Refine
Document Type
- Article (reviewed) (1)
- Part of a Book (1)
- Master's Thesis (1)
Keywords
- Energieversorgung (3) (remove)
Institute
Open Access
- Closed (3) (remove)
Am 1. Juli 2022 trafen sich im Rahmen des Abschlusskolloquiums des Projekts ACA-Modes rund 60 Teilnehmende aus Forschung, Lehre und Industrie zu einer internationalen Konferenz an der Hochschule Offenburg. Hier wurden die Projektergebnisse rund um die erfolgreiche Implementierung modellprädiktiver Regelstrategien vorgestellt, aktuelle Fragestellungen diskutiert und Entwicklungspfade hin zu einem netzdienlichen Betrieb von Energieverbundsystemen skizziert.
Increasing global energy demand and the need to transition to sustainable energy sources to mitigate climate change, highlights the need for innovative approaches to improve the resilience and sustainability of power grids. This study focuses on addressing these challenges in the context of Morocco's evolving energy landscape, where increasing energy demand and efforts to integrate renewable energy require grid reinforcement strategies. Using renewable energy sources such as photovoltaic systems and energy storage technologies, this study aims to develop a methodology for strengthening rural community grids in Morocco.
Traditional reinforcement measures such as line and transformer upgrades will be investigated as well as the integration of power generation from photovoltaic systems, which offer a promising way to utilise Morocco's abundant solar resources. In addition, energy storage systems will be analysed as potential solutions to the challenges of grid stability and resilience. Using comprehensive data analysis, scenario planning and simulation methods with the open-source simulation software Panda Power, this study aims to assess the impact of different grid reinforcement measures, including conventional methods, photovoltaic integration, and the use of energy storage, on grid performance and sustainability. The results of this study provide valuable insights into the challenges and opportunities of transitioning to a more resilient and sustainable energy future in Morocco.
Based on a rural medium-voltage grid in Souihla, Morocco, three scenarios were carried out to assess the impact of demand growth in 2030 and 2040. The first scenario focuses on conventional grid reinforcement measures, while the second scenario incorporates energy from residential photovoltaic systems. The third scenario analyses the integration of storage systems and their impact on grid reinforcement in 2030.
The simulations with energy from photovoltaic systems show a reduction in grid reinforcement measures compared to the scenario without solar energy. In addition, the introduction of a storage system in 2030 led to a significant reduction in the required installed transformer capacity and fewer congested lines. Furthermore, the results emphasized the role of storage in stabilizing grid voltage levels.
In summary, the results highlighted the potential benefits of integrating energy from photovoltaics and storage into the grid. This integration not only reduces the need for transformers and overall grid infrastructure but also promotes a more efficient and sustainable energy system.
Kolbenmotoren finden in der Energieversorgung vielfältig Verwendung als Notstromaggregate, als Antrieb für Pumpen in Großkraftwerken und in dezentralen Blockheizkraftwerken (BHKW). Motoren für Notstromaggregate und zum Antrieb von Arbeitsmaschinen werden meist mit Diesel-Kraftstoff betrieben. In BHKW dominieren Gasmotoren, wobei Erdgas, Bio-, Deponie- oder Klärgas bevorzugt sind. Die wesentliche Thermodynamik der Otto-, Diesel- und Stirling-Motoren wird in Kürze behandelt, während die Gasmotoren tiefere Behandlung finden. Die Motoren für die Energieversorgung stammen i. Allg. von mobilen Anwendungen ab und werden an die energietechnischen Anwendungen angepasst. Technische Details der Motoren sind in der Fachliteratur zu finden, z. B. [1]. Die Website [2] gibt einen umfassenden Überblick über Hersteller und deren Kolbenmotoren.