TY - GEN
T1 - Accurate and Efficient Simulation of Microfluidic Networks
AU - Gerold Fink, Fink
AU - Philipp Ebner, Ebner
AU - Hamidović, Medina
AU - Werner Haselmayr, Haselmayr
AU - Robert Wille, Wille
N1 - Publisher Copyright:
© 2021 Association for Computing Machinery.
PY - 2021/1/18
Y1 - 2021/1/18
N2 - Microfluidics is a prospective field which provides technological advances to the life sciences. However, the design process for microfluidic devices is still in its infancy and frequently results in a trial-and-error scheme. In order to overcome this problem, simulation methods provide a powerful solution allowing for deriving a design, validating its functionality, or exploring alternatives without the need of an actual fabricated and costly prototype. To this end, several physical models are available such as Computational Fluid Dynamics (CFD) or the 1-dimensional analysis model. However, while CFD-simulations have high accuracy, they also have high costs with respect to setup and simulation time. On the other hand, the 1D-analysis model is very efficient but lacks in accuracy when it comes to certain phenomena. In this work, we present ideas to combine these two models and, thus, to provide an accurate and efficient simulation approach for microfluidic networks. A case study confirms the general suitability of the proposed approach.
AB - Microfluidics is a prospective field which provides technological advances to the life sciences. However, the design process for microfluidic devices is still in its infancy and frequently results in a trial-and-error scheme. In order to overcome this problem, simulation methods provide a powerful solution allowing for deriving a design, validating its functionality, or exploring alternatives without the need of an actual fabricated and costly prototype. To this end, several physical models are available such as Computational Fluid Dynamics (CFD) or the 1-dimensional analysis model. However, while CFD-simulations have high accuracy, they also have high costs with respect to setup and simulation time. On the other hand, the 1D-analysis model is very efficient but lacks in accuracy when it comes to certain phenomena. In this work, we present ideas to combine these two models and, thus, to provide an accurate and efficient simulation approach for microfluidic networks. A case study confirms the general suitability of the proposed approach.
UR - https://www.scopus.com/pages/publications/85100530981
U2 - 10.1145/3394885.3431608
DO - 10.1145/3394885.3431608
M3 - Conference contribution
AN - SCOPUS:85100530981
T3 - Proceedings of the Asia and South Pacific Design Automation Conference, ASP-DAC
SP - 85
EP - 90
BT - Proceedings of the 26th Asia and South Pacific Design Automation Conference, ASP-DAC 2021
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 26th Asia and South Pacific Design Automation Conference, ASP-DAC 2021
Y2 - 18 January 2021 through 21 January 2021
ER -