Numerical and experimental investigation of acoustic agglomeration

Acoustic Agglomeration is a pre-treatment method use for coagulating dust particles for effective air filtration. It uses acoustic waves to collide dust particles, forming larger dust particles size and the agglomerated dust particles are filtered using air filters, wet precipitator or other convent...

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Main Author: Low, Aik How
Other Authors: Ng Bing Feng
Format: Final Year Project
Language:English
Published: 2019
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Online Access:http://hdl.handle.net/10356/76419
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-764192023-03-04T19:09:05Z Numerical and experimental investigation of acoustic agglomeration Low, Aik How Ng Bing Feng Wan Man Pun School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering Acoustic Agglomeration is a pre-treatment method use for coagulating dust particles for effective air filtration. It uses acoustic waves to collide dust particles, forming larger dust particles size and the agglomerated dust particles are filtered using air filters, wet precipitator or other conventional filtration methods. The study examines the parametric values required to achieve high aerosol agglomeration using acoustic waves. This study describes the agglomeration efficiency in aerosol at sound frequency 4 kHz to 10 kHz, ambient pressure between 500 kPa to 1,100 kPa, ambient temperature from 400 K to 1,000 K, Sound Pressure Level (SPL) from 100 dB to 155 dB and mass loading in 8.46 g/m3 to 20.46 g/m3. The investigation was conducted through numerical simulations using sectional methods to determine the optimal values of the operating parameters. Demonstration and experiment were conducted in this study to examine the flow pattern of the aerosol during acoustic agglomeration process. The study found that the maximum agglomeration efficiency through adjustment of the operating parameters. The numerical simulation shows that attaining the highest possible value for ambient temperature, SPL and mass loading could increase the agglomeration efficiency in particles, while keeping ambient pressure at its minimum value shows better agglomeration efficiency. The results show indication that the optimal value for sound frequency is greatly dependent other operating parameters. The demonstration exhibits turbulence flow motion in aerosol during agglomeration process. This study concludes effect of the operating parameters on acoustic agglomeration and the parametric values in achieving the maximum agglomeration efficiency in aerosol. Bachelor of Engineering (Mechanical Engineering) 2019-01-07T13:30:49Z 2019-01-07T13:30:49Z 2018 Final Year Project (FYP) http://hdl.handle.net/10356/76419 en Nanyang Technological University 64 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering
spellingShingle DRNTU::Engineering::Mechanical engineering
Low, Aik How
Numerical and experimental investigation of acoustic agglomeration
description Acoustic Agglomeration is a pre-treatment method use for coagulating dust particles for effective air filtration. It uses acoustic waves to collide dust particles, forming larger dust particles size and the agglomerated dust particles are filtered using air filters, wet precipitator or other conventional filtration methods. The study examines the parametric values required to achieve high aerosol agglomeration using acoustic waves. This study describes the agglomeration efficiency in aerosol at sound frequency 4 kHz to 10 kHz, ambient pressure between 500 kPa to 1,100 kPa, ambient temperature from 400 K to 1,000 K, Sound Pressure Level (SPL) from 100 dB to 155 dB and mass loading in 8.46 g/m3 to 20.46 g/m3. The investigation was conducted through numerical simulations using sectional methods to determine the optimal values of the operating parameters. Demonstration and experiment were conducted in this study to examine the flow pattern of the aerosol during acoustic agglomeration process. The study found that the maximum agglomeration efficiency through adjustment of the operating parameters. The numerical simulation shows that attaining the highest possible value for ambient temperature, SPL and mass loading could increase the agglomeration efficiency in particles, while keeping ambient pressure at its minimum value shows better agglomeration efficiency. The results show indication that the optimal value for sound frequency is greatly dependent other operating parameters. The demonstration exhibits turbulence flow motion in aerosol during agglomeration process. This study concludes effect of the operating parameters on acoustic agglomeration and the parametric values in achieving the maximum agglomeration efficiency in aerosol.
author2 Ng Bing Feng
author_facet Ng Bing Feng
Low, Aik How
format Final Year Project
author Low, Aik How
author_sort Low, Aik How
title Numerical and experimental investigation of acoustic agglomeration
title_short Numerical and experimental investigation of acoustic agglomeration
title_full Numerical and experimental investigation of acoustic agglomeration
title_fullStr Numerical and experimental investigation of acoustic agglomeration
title_full_unstemmed Numerical and experimental investigation of acoustic agglomeration
title_sort numerical and experimental investigation of acoustic agglomeration
publishDate 2019
url http://hdl.handle.net/10356/76419
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