Energy Conveyor Belt—A Detailed Analysis of a New Type of Hydrokinetic Device

Renewable energy technologies can help us combat climate change and hydrokinetic energy conversion systems could play a major role. The simplicity of hydrokinetic devices helps us to exploit renewable sources, especially in remote locations, which is not possible with conventional methods. A new typ...

Ausführliche Beschreibung

Bibliographische Detailangaben
Hauptverfasser: Mithran Daniel Solomon, Wolfram Heineken, Marcel Scheffler, Torsten Birth
Format: Artikel
Sprache:English
Veröffentlicht: MDPI AG 2023-02-01
Schriftenreihe:Energies
Schlagworte:
Online Zugang:https://www.mdpi.com/1996-1073/16/5/2188
_version_ 1827752750618771456
author Mithran Daniel Solomon
Wolfram Heineken
Marcel Scheffler
Torsten Birth
author_facet Mithran Daniel Solomon
Wolfram Heineken
Marcel Scheffler
Torsten Birth
author_sort Mithran Daniel Solomon
collection DOAJ
description Renewable energy technologies can help us combat climate change and hydrokinetic energy conversion systems could play a major role. The simplicity of hydrokinetic devices helps us to exploit renewable sources, especially in remote locations, which is not possible with conventional methods. A new type of hydrokinetic device called the Energy Conveyor Belt was designed, which works on the concept of conveyor belt technology. Numerical simulations are performed on the design of the Energy Conveyor Belt with Ansys FLUENT to optimize its performance. Some of the optimized models produced a maximum power slightly above 1 kW. The numerical results are then compared to the experimental results of other hydrokinetic turbines. The compactness and flexibility of the design give the Energy Conveyor Belt an advantage over other hydrokinetic devices in regions with fluctuating water levels. Further research has to be undertaken into cascading systems to increase the overall power generated by the system.
first_indexed 2024-03-11T07:26:21Z
format Article
id doaj.art-3d844d1a79ea4ba9af5c6b1e918dba2f
institution Directory Open Access Journal
issn 1996-1073
language English
last_indexed 2024-03-11T07:26:21Z
publishDate 2023-02-01
publisher MDPI AG
record_format Article
series Energies
spelling doaj.art-3d844d1a79ea4ba9af5c6b1e918dba2f2023-11-17T07:35:21ZengMDPI AGEnergies1996-10732023-02-01165218810.3390/en16052188Energy Conveyor Belt—A Detailed Analysis of a New Type of Hydrokinetic DeviceMithran Daniel Solomon0Wolfram Heineken1Marcel Scheffler2Torsten Birth3Fraunhofer Institute for Factory Operation and Automation IFF, Sandtorstraße 22, 39106 Magdeburg, GermanyFraunhofer Institute for Factory Operation and Automation IFF, Sandtorstraße 22, 39106 Magdeburg, GermanyFraunhofer Institute for Factory Operation and Automation IFF, Sandtorstraße 22, 39106 Magdeburg, GermanyFraunhofer Institute for Factory Operation and Automation IFF, Sandtorstraße 22, 39106 Magdeburg, GermanyRenewable energy technologies can help us combat climate change and hydrokinetic energy conversion systems could play a major role. The simplicity of hydrokinetic devices helps us to exploit renewable sources, especially in remote locations, which is not possible with conventional methods. A new type of hydrokinetic device called the Energy Conveyor Belt was designed, which works on the concept of conveyor belt technology. Numerical simulations are performed on the design of the Energy Conveyor Belt with Ansys FLUENT to optimize its performance. Some of the optimized models produced a maximum power slightly above 1 kW. The numerical results are then compared to the experimental results of other hydrokinetic turbines. The compactness and flexibility of the design give the Energy Conveyor Belt an advantage over other hydrokinetic devices in regions with fluctuating water levels. Further research has to be undertaken into cascading systems to increase the overall power generated by the system.https://www.mdpi.com/1996-1073/16/5/2188Energy Conveyor Belthydrokinetic energyrenewable energy
spellingShingle Mithran Daniel Solomon
Wolfram Heineken
Marcel Scheffler
Torsten Birth
Energy Conveyor Belt—A Detailed Analysis of a New Type of Hydrokinetic Device
Energies
Energy Conveyor Belt
hydrokinetic energy
renewable energy
title Energy Conveyor Belt—A Detailed Analysis of a New Type of Hydrokinetic Device
title_full Energy Conveyor Belt—A Detailed Analysis of a New Type of Hydrokinetic Device
title_fullStr Energy Conveyor Belt—A Detailed Analysis of a New Type of Hydrokinetic Device
title_full_unstemmed Energy Conveyor Belt—A Detailed Analysis of a New Type of Hydrokinetic Device
title_short Energy Conveyor Belt—A Detailed Analysis of a New Type of Hydrokinetic Device
title_sort energy conveyor belt a detailed analysis of a new type of hydrokinetic device
topic Energy Conveyor Belt
hydrokinetic energy
renewable energy
url https://www.mdpi.com/1996-1073/16/5/2188
work_keys_str_mv AT mithrandanielsolomon energyconveyorbeltadetailedanalysisofanewtypeofhydrokineticdevice
AT wolframheineken energyconveyorbeltadetailedanalysisofanewtypeofhydrokineticdevice
AT marcelscheffler energyconveyorbeltadetailedanalysisofanewtypeofhydrokineticdevice
AT torstenbirth energyconveyorbeltadetailedanalysisofanewtypeofhydrokineticdevice