Proceedings of the International Renewable Energy Storage Conference (IRES 2022).

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Bibliographic Details
Superior document:Atlantis Highlights in Engineering Series ; v.16
:
TeilnehmendeR:
Place / Publishing House:Dordrecht : : Atlantis Press (Zeger Karssen),, 2023.
©2023.
Year of Publication:2023
Edition:1st ed.
Language:English
Series:Atlantis Highlights in Engineering Series
Online Access:
Physical Description:1 online resource (585 pages)
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Table of Contents:
  • Intro
  • Preface IRES 2022 Proceedings
  • Organization
  • Contents
  • Peer-Review Statements
  • 1 Review Procedure
  • 2 Quality Criteria
  • 3 Key Metrics
  • Are Carnot Batteries an Alternative When Repurposing Coal Power Plants in Europe?
  • 1 Introduction
  • 2 Method
  • 3 Modelling
  • 4 Results and Discussion
  • 5 Conclusion
  • References
  • Numerical Model for Underground Hydrogen Storage in Cased Boreholes
  • 1 Introduction
  • 1.1 Context
  • 1.2 Formulation of the Problem
  • 2 Methodology
  • 2.1 Numerical Model
  • 2.2 Simulations
  • 3 Results
  • 3.1 Storage Cycle and Geometry
  • 3.2 Thermal Diffusivity
  • 3.3 Heat Transfer Coefficient
  • 3.4 Operating Conditions
  • 4 Discussion and Conclusions
  • References
  • Air-Source Heat Pump with Integrated Latent Heat Storage for Residential Buildings: Concept Development and Design Evaluation
  • 1 Introduction
  • 2 Approach to Integrating a PCM Storage Unit into an ASHP
  • 2.1 Conceptualization of the Approach:
  • 2.2 System Configurations and Operating Modes:
  • 3 Model Development and Case Study
  • 3.1 Refrigerant/PCM Heat Exchanger Model
  • 3.2 Case Study
  • 4 Results and Discussion
  • 4.1 ASHP Simulation
  • 4.2 Charging the Storage with No Heating Demand in the Building
  • 4.3 Charging the Storage with Heating Demand in the Building
  • 5 Conclusion and Future Works
  • References
  • Theoretical and Experimental Investigation of Voltage Current Characteristic, Losses and Self-discharge of a Vanadium Redox Flow Battery System
  • 1 Introduction
  • 2 System Design
  • 3 Modeling Approach
  • 3.1 Basics
  • 3.2 Cell and Stack Voltage
  • 3.3 Peripheral Equipment
  • 3.4 Control of the Electrolyte Flow Rate
  • 4 Self-discharge Behavior During Standby Operation
  • 4.1 Losses in the Stack
  • 4.2 Losses in the Reservoirs
  • 4.3 Verification of the Assumptions
  • 5 Summary and Outlook
  • References.
  • Automating Storage Arbitrage in German Electricity Market
  • 1 Introduction
  • 2 Modeling
  • 2.1 Theoretical Background
  • 2.2 Input Data
  • 3 Results
  • 3.1 Linear Optimization
  • 3.2 Expert System
  • 3.3 Reinforcement Learning
  • 3.4 Performance Comparison
  • 4 Conclusions
  • References
  • Hybrid Lithium-Ion Battery Storage Solution with Optimizing Energy Management and Online Condition Monitoring for Multi-use Applications
  • 1 Introduction
  • 2 Hybrid Lithium-Ion Battery Storage Solution
  • 2.1 Fields of Application
  • 2.2 Energy Management Concepts
  • 3 Simulation Model
  • 4 Case Study - Extended Self-consumption Optimization
  • 4.1 Problem Formulation
  • 4.2 Reference Application
  • 4.3 Performance Criteria
  • 4.4 Simulation Results
  • 5 Conclusion
  • References
  • Numerical Study of the Influence of Fins' Geometry on the Thermal Performances of a Vertical Shell and Tube Latent Heat Thermal Energy Storage
  • 1 Introduction
  • 2 Numerical Simulation
  • 2.1 Physical Model
  • 2.2 Governing Equations
  • 3 Results and Discussions
  • 3.1 Effect of Natural Convection on the Melting Process in Vertical Smooth-Tube TES
  • 3.2 Effect of Fin Number
  • 3.3 Effect of Fin Length
  • 3.4 Effect of Fin Type
  • 3.5 Application to Storage Sizing
  • 4 Conclusion
  • References
  • The Smart Combination of a Novel MicroCHP, PVs and Various Energy Storage Possibilities to Provide the Household Energy Needs All year Round
  • 1 Lighting and Communication
  • 2 Heating and Cooling
  • 2.1 Efficiency and Cost of Heating
  • 3 Cooking
  • 4 Appliances
  • 5 A DC MICROCHP DESIGN FOR HOME USE
  • References
  • Integrated Power Plant Fired by Syngas from Solid Wastes and Natural Gas with Case for Energy Storage
  • 1 Introduction
  • 2 Methodology
  • 3 Results and Discussion
  • 3.1 Case for Energy Storage
  • 4 Conclusions
  • References.
