszewska-Janica, Aleksandra ; Żebrowska-Suchodolska, Dorota ; Hozer-Komiel, Marta ; Ala-Karvia, Urszula.
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  72. Experimental Analysis of Bi-Directional Heat Trading Operation Integrated with Heat Prosumers in Thermal Networks. (2021). Lee, Dong-Won ; Kim, Deuk-Won ; Heo, Jaehyeok.
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  73. An Economically Viable 100% Renewable Energy System for All Energy Sectors of Germany in 2030. (2021). Fell, Hans-Josef ; Hegner, Franziska Simone ; Traber, Thure.
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  74. A Review of the State of the Art of Biomethane Production: Recent Advancements and Integration of Renewable Energies. (2021). Cimmino, Luca ; Cappiello, Francesco Liberato ; Calise, Francesco ; Vicidomini, Maria ; Daccadia, Massimo Dentice.
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  75. Decarbonizing the Chilean Electric Power System: A Prospective Analysis of Alternative Carbon Emissions Policies. (2021). Toledo, Javiera ; Barrera, Javiera ; Babonneau, Frederic.
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  76. The Concept of Multiple Impacts of Renewable Energy Sources: A Critical Review. (2021). Valentova, Michaela ; Makeova, Michaela.
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  77. Optimal Design and Analysis of Sector-Coupled Energy System in Northeast Japan. (2021). Nakata, Toshihiko ; Delage, Remi ; Nagano, Naoya.
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  78. Smart local energy systems (SLES): A framework for exploring transition, context, and impacts. (2021). Morris, Madeleine ; Fell, Michael J ; Vigurs, Carol ; Maidment, Chris ; Ford, Rebecca.
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  79. Bottom-up energy system models applied to sustainable islands. (2021). Garcia, Davide Astiaso ; Nastasi, Benedetto ; Groppi, Daniele ; Prina, Matteo Giacomo.
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  80. From single to multi-energy and hybrid grids: Historic growth and future vision. (2021). Ajanovic, A ; Auer, H ; Haas, R ; Ramsebner, J ; Puchegger, M ; Nacht, T ; Nemec-Begluk, S ; Maier, C ; Gawlik, W.
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  81. Update on current approaches, challenges, and prospects of modeling and simulation in renewable and sustainable energy systems. (2021). Eterigho-Ikelegbe, Orevaoghene ; Wilson, Uwemedimo N ; Sekoai, Patrick T ; Daramola, Michael O ; Yoro, Kelvin O.
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  82. Scalable pathways to net zero carbon in the UK higher education sector: A systematic review of smart energy systems in university campuses. (2021). Commin, Andrew ; Kourgiozou, Vasiliki ; Mumovic, Dejan ; Rovas, Dimitrios ; Dowson, Mark .
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  83. Sustainable renewable energy supply networks optimization – The gradual transition to a renewable energy system within the European Union by 2050. (2021). Kravanja, Zdravko ; Martin, Mariano ; Uek, Lidija ; Potr, Sanja.
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  84. On the potential synergies and applications of wave energy converters: A review. (2021). Rosa-Santos, P ; Clemente, D ; Taveira-Pinto, F.
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  85. The cost of grid stability with 100 % clean, renewable energy for all purposes when countries are isolated versus interconnected. (2021). Jacobson, Mark Z.
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  86. Can 100% renewable power system be successfully built?. (2021). Negri, Cesar A ; Daneshvardehnavi, Saeed ; Wollenberg, Bruce ; Bayne, Stephen B ; Giesselmann, Michael G.
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  87. A life-cycle analysis of deep enhanced geothermal systems – The case studies of Reykjanes, Iceland and Vendenheim, France. (2021). Cook, David ; Sigurjonsson, Hafor Agir ; Bogason, Sigurur G ; Davisdottir, Brynhildur.
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  88. Application and performance analysis of 100% renewable energy systems serving low-density communities. (2021). Xiao, Jinmei ; Chen, Xiaofei ; Gang, Wenjie ; Yuan, Jiaqi.
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  89. Numerical investigation on the volute cutwater for pumps running in turbine mode. (2021). Hendrick, Patrick ; di Matteo, Mariano ; Vagnoni, Elena ; Morabito, Alessandro.
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  90. Evaluation of hydro-wind complementarity in the medium-term planning of electrical power systems by joint simulation of periodic streamflow and wind speed time series: A Brazilian case study. (2021). , Daniel ; Daniel, ; Kaviski, Eloy ; Avila, Leandro.
