This work aims at developing a strategy how the energy which has to be applied to transport incompressible and Newtonian fluids through straight ducts can be reduced. Based on the physical properties of laminar and turbulent flow, models are derived which theoretically lead to the reduction of the dissipated energy. The possibility to implement the proposed state due to appropriate design aspects in the cross section shape of the duct is investigated based on numerical simulations of the flow.
This work aims at developing a strategy how the energy which has to be applied to transport incompressible and Newtonian fluids through straight ducts can be reduced. Based on the physical properties of laminar and turbulent flow, models are derived which theoretically lead to the reduction of the dissipated energy. The possibility to implement the proposed state due to appropriate design aspects in the cross section shape of the duct is investigated based on numerical simulations of the flow
Umfang: VII, 167 S.
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Daschiel, G. 2015. Strategies to reduce friction losses and their implications for the energy efficient design of internal flow domains. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000043770
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Veröffentlicht am 29. Januar 2015
Englisch
192
Paperback | 978-3-7315-0291-3 |