Reduced order modeling based shape optimization of surface acoustic wave driven microfluidic biochips

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Reduced order modeling based shape optimization of surface acoustic wave driven microfluidic biochips

Biochips are physically and/or electronically controllable miniaturized labs. They are used for combinatorial chemical and biological analysis in environmental and medical studies. The precise positioning of the samples on the surface of the chip in picoliter to nanoliter volumes can be done either by means of external forces (active devices) or by specific geometric patterns (passive devices)....

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Modeling, Simulation and Optimization of Surface Acoustic Wave Driven Microfluidic Biochips

Biochips are physically and/or electronically controllable miniaturized labs. They are used for combinatorial chemical and biological analysis in environmental and medical studies, e.g., for high throughput screening, hybridization and sequencing in genomics, protein profiling in proteomics, and cytometry in cell analysis. The precise positioning of the samples (e.g., DNA or proteins) on the su...

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Multiscale and Multiphysics Aspects in Modeling and Simulation of Surface Acoustic Wave Driven Microfluidic Biochips

Microfluidic biochips are devices that are designed for high throughput screening and hybridization in genomics, protein profiling in proteomics, and cell analysis in cytometry. They are used in clinical diagnostics, pharmaceutics and forensics. The biochips consist of a lithographically produced network of channels and reservoirs on top of a glass or plastic plate. The idea is to transport the...

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Optimization and Model Reduction of Time Dependent Pde-constrained Optimization Problems: Applications to Surface Acoustic Wave Driven Microfluidic Biochips

The optimal design of structures and systems described by partial differential equations (PDEs) often gives rise to large-scale optimization problems, in particular if the underlying system of PDEs represents a multiscale, multiphysics problem. Therefore, reduced order modeling techniques such as balanced truncation model reduction (BTMR), proper orthogonal decomposition (POD), or reduced basis...

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On-chip surface acoustic wave driven microfluidic motors

We report on the design of two different surface acoustic wave (SAW) driven rotary motors. Both designs use 20–30 MHz transducers patterned onto Lithium Niobate (LN), geometrically tailored to generate Rayleigh waves that are incident on opposing sides of each rotor. The first design exploits the efficient coupling between SAWs and fluids by use of a fluid coupling layer between the rotor and s...

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ژورنال

عنوان ژورنال: Mathematics and Computers in Simulation

سال: 2012

ISSN: 0378-4754

DOI: 10.1016/j.matcom.2010.10.027