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  91. Techno-economic optimization of a 100% renewable energy system in 2050 for countries with high shares of hydropower: The case of Portugal. (2021). Castro, Rui ; Doepfert, Markus.
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  92. Low-cost, low-emission 100% renewable electricity in Southeast Asia supported by pumped hydro storage. (2021). Do, Thang Nam ; Stocks, Matthew ; Blakers, Andrew ; Lu, Bin.
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  93. Grid integration of renewable energy in Qatar: Potentials and limitations. (2021). Abid, Muhammad ; Bamisile, Olusola ; Wole-Osho, Ifeoluwa ; Okonkwo, Eric C ; Al-Ansari, Tareq.
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  94. Characterising a local energy business sector in the United Kingdom: Participants, revenue sources, and estimates of localism and smartness. (2021). Webb, Janette ; Gonzalez, Fabian Fuentes ; Tingey, Margaret ; Pappas, Dimitrios ; Hannon, Matthew ; Sharmina, Maria.
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  95. A zero-carbon, reliable and affordable energy future in Australia. (2021). Nadolny, Anna ; Cheng, Cheng ; Stocks, Matthew ; Blakers, Andrew ; Lu, Bin.
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  96. Solar energy for sustainable heating and cooling energy system planning in arid climates. (2021). Shadi, Mehdi ; Khaledi, Arian ; Ansaripour, Shiva ; Golshanfard, Aminabbas ; Noorollahi, Younes.
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  97. The role of highly energy-efficient dwellings in enabling 100% renewable electricity. (2021). Anderson, B ; Mirfin, A ; Jack, M W.
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  98. Analysis of synchronous stability and control of multiplex oscillatory power network. (2021). Liu, Xiao-Jun ; Jiang, Jun ; Long, Bin ; Yang, Li-Xin.
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  99. Sustainable transition pathways with high penetration of variable renewable energy in the coal-based energy systems. (2021). Schneider, Daniel Rolph ; Sahiti, Naser ; Pfeifer, Antun ; Meha, Drilon ; Dui, Neven.
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  100. Assessing the value of demand response in a decarbonized energy system – A large-scale model application. (2021). Zophel, Christoph ; Misconel, Steffi ; Most, Dominik.
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  101. Trends in tools and approaches for modelling the energy transition. (2021). Pfenninger, Stefan ; Pickering, Bryn ; Zakeri, Behnam ; Thellufsen, Jakob Zink ; Chang, Miguel ; Ostergaard, Poul Alberg ; Lund, Henrik.
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  102. Open model-based analysis of a 100% renewable and sector-coupled energy system–The case of Germany in 2050. (2021). Islam, Md Nasimul.
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  103. Full energy sector transition towards 100% renewable energy supply: Integrating power, heat, transport and industry sectors including desalination. (2021). Breyer, Christian ; Fasihi, Mahdi ; Gulagi, Ashish ; Bogdanov, Dmitrii.
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  104. Decarbonising heat with optimal PV and storage investments: A detailed sector coupling modelling framework with flexible heat pump operation. (2021). Parra, David ; Patel, Martin K ; Streicher, Kai ; Soini, Martin Christoph ; Rinaldi, Arthur.
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  105. The sector coupling concept: A critical review. (2021). Wietschel, Martin ; Ajanovic, Amela ; Haas, Reinhard ; Ramsebner, Jasmine.
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  106. Flexible electricity use for heating in markets with renewable energy. (2020). Zerrahn, Alexander ; Schill, Wolf-Peter.
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  107. Growth in human population and consumption both need to be addressed to reach an ecologically sustainable future. (2020). Ganivet, Elias.
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  108. Pellet Production from Miscanthus: Energy and Environmental Assessment. (2020). Proto, Andrea R ; Bacenetti, Jacopo ; Fusi, Alessandra ; Facchinetti, Davide ; Pessina, Domenico.
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  109. Biomass Thermochemical Conversion via Pyrolysis with Integrated CO 2 Capture. (2020). Mlonka-Mdrala, Agata ; Quan, Cui ; Magdziarz, Aneta ; Sieradzka, Magorzata ; Gao, Ningbo.
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  110. Local Heating Networks with Waste Heat Utilization: Low or Medium Temperature Supply?. (2020). Hafner, Armin ; Rohde, Daniel ; Kauko, Hanne.
