The fractal tree-like branched network is an effective channel design structure to reduce the hydraulic resistance as compared with the conventional parallel channel network. In order for a laminar flow to achieve minimum hydraulic resistance, it is believed that the optimal fractal tree-like channel network obeys the well-accepted Murray’s law of βm = N−1/3 (βm is the optimal diameter ratio between the daughter channel and the parent channel and N is the branching number at every level), which is obtained under the assumption of no-slip conditions at the channel wall–liquid interface. However, at the microscale, the no-slip condition is not always reasonable; the slip condition should indeed be considered at some solid–liquid interfaces fo...
Biological and engineering studies of Hess-Murray’s law are focused on assemblies of tubes with impe...
Received 24 March 2009 Received in revised form 15 May 2009 Accepted 20 May 2009 Available online 17...
Fluid flow in tree-shaped networks plays an important role in both natural and engineered systems. T...
ABSTRACTInspired by the natural bifurcating structures, tree-like microchannels have been applied fo...
Fractal-like branching channel networks have been shown to offer the advantages of reduced pumping p...
This paper aims to contribute to the ongoing research on tree-shaped flow structures. Here, we focus...
We address the effect of the network size-limiting constraints on the optimal design. The optimal de...
Graduation date: 2011Fractal-like branching microchannel flow networks have been found to improve wa...
International audienceDichotomic or polytomic arborescences are used in engineering as fluid distrib...
Murray's law states that the volumetric flow rate is proportional to the cube of the radius in a cyl...
Optimal channel networks are fractal structures that bear a striking resemblance to real rivers. The...
We analyze the optimal channel network model for river networks Using both analytical and numerical ...
We analyze the structure of networks minimizing the global resistance to flow (or dissipated energy)...
The branching of fluidic networks becomes a subject of great interest due to its importance in under...
We study tree structures termed optimal channel networks (OCNs) that minimize the total gravitationa...
Biological and engineering studies of Hess-Murray’s law are focused on assemblies of tubes with impe...
Received 24 March 2009 Received in revised form 15 May 2009 Accepted 20 May 2009 Available online 17...
Fluid flow in tree-shaped networks plays an important role in both natural and engineered systems. T...
ABSTRACTInspired by the natural bifurcating structures, tree-like microchannels have been applied fo...
Fractal-like branching channel networks have been shown to offer the advantages of reduced pumping p...
This paper aims to contribute to the ongoing research on tree-shaped flow structures. Here, we focus...
We address the effect of the network size-limiting constraints on the optimal design. The optimal de...
Graduation date: 2011Fractal-like branching microchannel flow networks have been found to improve wa...
International audienceDichotomic or polytomic arborescences are used in engineering as fluid distrib...
Murray's law states that the volumetric flow rate is proportional to the cube of the radius in a cyl...
Optimal channel networks are fractal structures that bear a striking resemblance to real rivers. The...
We analyze the optimal channel network model for river networks Using both analytical and numerical ...
We analyze the structure of networks minimizing the global resistance to flow (or dissipated energy)...
The branching of fluidic networks becomes a subject of great interest due to its importance in under...
We study tree structures termed optimal channel networks (OCNs) that minimize the total gravitationa...
Biological and engineering studies of Hess-Murray’s law are focused on assemblies of tubes with impe...
Received 24 March 2009 Received in revised form 15 May 2009 Accepted 20 May 2009 Available online 17...
Fluid flow in tree-shaped networks plays an important role in both natural and engineered systems. T...