2007Chemical Engineering & TechnologyRequires access

Influence of Gravity on Two‐Layer Laminar Flow in a Microchannel

Yoshiko Yamaguchi, T. Honda, Maria Portia P. Briones, Kenichi Yamashita, Masaya Miyazaki, H. Nakamura, Hideaki Maeda

Open publisher page 18 citations

Abstract

Abstract A microchannel forms a laminar flow if the fluid velocity is sufficiently slow. It is important to clarify the effect of gravity on laminar flow, since several microsystems require side‐by‐side laminar flow, which does not possess an interfacial tension. In this work, the influence of gravity on side‐by‐side laminar flow was quantitatively investigated using a computational fluid dynamics (CFD) simulation. As a result, a dimensionless parameter related to side‐by‐side laminar flow interfacial tilting was derived. Using this parameter, it was possible to estimate the interfacial tilting angle. The results reported here will be useful for microdevice design for chemical analysis, mixing, and chemical reactions.

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What this paper is about

Abstract A microchannel forms a laminar flow if the fluid velocity is sufficiently slow. It is important to clarify the effect of gravity on laminar flow, since several microsystems require side‐by‐side laminar flow, which does not possess an interfacial tension. In this work, the influence of gravity on side‐by‐side laminar flow was quantitatively investigated using a computational fluid dynamics (CFD) simulation. As a result, a dimensionless parameter related to side‐by‐side laminar flow interfacial tilting was derived. Using this parameter, it was possible to estimate the interfacial tilting angle. The results reported here will be useful for microdevice design for chemical analysis, mixing, and chemical reactions.

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Available abstract

Abstract A microchannel forms a laminar flow if the fluid velocity is sufficiently slow. It is important to clarify the effect of gravity on laminar flow, since several microsystems require side‐by‐side laminar flow, which does not possess an interfacial tension. In this work, the influence of gravity on side‐by‐side laminar flow was quantitatively investigated using a computational fluid dynamics (CFD) simulation. As a result, a dimensionless parameter related to side‐by‐side laminar flow interfacial tilting was derived. Using this parameter, it was possible to estimate the interfacial tilting angle. The results reported here will be useful for microdevice design for chemical analysis, mixing, and chemical reactions.

Key concepts: Laminar flow, Laminar flow reactor, Microchannel, Mechanics, Flow (mathematics), Laminar sublayer, Computational fluid dynamics, Work (physics)

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