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  111. Internet of Things (IoT) and the Energy Sector. (2020). Hunt, Julian ; Mohammadrezaei, Mahsa ; Motlagh, Naser Hossein ; Zakeri, Behnam.
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  112. Sustainable Residential Energy Supply: A Literature Review-Based Morphological Analysis. (2020). Hanke, Benedikt ; Schluters, Sunke ; Arens, Stefan ; Agert, Carsten ; von Maydell, Karsten.
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  113. Energetic and Ecologic Heat Pumps Evaluation in Poland. (2020). Gajewski, Andrzej ; Sewastianik, Sara.
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  114. Transitioning All Energy in 74 Metropolitan Areas, Including 30 Megacities, to 100% Clean and Renewable Wind, Water, and Sunlight (WWS). (2020). , Zachary ; Wood, Kelyn D ; von Krauland, Anna-Katharina ; Jacobson, Mark Z ; Tan, Chor ; Smith, Miles ; Shu, Yanbo ; Alexander, ; Nelli, Daniel ; Jaeggli, Caitlin ; Coughlin, Stephen J.
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  115. Quantifying the Demand Response Potential of Inherent Energy Storages in Production Systems. (2020). Weigold, Matthias ; Fuhrlander-Volker, Daniel ; Strobel, Nina ; Abele, Eberhard.
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  116. Multi-Objective Optimization Model EPLANopt for Energy Transition Analysis and Comparison with Climate-Change Scenarios. (2020). Moser, David ; Manzolini, Giampaolo ; Prina, Matteo Giacomo ; Sparber, Wolfram ; Vaccaro, Roberto.
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  117. Standard, Point of Use, and Extended Energy Return on Energy Invested (EROI) from Comprehensive Material Requirements of Present Global Wind, Solar, and Hydro Power Technologies. (2020). Capellan-Perez, Iigo ; de Castro, Carlos.
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  118. Effects of Decentral Heat Pump Operation on Electricity Storage Requirements in Germany. (2020). Hilpert, Simon.
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  119. Demand Response of Residential Houses Equipped with PV-Battery Systems: An Application Study Using Evolutionary Algorithms. (2020). Faria, Pedro ; Faia, Ricardo ; Lezama, Fernando ; Vale, Zita.
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  120. Critical review on the necessity of bioelectricity generation from slaughterhouse industry waste and wastewater using different anaerobic digestion reactors. (2020). Senophiyah-Mary, J ; Loganath, Radhakrishnan.
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  121. A systemic approach to analyze integrated energy system modeling tools: A review of national models. (2020). Faaij, A ; Sijm, J ; Fattahi, A.
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  122. The energy-climate-health nexus in energy planning: A case study in Brazil. (2020). Schaeffer, R ; The, J ; Soria, R ; Howard, D B ; Saphores, J.-D., .
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  123. Comparison of metaheuristic optimisation methods for grid-edge technology that leverages heat pumps and thermal energy storage. (2020). Dimache, L ; Lohan, J ; Schellenberg, C.
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  124. Smart energy cities in a 100% renewable energy context. (2020). Nielsen, Steen ; Sperling, K ; Djorup, S R ; Drysdale, D ; Chang, M ; Ostergaard, P A ; Sorknas, P ; Lund, H ; Thellufsen, J Z.
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  125. Classification and challenges of bottom-up energy system models - A review. (2020). Sparber, Wolfram ; Nastasi, Benedetto ; Moser, David ; Manzolini, Giampaolo ; Prina, Matteo Giacomo.
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  126. A deep learning-based forecasting model for renewable energy scenarios to guide sustainable energy policy: A case study of Korea. (2020). Yoo, Changkyoo ; Hwangbo, Soonho ; Nam, Kijeon.
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  127. A review of the emission reduction potential of fuel switch towards biomass and electricity in European basic materials industry until 2030. (2020). Fleiter, T ; Eichhammer, W ; Worrell, E ; Rehfeldt, M.
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  128. Smart Energy Markets - Future electricity, gas and heating markets. (2020). Djorup, S ; Skov, I R ; Lund, Henrik ; Sorknas, P ; Fausto, F ; Morthorst, P E ; Skytte, K.
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  129. Assessment of the Stirling engine performance comparing two renewable energy sources: Solar energy and biomass. (2020). Silva, Joo ; Ferreira, Ana Cristina ; Nebra, Silvia Azucena ; Teixeira, Jose Carlos .
