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8 result(s) for "Kockel, Christina"
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Time series of useful energy consumption patterns for energy system modeling
The analysis of energy scenarios for future energy systems requires appropriate data. However, while more or less detailed data on energy production is often available, appropriate data on energy consumption is often scarce. In our JERICHO-E-usage dataset, we provide comprehensive data on useful energy consumption patterns for heat, cold, mechanical energy, information and communication, and light in high spatial and temporal resolution. Furthermore, we distinguish between residential, industrial, commerce, and mobility consumers. For our dataset, we aggregate bottom-up data and disaggregate top-down data both to the NUTS2 level. The NUTS2 level serves as an interface to validate our combined method approach and the calculations. We combine a multitude of data sources such as weather time series, standard load profiles, census data, movement data, and employment figures to increase the scope, validity, and reproducibility for energy system modeling. The focus of our JERICHO-E-usage dataset on useful energy consumption might be of particular interest to researchers who analyze energy scenarios where renewable electricity is largely substituted for fossil fuel (sector coupling). Measurement(s) space heat consumption patterns • hot water consumption patterns • space cooling consumption patterns • process cooling consumption patterns • mechanical energy consumption patterns • information and communication (ICT) consumption patterns • light consumption patterns • mileage profiles • process heat consumption patterns Technology Type(s) computational modeling technique Factor Type(s) final energy consumption pattern • final energy annual consumption • heating system dimensioning guidelines • census data • traffic census data • weather data • economic reports and statistics • technical reports and statistics Sample Characteristic - Environment spatiotemporal region • temperature of air • building • economy • industry • demography • energy Machine-accessible metadata file describing the reported data: https://doi.org/10.6084/m9.figshare.14039456
How Dependent Are European Power Systems and Economies on Natural Gas?—A Macroeconomic Optimization for Security of Electricity Supply
How dependent are European power systems and economies on natural gas? To answer this pressing question, we coupled a simulation model for assessing security of electricity supply and an economic optimization model. With this, we were able to analyze different reduction scenarios of the amount of gas utilized in the power sector. Our results show that reducing the amount of natural gas in the European power sector by up to 30% has a relatively moderate impact on the security of electricity supply. Restrictions of 40% or more result in substantially higher reductions in electricity demand shortfall and are associated with economic costs of more than EUR 77 billion. Furthermore, we demonstrate that a close coordination of gas distribution on a European level would be instrumental in mitigating negative economic consequences. Finally, it can be deduced that a coordinated delay of planned power plant shutdowns could effectively compensate for reduced gas volumes in the electricity sector.
Integrating Methods and Empirical Findings from Social and Behavioural Sciences into Energy System Models—Motivation and Possible Approaches
The transformation of the energy system is a highly complex process involving many dimensions. Energy system models help to understand the process and to define either target systems or policy measures. Insights derived from the social sciences are not sufficiently represented in energy system models, but address crucial aspects of the transformation process. It is, therefore, necessary to develop approaches to integrate results from social science studies into energy system models. Hence, as a result of an interdisciplinary discourse among energy system modellers, social scientists, psychologists, economists and political scientists, this article explains which aspects should be considered in the models, how the respective results can be collected and which aspects of integration into energy system models are conceivable to provide an overview for other modellers. As a result of the discourse, five facets are examined: Investment behaviour (market acceptance), user behaviour, local acceptance, technology innovation and socio-political acceptance. Finally, an approach is presented that introduces a compound of energy system models (with a focus on the macro and micro-perspective) as well as submodels on technology genesis and socio-political acceptance, which serves to gain a more fundamental knowledge of the transformation process.
Triggering Local Innovation Processes for the Implementation of Sector Coupling Projects: An Integrated Approach
Local implementation projects for sector coupling play an important role in the transformation to a more sustainable energy system. Despite various technical possibilities, there are various barriers to the realisation of local projects. Against this backdrop, we introduce an inter- and transdisciplinary approach to identifying and evaluating different power-to-X paths as well as setting up robust local implementation projects, which account for existing drivers and potential hurdles early on. After developing the approach conceptually, we exemplify our elaborations by applying them to a use case in the German city of Wuppertal. It can be shown that a mix of several interlinked interdisciplinary methods as well as several participatory elements is suitable for triggering a collective, local innovation process. However, the timing and extent of end-user integration remain a balancing act. The paper does not focus on a detailed description of power-to-X (PtX) as a central pillar of the sustainable transformation of the energy system. Rather, it focuses on the innovative methodological approach used to select a suitable use path and design a corresponding business model. The research approach was successfully implemented in the specific case study. However, it also becomes clear that the local-specific consideration entails limitations with regard to the transferability of the research design to other spatial contexts.
