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Leitlinien Unfallchirurgie
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Extract, PDF (1 MB)
Table of Contents, PDF (530 KB)
In the research project NEDS – Sustainable Energy Supply Lower Saxony, conceivable transition paths towards a power supply based on renewable energies in Lower Saxony by 2050 are developed and examined for their sustainability and feasibility. Both the different technical focal points and the joint development of methods and models represent important aspects of the project. A comprehensive method for the integrated development and evaluation of energy scenarios is developed and applied to Lower Saxony. As a basic framework, five future scenarios for the target year 2050 are developed. Based on the qualitative future scenarios and three chosen alternatives, quantitative assumptions are made for the simulation and evaluation. The simulation results of the system model form the basis for the system evaluation. Defined system states for the transition years are simulated and then compared using a multi-criteria decision analysis based on sustainability criteria.
| ISBN-13 (Hard Copy) | 9783736971189 |
| ISBN-13 (eBook) | 9783736961180 |
| Final Book Format | A5 |
| Language | English |
| Page Number | 262 |
| Edition | 1. |
| Book Series | Schriftenreihe des Energie-Forschungszentrums Niedersachsen (EFZN) |
| Volume | 61 |
| Publication Place | Göttingen |
| Publication Date | 2019-12-11 |
| General Categorization | Non-Fiction |
| Departments |
Business economics
Political economics Psychology Informatics Common electrical engineering Energy engineering |
| Keywords | Sustainability, Power supply, Lower Saxony, Renewable energies, Scenario analysis, Scenario process, Multi-criteria assessment, Simulation model, Sustainability criteria, Energy scenarios, Future scenarios, Innovative technologies, Diffusion research, Flexibility, Optimization process, Optimization method, Control systems, Energy management, User, Smart home, Smart grid, Co-simulation, Information model, MCDA method, Grid expansion, Grid expansion planning, Market model, CO2 emissions, Life-cycle assessment, Sustainability, Power supply, Lower Saxony, Renewable energies, Scenario planning, Scenario development, Multi-criteria Decision Analysis (MCDA), Simulation model, Sustainability criteria, Energy scenario, Future scenarios, Innovative technologies, Diffusion of innovations, Flexibility, Optimization process, Optimization model, Control systems, Energy management, User, Smart home, Smart grid, Co-simulation framework, Information model, Grid expansion, Grid expansion measures, Market model, CO2 emissions, Life cycle assessment |