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Exploring the options for carbon dioxide mitigation in Turkish electric power industry: System dynamics approach. (2013). Saysel, Ali Kerem ; Hekimolu, Mustafa.
In: Energy Policy.
RePEc:eee:enepol:v:60:y:2013:i:c:p:675-686.

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Cited: 16

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  1. A hybrid system dynamics model for power mix trajectory simulation in liberalized electricity markets considering carbon and capacity policy. (2024). Luo, Yilun ; Tezuka, Tetsuo ; Ahmadi, Esmaeil ; McLellan, Benjamin Craig.
    In: Renewable Energy.
    RePEc:eee:renene:v:233:y:2024:i:c:s0960148124012321.

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  2. Can marketed on-grid price drive the realization of energy transition in China’s power industry under the background of carbon neutrality?. (2023). Zhou, Dequn ; Zhang, Qin ; Zhao, Jing.
    In: Energy.
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  3. Electricity generation portfolio planning and policy implications of Turkish power system considering cost, emission, and uncertainty. (2023). Felder, F A ; Coit, D W ; Seluklu, Saltuk Bura.
    In: Energy Policy.
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  4. Application of System Dynamic Modelling for Evaluation of Carbon Mitigation Strategies in Cement Industries: A Comparative Overview of the Current State of the Art. (2021). Mielczarek, Boena ; Kunche, Akhil.
    In: Energies.
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  5. A system dynamics model to analyze future electricity supply and demand in Iran under alternative pricing policies. (2021). Nahavandi, Nasim ; Amin-Naseri, Mohammad Reza ; Dehghan, Hamed.
    In: Utilities Policy.
    RePEc:eee:juipol:v:69:y:2021:i:c:s0957178720301569.

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  6. Investigating driving forces of aggregate carbon intensity of electricity generation in China. (2018). Wang, Junfeng ; Dong, Zhanfeng ; Li, Yongjian ; Liu, Nan ; Qiu, YE ; He, Shutong.
    In: Energy Policy.
    RePEc:eee:enepol:v:113:y:2018:i:c:p:249-257.

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  7. Establishment of the Sustainable Ecosystem for the Regional Shipping Industry Based on System Dynamics. (2017). Zhou, Chunhui ; Wen, Yuanqiao ; Geng, Xiaoqiao ; Xiao, Changshi.
    In: Sustainability.
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  8. An assessment of Spains new alternative energy support framework and its long-term impact on wind power development and system costs through behavioral dynamic simulation. (2017). Moratilla-Soria, B Y ; Ibanez-Lopez, A S.
    In: Energy.
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  9. A dynamic simulation model for assessing the overall impact of incentive policies on power system reliability, costs and environment. (2017). Ibanez-Lopez, A S ; Moratilla-Soria, B Y ; Martinez-Val, J M.
    In: Energy Policy.
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  10. Energy related system dynamic models: a literature review. (2016). Leopold, Armin.
    In: Central European Journal of Operations Research.
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  11. An Analysis Based on SD Model for Energy-Related CO 2 Mitigation in the Chinese Household Sector. (2016). Guo, Xiao Jia ; Wang, Guokui ; Chen, Xingpeng ; Fu, Jinxiu .
    In: Energies.
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  12. Application of system dynamics approach in electricity sector modelling: A review. (2016). Ahmad, Salman ; Munir, Abu Bakar ; Muhammad-Sukki, Firdaus ; Tahar, Razman Mat .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:56:y:2016:i:c:p:29-37.

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  13. How will auctioning impact on the carbon emission abatement cost of electric power generation sector in China?. (2016). Liu, Liwei ; Chen, Chuxiang ; Sun, Xiaoru .
    In: Applied Energy.
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  14. Modelling the Latvian power market to evaluate its environmental long-term performance. (2016). Blumberga, Dagnija ; Lauka, Dace ; Rosa, Marika ; Barisa, Aiga .
    In: Applied Energy.
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  15. Role of feed-in tariff policy in promoting solar photovoltaic investments in Malaysia: A system dynamics approach. (2015). Ahmad, Salman ; Munir, Abu Bakar ; Muhammad-Sukki, Firdaus ; Tahar, Razman Mat .
    In: Energy.
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