Develop and test a micropump based on acoustic impedance mismatch
This Final Year Project (FYP) report present a study and analysis on impedance pumps based the concept of acoustic impedance mismatch. The project focus on three different pump models, which are two closed loop models and a fluid transfer model. The two closed loop system models are designed to unde...
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2022
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sg-ntu-dr.10356-1587992022-06-07T04:19:44Z Develop and test a micropump based on acoustic impedance mismatch Chew, Eric Rong Jie Huang Xiaoyang School of Mechanical and Aerospace Engineering MXHUANG@ntu.edu.sg Engineering::Mechanical engineering This Final Year Project (FYP) report present a study and analysis on impedance pumps based the concept of acoustic impedance mismatch. The project focus on three different pump models, which are two closed loop models and a fluid transfer model. The two closed loop system models are designed to understand the Liebau phenomenon of valveless pumping, its characteristics and the various parameters that affect the flow rate and direction of the fluid in the model. Fluid transfer model is designed and assembled to test for its characteristics. Bachelor of Engineering (Mechanical Engineering) 2022-06-07T04:19:44Z 2022-06-07T04:19:44Z 2022 Final Year Project (FYP) Chew, E. R. J. (2022). Develop and test a micropump based on acoustic impedance mismatch. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/158799 https://hdl.handle.net/10356/158799 en A095 application/pdf Nanyang Technological University |
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Engineering::Mechanical engineering Chew, Eric Rong Jie Develop and test a micropump based on acoustic impedance mismatch |
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This Final Year Project (FYP) report present a study and analysis on impedance pumps based the concept of acoustic impedance mismatch. The project focus on three different pump models, which are two closed loop models and a fluid transfer model. The two closed loop system models are designed to understand the Liebau phenomenon of valveless pumping, its characteristics and the various parameters that affect the flow rate and direction of the fluid in the model. Fluid transfer model is designed and assembled to test for its characteristics. |
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Huang Xiaoyang |
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Huang Xiaoyang Chew, Eric Rong Jie |
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Final Year Project |
author |
Chew, Eric Rong Jie |
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Chew, Eric Rong Jie |
title |
Develop and test a micropump based on acoustic impedance mismatch |
title_short |
Develop and test a micropump based on acoustic impedance mismatch |
title_full |
Develop and test a micropump based on acoustic impedance mismatch |
title_fullStr |
Develop and test a micropump based on acoustic impedance mismatch |
title_full_unstemmed |
Develop and test a micropump based on acoustic impedance mismatch |
title_sort |
develop and test a micropump based on acoustic impedance mismatch |
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Nanyang Technological University |
publishDate |
2022 |
url |
https://hdl.handle.net/10356/158799 |
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1735491187182141440 |