Till innehåll på sidan
Till KTH:s startsida

Experimental Investigation and Optimisation of Granular Flow Dynamics in Gravity-Driven Moving Bed Electric Heaters for CSP Applications

Background

Next generation Concentrated Solar Power (CSP) systems are moving towards solid particle technologies to overcome the cost, stability, and temperature limitations of molten salts. Solid particles such as olivine can operate beyond 700 °C, enabling coupling with high-efficiency cycles (e.g., sCO₂ Brayton cycle) and hybridisation with photovoltaics (PV).

A critical component of such systems is the Moving Bed Electric Heater (MBEH), which uses surplus PV electricity to provide temperature uplift in the particle loop. Gravity-driven flow across horizontally arranged tubular heating elements offers mechanical simplicity and low parasitic losses. However, granular flows present unique challenges: particles form stagnant zones above tubes and void zones below, reducing effective heat transfer and creating a risk of local overheating.

The Horizon Europe Powder2Power  (P2P) project develops and demonstrates a MW-scale particle-driven CSP prototype. Within this project, KTH investigates MBEH concepts using transparent cold-flow rigs with olivine to characterise flow dynamics, optimise design parameters, and establish performance limits.

Thesis objectives

The thesis aims to experimentally investigate granular flow dynamics in a moving bed electric heater, quantify particle velocity fields, and estimate theoretical heat transfer coefficients to guide optimisation of the P2P superheater design.

Specific Objectives

  1. Flow characterisation – Quantify bulk and near-wall particle velocities using Particle Image Velocimetry (PIV) and Particle Tracking Velocimetry (PTV).

  2. Geometry optimisation – Investigate the influence of tube spacing, number of rows, and alternative geometries (cylindrical, airfoil, hexagonal, elliptical) on flow uniformity, stagnation, and void formation.

  3. Heat transfer estimation – Estimate theoretical heat transfer coefficients (HTC) from measured flow data using empirical/semi-empirical granular heat transfer correlations. Benchmark HTC values against literature data.

  4. Design recommendations – Provide guidelines for optimal tube geometry and spacing in MBEHs to reduce overheating risk and improve efficiency for CSP integration.

Research Questions

  1. How do tube spacing and geometry affect particle flow dynamics, stagnation, and void formation in MBEHs?

  2. What is the relationship between bulk velocity, near-wall velocity, and effective residence time for granular flows around tubular elements?

  3. What are the estimated HTC values for different configurations, and how do they compare with theoretical models and literature data?

  4. Which design trade-offs balance flow uniformity, heat transfer performance, and mechanical simplicity in electrically heated MBHEs?

Methodology

  1. Literature review: Granular heat transfer, moving bed heat exchangers, and experimental methods (PIV/PTV).

  2. Experimental campaign:

    • Use of KTH’s transparent cold-flow MBEH rig.

    • Particle Image Velocimetry and Tracking Velocimetry (PIV) with high-speed imaging.

    • Interchangeable 3D-printed tube arrays for varying spacing and geometries.

    • Test with olivine fractions (various).

  3. Data analysis:

    • Velocity fields and near-wall velocities using PIV.

    • Quantification of stagnant and void zones.

    • Estimation of HTC values from flow data and comparison with granular flow correlations.

  4. Scale-up discussion: Application of findings to pilot-scale superheater design in P2P.

Expected Outcomes

  • Experimental database of velocity fields, stagnation and void zone characteristics.

  • Demonstration of suitable tracer methods for granular PIV/PTV.

  • Estimated HTC values for varying geometries and spacings.

  • Recommendations for industrial-scale MBEH optimisation in CSP applications.

Duration

The project should start in January 2026, and should not extend for more than 6 months. Specific earlier starting date could be discussed.