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  130. Consequences of different strategic decisions of market coupled zones on the development of energy systems based on coal and hydropower. (2020). Krajai, Goran ; Pfeifer, Antun ; Dui, Neven ; Haas, Reinhard.
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  131. Short-term solar and wind variability in long-term energy system models - A European case study. (2020). Lind, Arne ; Seljom, Pernille ; Haugan, Peter M ; Ringkjob, Hans-Kristian ; Mesfun, Sennai ; Wagner, Fabian.
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  132. Least cost energy system pathways towards 100% renewable energy in Ireland by 2050. (2020). Chiodi, Alessandro ; Decarolis, Joseph ; Patankar, Neha ; Yue, Xiufeng ; Ogallachoir, Brian ; Deane, J P ; Rogan, Fionn.
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  133. The design of 100 % renewable smart urb an energy systems: The case of Bozen-Bolzano. (2020). Roberti, Francesca ; Pernigotto, Giovanni ; Thellufsen, Jakob Zinck ; Menapace, Andrea ; Lund, Henrik ; Baratieri, Marco ; Righetti, Maurizio ; Gasparella, Andrea.
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  134. Challenges in the decarbonization of the energy sector. (2020). Tsatsaronis, George ; Papadis, Elisa.
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  135. A critical evaluation of grid stability and codes, energy storage and smart loads in power systems with wind generation. (2020). Baran, Mesut ; Edrington, Chris S ; Papari, Behnaz ; Mehigan, Laura ; Zehir, Alparslan M ; Hayes, Barry P ; Morrow, John D ; McIlwaine, Neil ; Foley, Aoife M ; al Kez, Dlzar.
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  136. The role of biogas and biogas-derived fuels in a 100% renewable energy system in Denmark. (2020). Mathiesen, Brian Vad ; Skov, Iva Ridjan ; Korberg, Andrei David.
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  137. On the road to 100% renewable energy systems in isolated islands. (2020). Segurado, R ; Alves, M ; Costa, M.
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  138. Selection index for Wave Energy Deployments (SIWED): A near-deterministic index for wave energy converters. (2020). Lavidas, George.
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  139. Electrification of transport and residential heating sectors in support of renewable penetration: Scenarios for the Italian energy system. (2020). Manno, Michele ; Bellocchi, Sara ; Vellini, Michela ; Prina, Matteo Giacomo ; Noussan, Michel.
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  140. Improving renewable energy policy planning and decision-making through a hybrid MCDM method. (2020). alizadeh, reza ; Lund, Peter D ; Soltanisehat, Leili ; Zamanisabzi, Hamed.
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  141. Is the coherence of coal phase-out and electrolytic hydrogen production the golden path to effective decarbonisation?. (2020). Letmathe, Peter ; Klockner, Kai.
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  142. An electricity triangle for energy transition: Application to Italy. (2020). Montesano, G ; Mauro, S ; Leone, P ; Jafari, M ; Huang, T ; Corgnati, S ; Botterud, A ; Bompard, E ; Profumo, F ; Papa, C.
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  143. Coupling the heating and power sectors: The role of centralised combined heat and power plants and district heat in a European decarbonised power system. (2020). Quoilin, Sylvain ; Pavievi, Matija ; Filippidou, Faidra ; Kavvadias, Konstantinos ; Jimenez-Navarro, Juan-Pablo.
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  144. The potential of sector coupling in future European energy systems: Soft linking between the Dispa-SET and JRC-EU-TIMES models. (2020). Mangipinto, Andrea ; Pavievi, Matija ; Quoilin, Sylvain ; Colombo, Emanuela ; Jimenez, Juan Pablo ; Kavvadias, Konstantinos ; Lombardi, Francesco ; Nijs, Wouter.
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  145. Flexible electricity use for heating in markets with renewable energy. (2020). Zerrahn, Alexander ; Schill, Wolf-Peter.
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  146. Planning and operating a renewable-dominated European power system under uncertainty. (2020). Dominguez, R ; Oggioni, G ; Carrion, M.
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  147. Decarbonizing China’s energy system – Modeling the transformation of the electricity, transportation, heat, and industrial sectors. (2019). Xiong, Bobby ; Burandt, Thorsten ; Oei, Pao-Yu ; Loffler, Konstantin.
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  148. Modeling the low-carbon transition of the European energy system - A quantitative assessment of the stranded assets problem. (2019). Burandt, Thorsten ; Loffler, Konstantin ; Oei, Pao-Yu ; Hainsch, Karlo.