Generating Transparency in the Worldwide Use of the Terminology Industry 4.0
In 2011, the concept of Industry 4.0 was introduced and later adopted by the German government, paving the way for a new industrial revolution in Germany. The high significance of this topic is reflected by the large number of corresponding publications. Additionally, the regional focus of research is widespread on a global level and often differs even at a national level. This paper generates transparency regarding the adoption of the concept of Industry 4.0 by analyzing the locations of main contributors within the research field on an international, European, and German-national level. Further, it examines the regionally different foci concerning the concept of Industry 4.0. Having identified four main aspects linked to Industry 4.0 within a pre-study, a quantitative literature research was conducted based on over 800 published papers. The results were further visualized with QGIS. Looking at the results, it can be concluded that the German research community is virtually the only user of the term Industry 4.0, while other institutions seem to link their research to other related concepts. On a German level, the majority of the analyzed studies originate from Southern and Western Germany. North Rhine-Westphalia and the Aachen/Jülich region, in particular, represent main contributors.
Which Way to Choose? A Generic Modular Life Cycle Assessment for Hydrogen Production and Import Pathways to Germany
Hydrogen is set to become a cornerstone of global low-carbon energy systems globally. This study uses Germany as a case study to examine various hydrogen production and import pathways, with a focus on their Global Warming Potential (GWP). Employing a modular life cycle assessment, we identify and evaluate the primary environmental drivers across these pathways, which include production, conversion, transportation, and reconversion stages. Our findings highlight the significance of the electricity source for hydrogen production and conversion, as well as the efficiency of subsequent processes, including carbon capture rates for blue hydrogen, as critical factors influencing GWP. The necessity for hydrogen imports in countries with high demand and limited domestic production underscores the importance of optimizing hydrogen supply chains for reduced CO2 emissions. This analysis offers valuable insights for advancing sustainable energy transitions in other high-demand regions as well.
Long-term Energy Policy vs. Dynamic Public Preferences? A Review of German Energy Policy
During the energy crisis peaking in 2022, numerous countries have implemented short-term and immediate policy measures to reinforce security of energy supply and lower energy prices, often at the expense of environmental compatibility. This can be considered a sudden shift in the relative prioritization among these three energy policy goals. However, the sudden political rearrangement of energy policy priorities during the energy crisis in 2022 is only one illustration of a rapid shift. Historically, abrupt changes in public opinion have also prompted short-term adjustments in energy policy. This paper focuses on the dynamic relationship between public opinion and energy policy using the case of Germany. Specifically, we examine the relationship between changing public preferences and energy policy reaction regarding three significant events: the phase-out of nuclear energy, the phase-out of coal-fired power and heat generation, and the recent energy crisis in 2022. Our paper aims to assess the extent to which short-term shifts in public preferences can be aligned with efficient long-term planning of the energy system and identify the potential challenges that may arise during the process.
A Drosophila LexA Enhancer-Trap Resource for Developmental Biology and Neuroendocrine Research
Novel binary gene expression tools like the LexA-LexAop system could powerfully enhance studies of metabolism, development, and neurobiology in Drosophila. However, specific LexA drivers for neuroendocrine cells and many other developmentally relevant systems remain limited. In a unique high school biology course, we generated a LexA-based enhancer trap collection by transposon mobilization. The initial collection provides a source of novel LexA-based elements that permit targeted gene expression in the corpora cardiaca, cells central for metabolic homeostasis, and other neuroendocrine cell types. The collection further contains specific LexA drivers for stem cells and other enteric cells in the gut, and other developmentally relevant tissue types. We provide detailed analysis of nearly 100 new LexA lines, including molecular mapping of insertions, description of enhancer-driven reporter expression in larval tissues, and adult neuroendocrine cells, comparison with established enhancer trap collections and tissue specific RNAseq. Generation of this open-resource LexA collection facilitates neuroendocrine and developmental biology investigations, and shows how empowering secondary school science can achieve research and educational goals.