• Skip navigation
  • Skip to navigation
  • Skip to the bottom
Simulate organization breadcrumb open Simulate organization breadcrumb close
Friedrich-Alexander-Universität Chair of Energy Process Engineering
  • FAUTo the central FAU website
  1. Friedrich-Alexander-Universität
  2. Technische Fakultät
  3. Department Chemie- und Bioingenieurwesen
Suche öffnen
  • en
  • de
  • Mein Campus
  • UnivIS
  • FAU-directions
  1. Friedrich-Alexander-Universität
  2. Technische Fakultät
  3. Department Chemie- und Bioingenieurwesen
Friedrich-Alexander-Universität Chair of Energy Process Engineering
Navigation Navigation close
  • Chair
    • Staff
    • Seating plan
    • Job offers
    Portal Chair
  • News
    • News
    • Events
    • Ph.D.-galery
    Portal News
  • Studies and Teaching
    • Courses
    • Theses options
    • The study programme ‘Energy Technology’
    Portal Studies and Teaching
  • Research
    • Research topics Prof. Karl
      • Thermochemical Conversion and Chemical Energy Storage
      • Thermal Storage Systems and Carbon Capture
      • Energy Systems and Energy Economics
    • Research topics Prof. Herkendell
    • Facilities
    • Publications
    • Research networks
    Portal Research
  • Contact
    • Directions
    Portal Contact
  1. Home
  2. Startpage of the Chair of Energy Process Engineering
  3. Research
  4. Research topics Prof. Karl
  5. Energy Systems and Energy Economics
  6. BMWi-project ESM-Regio

BMWi-project ESM-Regio

In page navigation: Startpage of the Chair of Energy Process Engineering
  • Chair
  • Contact
  • Studies and Teaching
  • News
  • Research
    • Research topics Prof. Karl
      • Thermochemical Conversion and Chemical Energy Storage
      • Thermal Storage Systems and Carbon Capture
      • Energy Systems and Energy Economics
        • BMBF-Project: Klimapakt2030plus
        • BMWi-project ESM-Regio
        • BMWi-project: Kläffizient
        • BMWK project: KLÄFFIZIENTER
        • BMWK-project SyntheseREADY
        • CARINA
        • SustainableGas
    • Research topics Prof. Herkendell
    • Publications
    • Research networks
    • Facilities

BMWi-project ESM-Regio

bmwi

BMWi-project ESM-Regio – Multisectoral coupled energy system modelling on a regional level

The BMWi-project ESM-Regio will develop a model for a comprehensive analysis of sector coupled energy systems on a regional level with the purpose of recognizing optimization potentials through sector coupling, as well as evaluate efficiency measures and development goals regarding emissions, profitability and supply security, among others.

Support Code: 03EI1036A

Term: 01.05.2021 – 30.04.2024

PtJ

Projektträger Jülich

bmwi

Bundesministerium für Wirtschaft und Energie

Forschungsprogramm, Forschungsförderung im 7. Energieforschungsprogramm „Innovationen für die Energiewende“

Logo des Lehrstuhls Informatik 7 für Rechnernetze und Kommunikationssysteme

Chair of Computer Science 7, FAU Erlangen-Nürnberg

 

Lehrstuhl für Wirtschaftsmathematik, FAU Erlangen-Nürnberg

 

Institut für Hochspannungstechnik, Energiesystem- und Anlagendiagnose, Hochschule Coburg

 

Energieagentur Nordbayern

 

Stadtwerke Bayreuth

 

Bayern Innovativ, Cluster Energietechnik

The reduction of the primary energy demand and greenhouse gas emissions is a key for reaching the climate goals of the German government. The overall consideration and optimization of the whole energy system, taking into account individual sectors like electricity, heat, gas and transport as well as their coupling technologies, promises improvements in the future development of the German energy system.

Coupling technologies between the sectors operate primarily on a regional level. Therefore, with the purpose of analyzing the effects of the growing integration and coupling of the system, a regional consideration is necessary, as energy system models at the national level can’t be implemented with the needed level of detail. In addition, most energy system models consider only a partially coupled system or no couplings at all.

The main goal of the ESM-Regio project is to develop and implement an energy system model consisting of sub-models of the energy sectors electricity, heat, gas and transport. Departments of computer science, mathematics, electric and energy process engineering will cooperate in the fulfillment of the different challenges presented in this project. A single control and optimization unit will oversee all the sub-models uniformly, taking variations of its states into account. Furthermore, the developed model will describe the regional energy system at a city and district level with a high temporal resolution. The coupling technologies between the sub-models such as Power-to-Gas and Power-to-Heat will also be modeled and their operation will be controlled by the central control unit for an optimized operation of the whole system. The regional component of the project plan will be mainly carried out with the cooperation of the energy supply company of the city of Bayreuth. The city and the surrounding district will be used as an example region for the development of the model, therefore providing real and accurate data for the model implementation. At the end the model will be constructed in a way that it’s transferable to other regions through adaptation of single parameters.

At the chair of energy process engineering the heat sector as well as its coupling technologies will be modelled. Moreover, the systematic registration and analysis of the greenhouse gas emissions will be realized through life cycle assessments (LCA).

 

Ansprechpartner:

Natalia Luna-Jaspe

Natalia Luna-Jaspe, M. Sc.

Department of Chemical and Biological Engineering
Lehrstuhl für Energieverfahrenstechnik

  • Phone number: 09115302-99383
  • Email: natalia.luna-jaspe@fau.de

Friedrich-Alexander-Universität
Erlangen-Nürnberg

Schlossplatz 4
91054 Erlangen
  • Imprint
  • Privacy
  • Accessibility
  • Facebook
  • RSS Feed
  • Twitter
  • Xing
Up