Location

KTH, Department of Energy Technology

Main Supervisors

Taras Koturbash
Taras Koturbash forskare

Examiner

Björn Laumert
Björn Laumert Björn Laumert, Professor and Head of Energy Department
Innehållsansvarig:Oxana Samoteeva
Tillhör: Energiteknik
Senast ändrad: 2025-10-01
Experimental Investigation and Optimisation of Granular Flow Dynamics in Gravity-Driven Moving Bed Electric Heaters for CSP Applications
Experimental Investigation of a Vertical Electric Heater Concept for Powder Particles in CSP and Energy Storage Applications
Techno-Economic Analysis of Transport Cooling Technologies in the Nordic and European Cold Chain
Design and Techno-economic Analysis of a Cold Storage for an innovative Cooling System from IceHeart AB
Quantifying the economic value of electric heating to buildings when coupled with District heating
Evaluation of Temperature-Based Occupancy Detection in Residential Buildings: An Experimental Study in a Lab Environment
Towards Zero-Waste through a Circular Recovery Model – Lessons for Managing Municipal Solid Waste in cities
Net Zero Energy Design for Data Centers: A Multidisciplinary Approach (Competition)
Development of a Computational Tool for Evaluating Energy Storage Installations in the Swedish Electricity Market
Predicting Occupant Behavior in Fully Automated Energy Communities
Feasibility study on Component Test Bed for Cryogenic Renewable Fuels (CTB-cryo)
Techno-economic analysis and experimental pre-study of hydrogen production with improved catalytic process
Optimal control of networks of borehole heat exchangers with machine learning
CFD analysis of an air-based waste heat recovery solution for telecommunication base stations
Experimental analysis of waste heat recovery systems for telecommunication base stations
Safe Use of Flammable Refrigerants: Evaluating Refrigerant Leakage Flow Rate in Small Heat Pumps
Development of AI-Based Data-Driven Aging Model for Li-Ion Batteries
Investigations on heat-transfer in a rotating heat-pump
Numerical Simulations of a supersonic multiphase ejector for high-temperature heat-pumps
Sodium-Ion Batteries: Building the Foundation for a Greener Future via Life-Cycle Assessment and Techno-Economic modelling
Development of compact I-V curve tracer and load simulator for photovoltaic laboratory test rig
Development of remotely accessible battery laboratory exercise test rig
Investigation of usage of different methane fuel qualities for rocket engines with respect to the pyrolysis stability
CFD based design study of heat exchangers for high temperature heat pump applications.
Biogaslagring/optimering för minskat beroende av råolja
Refurbishment Strategy Based on Smart Radiator Controllers
Solar Photovoltaic-Thermal Integration with Ground Source Heat Pump Systems for Single-Family Houses
Integration of Solar Photovoltaic-Thermal (PVT) Collectors in District Heating Networks
Heat Propagation in High-Temperature Geothermal Wells
Experimental evaluation of advanced features of a modern heat pumping system
Energy use optimization of vertical farming systems
Rethinking Capacity Development in Energy Modeling: Integrating Local and Indigenous Knowledge Systems in Transboundary Contexts
Optimizing Waste Treatment Pathways for Sustainable District Heating Development: Integrating Material Flow and District Heating Models in OSeMOSYS
Social Life-cycle impact assessment of innovative cascade PCM based thermal energy storage solutions
Water Demand Forecasting from Multipurpose Reservoirs in Cochabamba, Bolivia, to 2050: A Sustainable Energy Perspective
Electrification of the heating sector in Europe
Safe use of flammable refrigerants-literature review
Safe use of flammable refrigerants-Modeling concentrations of the leaked refrigerants in case of accidental emissions in different scenarios
Boiling inside rectangular microchannels: Investigating the use of high-speed IR camera for temperature readings
Characteristics and kinetic study on catalytic and non-catalytic pyrolysis of PVC and wind blades in molten salts via thermogravimetric analysis
Predictive model control design for a small-scale steam engine based multi-source CHP system
Solar hydrogen production by photocatalytic reforming of cellulose with concentrated sunlight
Circularity of batteries
Battery application in harbour environment
Empowering the Future: Innovating Sustainable Energy with Digital Heat Pump Solutions
Optimizing Energy Performance in Existing Urban Building Stocks: A Comprehensive Analysis and Strategic Approach for Sustainable Operation
Techno-economic and feasibility assessment for nuclear plants combination with CO2 sequestration and green fuels production units
Techno-economic and feasibility assessment for nuclear plants integration in flexible future energy systems for grid balancing and ancillary services
Life-cycle impact assessment of innovative cascade PCM based thermal energy storage solutions
Techno-economic assessment and optimization of seasonal thermal energy storage in district heating networks
Final Commissioning and Experimental Performance Characterization of a Bench-scale Thermochemical Heat Storage System (SEU/SPG)
Renewables and Demand Side Management
Circularity measurement for automotive industries
Experimental Investigation of Optimal Flow in Borehole Heat Exchanger at KTH Live-in Lab
Low Global Warming Potential Refrigerants for high temperature heat pumps
Development of battery test rig: Remote Battery Lab
Comparative analysis of thermal storage options for industrial steam generation in a solar thermal integrated system
Development, Implementation & Evaluation of an optimized operation algorithm for a Li-Ion battery Energy Management System (EMS) at Tezpur University
De-icing of trains in a Nordic climate
Calibration of a measurement system for methane pyrolysis detection in rocket nozzles
Experimental study on the effect of rocket nozzle wall materials on the stability of methane
Examensarbete om vattenflöden för bostäder
Evaluating the potential of energy efficiency improvement in combined cycle power generation to minimize the CO2 footprint in the context of Sri Lanka
Smart and Sustainable Oskarshamn: Energy Management and urban system analysis
Photovoltaic system design, installation and performance evaluation: PV Lab test rig
Ground source heat pumps in densely populated areas - a techno-economic study
Replacement of old ground-source heat pumps – a techno-economic study
PV-ESS system optimization to maximize self-consumption of PV-generated in KTH live-in lab
Environmental assessment of SESS applications based on cradle to grave LCA
High and low temperature electrolysis integration in Combined Cycles
Novel solar technologies and SOEC integration for synthetic fuels
Digitalization of HVAC schema drawings
Development & implementation of an improved operation algorithm for a Li-Ion battery energy management system (EMS) at Tezpur University
Techno-economical analysis of large refrigeration systems - operational and maintenance strategies
Comparision of high fidelity and real-time CFD methods for simulating thermal comfort
Data driven heat pump models for generation of electrical load profiles at DSO level
Energy–Transport System Modelling for ASEAN (dual placement)
Towards Zero-Waste through a Circular Recovery Model – Lessons for Managing Municipal Solid Waste in cities
EPIC Africa CLEWs assessment supporting Burkina Faso’s development plans
Using machine learning to spatially classify current technologies used for cooking in developing countries
Accounting for affordability constrains in geospatial modelling of clean cooking access
Rethinking Capacity Development in Energy Modeling: Integrating Local and Indigenous Knowledge Systems in Transboundary Contexts
Optimizing Waste Treatment Pathways for Sustainable District Heating Development: Integrating Material Flow and District Heating Models in OSeMOSYS
Enhancing Socio-Economic Impact Assessment in Climate-Compatible and Self-Sufficient Rural Communities through Integrated Resource Optimization Models