  • Demand-Side Response for Grid-Independent Islands Based on Flexible Energy Management Using Heat Pumps
  • 1 Introduction
  • 2 Modelling Methodology
  • 2.1 Building Sub-model
  • 2.2 Heat Pump Sub-model
  • 2.3 Renewable Energy System (RES) Sub-model
  • 2.4 Demand-Response Platform Sub-model
  • 3 Results
  • 3.1 Baseline Case
  • 3.2 Demand-Side Response Scenarios
  • 4 Conclusions
  • References
  • Integration of Power-To-Methane into Glass Melting Processes
  • 1 Introduction
  • 1.1 Power-To-Methane in Glass Melting Processes
  • 1.2 Scope of This Work
  • 2 Methods
  • 2.1 Modelling and Simulation
  • 2.2 Economic Optimization
  • 2.3 Cost Parameter Assumptions
  • 3 Results and Discussion
  • 3.1 Specific Energy Demand and CO2 Emissions
  • 3.2 Cost Calculation
  • 4 Conclusion
  • References
  • Impact of Model and Forecast Uncertainties on the Performance of the Model Predictive Control of a PV-Battery-Heat Pump-Heat Storage System
  • 1 Introduction
  • 2 HESS Energy Management
  • 2.1 Controlled System
  • 2.2 EMS Objectives and MPC Scheme
  • 2.3 Optimization Problem Formulation
  • 2.4 Performance Criteria
  • 3 Impact of Model Uncertainties
  • 3.1 Models and Simulations
  • 3.2 Results
  • 4 Impact of Forecast Uncertainties
  • 4.1 Methods
  • 4.2 Feature Engineering
  • 4.3 Exploratory Data Analysis
  • 4.4 Significance Tests Using Bootstrapping
  • 4.5 Impact Estimates Using Logistic Regression
  • 5 Summary and Outlook
  • 5.1 Summarizing the Results
  • 5.2 Limits of the Study
  • 5.3 Conclusions and Outlook
  • Appendix
  • References
  • Getting Closer to Reality? Peak-Shaving with Battery Systems in Commerce and Industry
  • 1 Introduction
  • 2 Forecasting Peaks of Electric Load
  • 2.1 Forecast Methods
  • 2.2 Metrics for Forecast Accuracy
  • 2.3 Accuracy of Load Forecasts
  • 3 System Setup and Control
  • 3.1 Simulation Modeling of the System.
