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Topology Optimization Theory for Laminar Flow: Applications in Inverse Design of Microfluidics
Topology Optimization Theory for Laminar Flow: Applications in Inverse Design of Microfluidics

Topology Optimization Theory for Laminar Flow: Applications in Inverse Design of Microfluidics

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Unsteady, body-force-driven and two-phase properties are basic characteristics of the laminar flows. The book discusses these properties, which are typical of microfluidics and one of the research hotspots in the area of Micro-Electro-Mechanical Systems (MEMS), providing an efficient inverse design approach for microfluidic structures. To demonstrate the applications of this topology optimization theory in the context of microfluidics, it also investigates inverse design for the micromixer, microvalve and micropump, which are key elements in lab-on-chip devices.
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