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  149. Pathways for Germanys Low-Carbon Energy Transformation Towards 2050. (2019). von Hirschhausen, Christian ; Kemfert, Claudia ; Oei, Pao-Yu ; Burandt, Thorsten ; Wejda, Felix ; Seehaus, Frederik ; Loffler, Konstantin ; Eidens, Anna ; Bartholdsen, Hans-Karl.
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  150. European electricity sector decarbonization under different levels of foresight. (2019). Oei, Pao-Yu ; Lorenz, Casimir ; Kemfert, Claudia ; von Hirschhausen, Christian ; Gerbaulet, Clemens.
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  151. Ranking renewable energy production methods based on economic and environmental criteria using multi-criteria decision analysis. (2019). Ali, Yousaf ; Razi, Muhammad.
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  152. Smart cities survey: Technologies, application domains and challenges for the cities of the future. (2019). Bilbao-Jayo, Aritz ; Sesma-Solance, Jesus ; Nuez-Marcos, Adrin ; Snchez-Corcuera, Ruben ; Almeida, Aitor ; Azkune, Gorka ; Zulaika, Unai ; Mulero, Rubn.
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  153. A State-of-the-Art Review on the Drive of Renewables in Gujarat, State of India: Present Situation, Barriers and Future Initiatives. (2019). Shafiullah, G M ; Elavarasan, Rajvikram Madurai ; Padmanaban, Sanjeevikumar ; Kumar, Nallapaneni Manoj.
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  154. Impact of Grid-Scale Electricity Storage and Electric Vehicles on Renewable Energy Penetration: A Case Study for Italy. (2019). Noussan, Michel ; Manno, Michele ; Bellocchi, Sara ; Vellini, Michela.
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  155. Fixing Efficiency Values by Unfixing Compressor Speed: Dynamic Test Method for Heat Pumps. (2019). Malenkovic, Ivan ; Zottl, Andreas ; Palkowski, Carsten ; Simo, Anne.
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  156. Sectoral Interactions as Carbon Dioxide Emissions Approach Zero in a Highly-Renewable European Energy System. (2019). Greiner, Martin ; Schafer, Mirko ; Brown, Tom.
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  157. Analyzing National and Local Pathways to Carbon-Neutrality from Technology, Emissions, and Resilience Perspectives—Case of Finland. (2019). Mikkola, Jani ; Arabzadeh, Vahid ; Pilpola, Sannamari ; Lund, Peter D.
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  158. Incidence of Photovoltaics in Cities Based on Indicators of Occupancy and Urban Sustainability. (2019). Terrados-Cepeda, Julio ; Zalamea-Leon, Esteban ; Barragan-Escandon, Antonio.
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  159. District Cooling Versus Individual Cooling in Urban Energy Systems: The Impact of District Energy Share in Cities on the Optimal Storage Sizing. (2019). Krajai, Goran ; Dominkovi, Dominik Franjo.
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  160. Sustainable District Cooling Systems: Status, Challenges, and Future Opportunities, with Emphasis on Cooling-Dominated Regions. (2019). Ayou, Dereje S ; Eveloy, Valerie.
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  161. Design and Comparative Techno-Economic Analysis of Two Solar Polygeneration Systems Applied for Electricity, Cooling and Fresh Water Production. (2019). Vicidomini, Maria ; Calise, Francesco ; Askari, Ighball Baniasad.
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  162. Sector Coupling in the North Sea Region—A Review on the Energy System Modelling Perspective. (2019). Islam, Md Nasimul.
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  163. Transitioning Island Energy Systems—Local Conditions, Development Phases, and Renewable Energy Integration. (2019). Djorup, Soren Roth ; Ostergaard, Poul Alberg ; Marczinkowski, Hannah Mareike.
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  164. Long-Term Electricity Scenarios for the MENA Region: Assessing the Preferences of Local Stakeholders Using Multi-Criteria Analyses. (2019). Blohm, Marina ; Kruger, Christine ; Zelt, Ole ; Far, Shahrazad ; Bohm, Sonke .
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  165. Pathways for Germany’s Low-Carbon Energy Transformation Towards 2050. (2019). Kemfert, Claudia ; Eidens, Anna ; Bartholdsen, Hans-Karl ; von Hirschhausen, Christian ; Oei, Pao-Yu ; Burandt, Thorsten ; Wejda, Felix ; Seehaus, Frederik ; Loffler, Konstantin.