  • 3.2 Modeling of Grid Connection
  • 3.3 Control Concept and Standard Implementation
  • 4 Simulation Results
  • 4.1 Compared Controllers
  • 4.2 Evaluation of Operation
  • 4.3 Simulation Results
  • 5 Conclusion and Upcoming Research Steps
  • References
  • Multi-use Energy Management Concept for PV Battery Storage Systems Based on Reinforcement Learning
  • 1 Introduction
  • 2 Reference System
  • 3 Reinforcement Learning Based Energy Management Concept
  • 3.1 Basics of Reinforcement Learning
  • 3.2 State, Action and Reward
  • 3.3 Algorithm and Neural Network Topology
  • 4 Evaluation Results
  • 5 Summary and Outlook
  • References
  • Analysis of Operating and Positioning Strategies of Home and Community Storage Systems in Low Voltage Grids in a Sector-Coupled and Renewable Energy System
  • 1 Introduction
  • 2 Methodology
  • 2.1 Research Scenarios and Parameters
  • 2.2 Operating Strategies
  • 2.3 Positioning Strategies
  • 2.4 Battery Storage System
  • 2.5 Energy Cell Characterization and Modelling
  • 3 Results
  • 3.1 Reference Scenario
  • 3.2 BSS Scenarios
  • 4 Conclusion
  • References
  • Comparison of Renewable Large-Scale Energy Storage Power Plants Based on Technical and Economic Parameters
  • 1 Introduction
  • 2 Concepts of Large-Scale Energy Storage Power Plants
  • 3 Input Data
  • 3.1 Thermodynamic Parameters
  • 3.2 Specific Investment Costs
  • 4 Criteria for Comparison
  • 4.1 Storage Capacity and Round-Trip Efficiency
  • 4.2 Technology Readiness Level
  • 4.3 Investment Costs
  • 4.4 Additional Non-countable Criteria for Comparison
  • 5 Results of Comparison
  • 6 Discussion
  • 7 Conclusion
  • References
  • Flexible Operation of Electrolysis under Local Conditions and its Impact on the Medium Voltage Grid
  • 1 Introduction
  • 2 Background
  • 2.1 Legal Framework for PtG in Germany
  • 2.2 PtG as Flexibility for Grid Integration of Renewable Energies.
  • 2.3 Business Models for PtG
  • 3 Methodology
  • 3.1 Business Models
  • 3.2 Modelling and Assumptions of the Economic Analysis
  • 3.3 Modelling and Assumptions of Grid Impact Analysis
  • 4 Results
  • 4.1 Grid Impact Analysis
  • 4.2 Economic Analysis
  • 5 Conclusions
  • 6 Outlook
  • References
  • Modern NIR Spectrometer Technology for Real-Time State-of-Charge Estimation of Heat Storage Materials
  • 1 Introduction
  • 2 Materials and Methods
  • 2.1 Materials
  • 2.2 Data Acquisition
  • 2.3 Data Preprocessing and Chemometric Modelling
  • 3 Results and Discussion
  • 4 Conclusion
  • References
  • Towards Integration of Energy Storage Systems for Carbon Neutral Buildings
  • 1 Introduction
  • 2 Overview of Energy Storage Systems (EES)
  • 3 Applications of Thermal Energy storage (TES)
  • 3.1 Material Level
  • 3.2 Building Level
  • 3.3 Challenges and Outlooks
  • 4 Multi-Criteria Decision Making (MCDM)
  • 4.1 Principles and Software
  • 4.2 Conceptual Illustration
  • 5 Conclusions
  • References
  • Analysis of the Remaining Useful Life of Electric Vehicle Batteries and Development of Second-Life Solutions
  • 1 Introduction
  • 2 Characterization of Received Cells
  • 2.1 Dismantling Process
  • 3 Cell Selection Methodology
  • 4 Cycling Tests
  • 5 Energy Storage System Development
  • 5.1 BMS and Algorithms Development
  • 6 Final Considerations
  • References
  • Utilization of  a Latent Heat Storage for Waste Heat Recovery from an Aluminum Die Casting Plant and the Supply of Preheating and Heat Treatment Furnaces with Stored Heat
  • 1 Introduction
  • 2 Energy Efficient Foundry - Green Foundry 4.0
  • 3 PCM Storage and Preheating
  • 3.1 PCM Storage
  • 3.2 Preheating
  • 4 Storing and Utilization of Waste Heat
  • 4.1 Storing of Waste Heat
  • 4.2 Utilization of Waste Heat
  • 5 Simulation
  • 5.1 Simulation Parameters
  • 5.2 Results Waste Heat Storage (Charging).
  • 5.3 Utilization of Stored Heat (Discharging).