Making Compatible Energy Planning with Urban Decision-Making: Socio-Energy Nodes and Local Configuration
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Abstract Integrated energy system is an important development trend of energy system in the future. As an important form of integrated energy system in local areas, regional integrated energy system has the complex characteristics of multi-energy supply. Therefore, this paper studied the planning model of regional integrated energy supply system. Firstly, the planning index system of regional integrated energy supply system was constructed. Secondly, based on the planning index system, considering the multiple constraints of power grid and heat grid, a regional energy supply system planning model was established to realize the minimum comprehensive cost of investment, operation, economy and environment. Finally, the example shows that the proposed planning model has better economic performance than the traditional planning scheme.
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In This work, the conditions and the degree of DG exploitation are investigated in a national energy planning. To this purpose, a bottom-up energy system optimization model is used to support policy planning for the sustainable use of energy. The national power system is modelled through the energy flow optimization model (EFOM) as a network of energy chains, starting from the primary energy supply and ending in the end use sectors. The study is carried out over a period of 15-20 years assuming feasible scenarios that take into account the characteristics and availability of different technologies and on policy measures such as energy taxes or constraints for the amounts of emissions and energy resources. The proposed methodology is applied to the case of the Italian energy system.
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This paper describes the implementation of a widely used, bottom-up, linear programming energy systems analysis modeling framework (MARKAL) in energy sector. The definition and overview of a standard Reference Energy System (RES) structure, that illustrates how all available energy sources, energy-transforming technologies, and energy-using technologies may be utilized and combined to meet a country's energy service demands is given. The RES built for the SYNENERGY Strategic Planning Southeast Europe and Caucuses national energy models is described in detail.
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The main focus of this paper involves determining Iran's energy system features, acknowledging energy modeling approaches by making a good scenario for the developing countries and developing scenarios using these confirmed models for simulating the transfer of energy compatible with the environment. This approach which is carried out through the multi-purpose optimization proposes an alternative to design an energy system based on the economic and environmental norms. In addition this paper mentions the chances and the consequences of transferring the replaceable energies and the potential paths to come. Thus, determining and modeling of the energy system is dealt with and the required strategic program to solve the country's energy system problems are shown through the basic structure, the mixed program framework and the practical & case studies so as to prepare the scenarios to transfer the renewable energies Iran. These scenarios are based on the present economy depending upon the fossil fuel, and the aims of government for an economic future relying more on the renewable energies. This paper also tries to predict the plans for the country's future energy using the alternative energy planning systems (such as simulator application of LEAP). At the end of the paper, analyzing the data and the conclusions is done.
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Analysis of Long-Term Plan for Energy Supply System for Latvia that is 100% Based on the Use of Local Energy Resources The prices of fossil energy resources are expected to rise substantially in the future, therefore fossil energy resources might not be a feasible energy source for Latvia in the long term. The establishment of a fully self-sufficient energy supply system will require a significant transformation of the existing energy supply and transport infrastructure. Early planning of such a system makes it possible to shape development of the existing energy system in order to achieve that goal of a fully self-sufficient energy supply system. The paper shows a potential solution to establish an energy and transport system solely based on the domestic primary resources by the year 2050.
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Abstract Urged by the concerns relating to climate change and the energy crises, several companies and industries have been undertaking a deeply transformation of their energy system. Energy planning, especially with a long-term perspective, has assumed a renewed importance. The traditional approaches about energy planning, typically relying on a single-project analyses and a short-term vision, appear today unsuitable for evaluating the disruptive transformation of the energy system. In this paper, we propose an energy system optimization approach, based on a detailed energy planning, and we discuss its application to an energy intensive industry: airports. In the context of the European TULIPS project, the energy system of the fellow airport of Turin was modelled in the open-source OSeMOSYS framework. The model was then validated on a set of reference years of operation of the airport. The results of the modelling exercise showed minor variations with respect to real-world data, with a percent error well below 2.5%. Having assessed the ability of the model to reproduce the behavior of the energy system, future studies will be devoted to the development of a decarbonisation roadmap for Turin Airport.
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Energy planning
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Energy planning
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