Investigation of liquid injection on rotary compressor performance

Compressors have been around for a long time, but only recently has there been an increase application of swing vane compressors. They are here to replace the rolling piston compressors with its improved efficiency by reducing energy losses due to mechanical and noises. Some researchers have tried t...

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Main Author: Lai, Zhau Yan
Other Authors: Chan Weng Kong
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2020
Subjects:
Online Access:https://hdl.handle.net/10356/140768
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1407682023-03-04T20:01:39Z Investigation of liquid injection on rotary compressor performance Lai, Zhau Yan Chan Weng Kong School of Mechanical and Aerospace Engineering MWKCHAN@ntu.edu.sg Engineering::Mechanical engineering Compressors have been around for a long time, but only recently has there been an increase application of swing vane compressors. They are here to replace the rolling piston compressors with its improved efficiency by reducing energy losses due to mechanical and noises. Some researchers have tried to further increase the swing vane compressors’ efficiency by recycling liquid refrigerant to cool the compressor. This is known as liquid injection. In this project, the aim is to investigate the effects of liquid injection on swing vane compressors by studying the cooling effects and the characteristics of the liquid injection. In order to do so, a chamber was designed and fabricated to mimic a swing vane compressor. An experimental set up was also built to carry out parametric studies to learn about the effects of liquid injection duration and chamber pressure on the cooling capacity. The results showed obvious cooling effects. As much as a 0.8°C drop is also observed while varying chamber pressure. For chamber temperature of 38°C, temperature drop of 0.3°C, 0.8°C, 1.9°C was seen for injection duration of 3.2ms, 4.6ms and 9.6ms, respectively. Although these temperature drops are at small quantity and they vary from calculated values, evidence point to the fact that Polyolester oil existed in the coolant was not considered during the experiment set up. The spray characteristic is also studied through the means of high-speed videography. Images from high-speed video of the liquid injection show how the liquid behaves under different chamber conditions. Bachelor of Engineering (Mechanical Engineering) 2020-06-02T02:06:16Z 2020-06-02T02:06:16Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/140768 en B066 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Mechanical engineering
spellingShingle Engineering::Mechanical engineering
Lai, Zhau Yan
Investigation of liquid injection on rotary compressor performance
description Compressors have been around for a long time, but only recently has there been an increase application of swing vane compressors. They are here to replace the rolling piston compressors with its improved efficiency by reducing energy losses due to mechanical and noises. Some researchers have tried to further increase the swing vane compressors’ efficiency by recycling liquid refrigerant to cool the compressor. This is known as liquid injection. In this project, the aim is to investigate the effects of liquid injection on swing vane compressors by studying the cooling effects and the characteristics of the liquid injection. In order to do so, a chamber was designed and fabricated to mimic a swing vane compressor. An experimental set up was also built to carry out parametric studies to learn about the effects of liquid injection duration and chamber pressure on the cooling capacity. The results showed obvious cooling effects. As much as a 0.8°C drop is also observed while varying chamber pressure. For chamber temperature of 38°C, temperature drop of 0.3°C, 0.8°C, 1.9°C was seen for injection duration of 3.2ms, 4.6ms and 9.6ms, respectively. Although these temperature drops are at small quantity and they vary from calculated values, evidence point to the fact that Polyolester oil existed in the coolant was not considered during the experiment set up. The spray characteristic is also studied through the means of high-speed videography. Images from high-speed video of the liquid injection show how the liquid behaves under different chamber conditions.
author2 Chan Weng Kong
author_facet Chan Weng Kong
Lai, Zhau Yan
format Final Year Project
author Lai, Zhau Yan
author_sort Lai, Zhau Yan
title Investigation of liquid injection on rotary compressor performance
title_short Investigation of liquid injection on rotary compressor performance
title_full Investigation of liquid injection on rotary compressor performance
title_fullStr Investigation of liquid injection on rotary compressor performance
title_full_unstemmed Investigation of liquid injection on rotary compressor performance
title_sort investigation of liquid injection on rotary compressor performance
publisher Nanyang Technological University
publishDate 2020
url https://hdl.handle.net/10356/140768
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