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  166. Heat pumps and their role in decarbonising heating Sector: a comprehensive review. (2019). Curtis, John ; Fitiwi, Desta ; Gaur, Ankita Singh.
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  167. The impact of virtual power plant technology composition on wholesale electricity prices: A comparative study of some European Union electricity markets. (2019). Moreno, Blanca ; Diaz, Guzman.
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  168. Role of immersive visualization tools in renewable energy system development. (2019). Horan, Ben ; Stojcevski, Alex ; Mekhilef, Saad ; Seyedmahmoudian, Mehdi ; Jamei, Elmira ; Thirunavukkarasu, Gokul Sidarth ; Azraff, Mohd Daniel.
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  169. Flexible Carbon Capture and Utilization technologies in future energy systems and the utilization pathways of captured CO2. (2019). Dominkovi, Dominik Franjo ; Skov, Iva Ridjan ; Mikuli, Hrvoje ; Wang, Xuebin ; Hidayah, Siti Nur ; Dui, Neven ; Tan, Raymond ; Manan, Zainuddin Abdul.
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  170. A comprehensive review on the benefits and challenges of global power grids and intercontinental interconnectors. (2019). Deane, Paul ; Gallachoir, Brian O ; Ogallachoir, Brian ; Brinkerink, Maarten.
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  171. Energy system optimization at the municipal level: An analysis of modeling approaches and challenges. (2019). Bruckner, Thomas ; Scheller, Fabian.
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  172. Full energy system transition towards 100% renewable energy in Germany in 2050. (2019). Skov, Iva Ridjan ; Mathiesen, Brian Vad ; Hansen, Kenneth .
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  173. Assessing PV and wind roadmaps: Learning rates, risk, and social discounting. (2019). Mauleon, Ignacio.
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  174. European electricity sector decarbonization under different levels of foresight. (2019). von Hirschhausen, C ; Gerbaulet, C ; Oei, P.-Y., ; Lorenz, C ; Kemfert, C.
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  175. Balancing Europe: Can district heating affect the flexibility potential of Norwegian hydropower resources?. (2019). Bozhkova, Kristina N ; Askeland, Kristine ; Sorknas, Peter.
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  176. Feasibility of 100% renewable energy-based electricity production for cities with storage and flexibility. (2019). Develder, Chris ; Strobbe, Matthias ; Mets, Kevin ; Narayanan, Arun.
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  177. Multi-criteria feasibility assessment of cost-optimized alternatives to comply with heating demand of existing office buildings – A case study. (2019). Zeiler, Wim ; Maassen, Wim ; Katic, Katarina ; Walker, Shalika.
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  178. Consumer ownership, natural monopolies and transition to 100% renewable energy systems. (2019). Djorup, Soren ; Hvelplund, Frede.
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  179. A framework for assessing the technical and economic potential of shallow geothermal energy in individual and district heating systems: A case study of Slovenia. (2019). Stanii, D ; Stegnar, Gaper ; Mere, S ; Urbani, A ; Prestor, J ; Pestotnik, S ; Iman, J ; Esen, M.
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  180. Heat Roadmap Europe: Heat distribution costs. (2019). Wiechers, Eva ; Persson, Urban ; Werner, Sven ; Moller, Bernd .
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  181. Opportunities for power-to-Gas and Power-to-liquid in CO2-reduced energy scenarios: The Italian case. (2019). Vellini, Michela ; Stilo, Tommaso ; Manno, Michele ; Gambini, Marco ; de Falco, Marcello ; Bellocchi, Sara.
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  182. Status and perspectives on 100% renewable energy systems. (2019). Lund, Henrik ; Breyer, Christian ; Hansen, Kenneth.
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  183. Optimising energy flows and synergies between energy networks. (2019). Fambri, Gabriele ; Badami, Marco.
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  184. Modified exergy and modified exergoeconomic analyses of a solar based biomass co-fired cycle with hydrogen production. (2019). Bhattacharya, Tanushree ; Mahmoudi, S. M. S., ; Rosen, Marc A ; Soltani, Saeed ; Moharramian, Anahita.
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  185. Excess electricity and power-to-gas storage potential in the future renewable-based power generation sector in the United Arab Emirates. (2019). Eveloy, Valerie ; Gebreegziabher, Tesfaldet.
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  186. Analysing energy innovation portfolios from a systemic perspective. (2019). Wilson, Charlie ; Kim, Yeong Jae.
