The onset of bio‐thermal convection induced by a combined effect of gyrotactic and oxytactic microorganisms
DOI10.1108/HFF-09-2011-0178zbMath1356.76098OpenAlexW2125953852WikidataQ57428876 ScholiaQ57428876MaRDI QIDQ2967059
Publication date: 28 February 2017
Published in: International Journal of Numerical Methods for Heat & Fluid Flow (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1108/hff-09-2011-0178
convectionnatural convectiononset of instabilityhorizontal layerthermo-bioconvectionmicro-organismsgyrotactic and oxytactic microorganisms
Ecology (92D40) Convection in hydrodynamic stability (76E06) Computational methods for problems pertaining to biology (92-08)
Related Items (5)
Cites Work
- Unnamed Item
- The onset of convection in a horizontal nanofluid layer of finite depth
- The method of weighted residuals and variational principles. With application in fluid mechanics, heat and mass transfer
- The development of concentration gradients in a suspension of chemotactic bacteria
- Non-oscillatory and oscillatory nanofluid bio-thermal convection in a horizontal layer of finite depth
- Nanofluid bioconvection: interaction of microorganisms oxytactic upswimming, nanoparticle distribution, and heating/cooling from below
- Investigation of the onset of thermo-bioconvection in a suspension of oxytactic microorganisms in a shallow fluid layer heated from below
- The onset of bio‐thermal convection induced by a combined effect of gyrotactic and oxytactic microorganisms
- Bioconvection in a suspension of isotropically scattering phototactic algae
- THE ROLE OF BIOCONVECTION IN PLANKTON POPULATION WITH THERMAL STRATIFICATION
- The growth of bioconvection patterns in a uniform suspension of gyrotactic micro-organisms
- Pattern formation in a suspension of swimming microorganisms: equations and stability theory
- Growth of bioconvection patterns in a suspension of gyrotactic micro-organisms in a layer of finite depth
- Bioconvection in suspensions of oxytactic bacteria: linear theory
- Bioconvection in a suspension of phototactic algae
- Nanofluid bio-thermal convection: simultaneous effects of gyrotactic and oxytactic micro-organisms
- The rheology of a semi-dilute suspension of swimming model micro-organisms
This page was built for publication: The onset of bio‐thermal convection induced by a combined effect of gyrotactic and oxytactic microorganisms