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  187. Low-carbon energy scenarios 2050 in north-west European countries: Towards a more harmonised approach to achieve the EU targets. (2019). Pfluger, Benjamin ; Eichhammer, Wolfgang ; Mikova, Nadezhda.
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  188. Uncertainty Quantification in high-density fluid radial-inflow turbines for renewable low-grade temperature cycles. (2019). Gu, Yuantong ; Persky, Rodney ; Chassaing, Jean-Camille ; Zou, Aihong ; Sauret, Emilie.
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  189. Impact of CO2 prices on the design of a highly decarbonised coupled electricity and heating system in Europe. (2019). Greiner, M ; Andresen, G B ; Brown, T ; Victoria, M ; Zhu, K.
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  190. Hourly-resolution analysis of electricity decarbonization in Spain (2017–2030). (2019). Victoria, Marta ; Gallego-Castillo, Cristobal .
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  191. Is a 100% renewable European power system feasible by 2050?. (2019). Zappa, William ; van den Broek, Machteld ; Junginger, Martin.
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  192. Model for Development of a Business Strategy for Renewable Energy Technology Services. (2019). Krisna, Nandan Lima ; Limakrisna, Nandan ; Sembiring, Noor.
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  193. Silver Buckshot or Bullet: Is a Future “Energy Mix” Necessary?. (2018). , Tom ; Blees, Tom ; Brook, Barry W ; Hong, Sanghyun.
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  194. A Review of Projected Power-to-Gas Deployment Scenarios. (2018). Gebreegziabher, Tesfaldet ; Eveloy, Valerie.
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  195. The Time-Series of Energy Mix and Transition: A Comparative Study of OECD Countries through the Fuzzy-Set Analysis. (2018). Kim, Jiyoung Hailiey ; Choi, Yong-Chan ; Huh, Taewook.
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  196. Analysing the potential of integrating wind and solar power in Europe using spatial optimisation under various scenarios. (2018). Zappa, William ; van den Broek, Machteld.
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  197. The feasibility of 100% renewable electricity systems: A response to critics. (2018). Diesendorf, Mark ; Elliston, Ben.
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  198. Optimal management of energy hubs and smart energy hubs – A review. (2018). Mohammadi, Mohammad ; Khorasani, Sasan Torabzadeh ; Yousefi, Hossein ; Hosseinzadeh, Mehdi ; Mohammadi-Ivatloo, Behnam ; Noorollahi, Younes.
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  199. Effects of large scale penetration of renewables: The Italian case in the years 2008–2015. (2018). Antonelli, Marco ; Franco, Alessandro ; Desideri, Umberto.
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  200. Matching demand with supply at low cost in 139 countries among 20 world regions with 100% intermittent wind, water, and sunlight (WWS) for all purposes. (2018). Jacobson, Mark Z ; Mathiesen, Brian V ; Cameron, Mary A ; Delucchi, Mark A.
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  201. The status of 4th generation district heating: Research and results. (2018). Duic, Neven ; Lund, Henrik ; Bojesen, Carsten ; Mathiesen, Brian Vad ; Gram, Bent Ole ; Hvelplund, Frede ; Thorsen, Jan Eric ; Sorknas, Peter ; Svendsen, Svend ; Werner, Sven ; Moller, Bernd ; Chang, Miguel ; Zhang, Xiliang ; Ostergaard, Poul Alberg.
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  202. Planning and design of sustainable smart multi energy systems. The case of a food industrial district in Italy. (2018). Simeoni, Patrizia ; Ciotti, Gellio ; Nardin, Gioacchino.
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  203. Smart renewable energy penetration strategies on islands: The case of Gran Canaria. (2018). Cabrera, Pedro ; Carta, Jose A ; Lund, Henrik.
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  204. The electricity market in a renewable energy system. (2018). Djorup, Soren ; Sorknas, Peter ; Thellufsen, Jakob Zinck .
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  205. Synergies of sector coupling and transmission reinforcement in a cost-optimised, highly renewable European energy system. (2018). Brown, T ; Greiner, M ; Schramm, S ; Kies, A ; Schlachtberger, D.
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  206. Incorporating combined cycle gas turbine flexibility constraints and additional costs into the EPLANopt model: The Italian case study. (2018). Prina, Matteo Giacomo ; Sparber, Wolfram ; Moser, David ; Manzolini, Giampaolo ; Fanali, Lorenzo.
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  207. Techno-economic evaluation for hybrid renewable energy system: Application and merits. (2018). Ma, Weiwu ; Liu, Gang ; Xue, Xinpei.
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  208. Resource portfolio design considerations for materially-efficient planning of 100% renewable electricity systems. (2018). Tarroja, Brian ; Samuelsen, Scott ; Shaffer, Brendan P.
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  209. A smart energy system approach vs a non-integrated renewable energy system approach to designing a future energy system in Zagreb. (2018). Baekovi, Ivan ; Ostergaard, Poul Alberg.
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  210. Electricity storage needs for the energy transition: An EROI based analysis illustrated by the case of Belgium. (2018). Limpens, Gauthier ; Jeanmart, Herve.
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  211. Cost-minimised design of a highly renewable heating network for fossil-free future. (2018). Ashfaq, Asad ; Ianakiev, Anton.
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  212. Pathway and restriction in district heating systems development towards 4th generation district heating. (2018). Ziemele, Jelena ; Blumberga, Dagnija ; Cilinskis, Einars.
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  213. Renewable heating strategies and their consequences for storage and grid infrastructures comparing a smart grid to a smart energy systems approach. (2018). Lund, Henrik.
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  214. Local smart energy systems and cross-system integration. (2018). Baekovi, Ivan ; Ostergaard, Poul Alberg.
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  215. Multi-objective optimization algorithm coupled to EnergyPLAN software: The EPLANopt model. (2018). Prina, Matteo Giacomo ; Sparber, Wolfram ; Vaccaro, Roberto ; Pernetti, Roberta ; Oberegger, Ulrich Filippi ; Moser, David ; Manzolini, Giampaolo ; Garegnani, Giulia ; Cozzini, Marco .
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  216. Repeated batch methanol production from a simulated biogas mixture using immobilized Methylocystis bryophila. (2018). , Sanjay ; Lee, Jung-Kul ; Kang, Yun Chan ; Cho, Byung-Kwan ; Kim, Sun Chang ; Jeong, Seong Hun ; Pagolu, Ravi T ; Otari, Sachin V ; Kondaveeti, Sanath.
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  242. Incentives and barriers for wind power expansion and system integration in Denmark. (2017). Hvelplund, Frede ; Meyer, Niels I ; Ostergaard, Poul Alberg.
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  244. Temporal and spatial tradeoffs in power system modeling with assumptions about storage: An application of the POWER model. (2016). Jacobson, Mark Z ; Frew, Bethany A.
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  246. Addressing the main challenges of energy security in the twenty-first century – Contributions of the conferences on Sustainable Development of Energy, Water and Environment Systems. (2016). Lund, Henrik ; Markovska, Natasa ; Dui, Neven ; Mathiesen, Brian Vad ; Guzovi, Zvonimir ; Piacentino, Antonio ; Schlor, Holger .
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  247. Energy savings through self-backhauling for future heterogeneous networks. (2016). Faruk, Nasir ; Jantti, Riku ; Ruttik, Kalle ; Mutafungwa, Edward .
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  248. Problems and Perspectives of BRICS Countries Transfer to “Green Economy” and Law-carbon Energy Industry. (2016). Artemieva, Julia Alexandrovna ; Frolova, Vgenia Vgenevna ; Dudin, Mihail Nikolaevich ; Kirsanov, Alexey Nikolaevich ; Bezbah, Vitaliy Vasilevich .
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  42. Operation strategy analysis of a geothermal step utilization heating system. (2012). Li, Feng ; Tian, Zhe ; Zhu, Neng ; Zheng, Guozhong .
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  43. From electricity smart grids to smart energy systems – A market operation based approach and understanding. (2012). Andersen, Anders N. ; Ostergaard, Poul Alberg ; Lund, Henrik ; Connolly, David ; Mathiesen, Brian Vad.
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  44. Smart renewable generation for an islanded system. Technical and economic issues of future scenarios. (2012). Sanseverino, Eleonora Riva ; Cosentino, Valentina ; Favuzza, Salvatore ; Ippolito, Mariano Giuseppe ; Graditi, Giorgio ; Zizzo, Gaetano ; Massaro, Fabio.
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  45. 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. (2012). Svendsen, S. ; Tol, H. Ä°., .
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  46. Local authorities in the context of energy and climate policy. (2012). Brandoni, Caterina ; Cioccolanti, Luca ; Comodi, Gabriele ; Polonara, Fabio.
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  47. End-use energy savings and district heating expansion in a local renewable energy system – A short-term perspective. (2012). Mller, Bernd ; Sperling, Karl .
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