Cooling Performance Optimization of Direct Dry Cooling System Based on Partition Adjustment of Axial Flow Fans
Axial flow fans play key roles in the thermo-flow performance of direct dry cooling system under windy conditions, so the energy efficiency of a power generating unit can be improved by optimizing the operation strategies of the axial flow fans. In this work, various measures based on the partition...
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doaj-4acf567618144f409390acb49f28a60b2020-11-25T03:18:16ZengMDPI AGEnergies1996-10732020-06-01133179317910.3390/en13123179Cooling Performance Optimization of Direct Dry Cooling System Based on Partition Adjustment of Axial Flow FansWenhui Huang0Lei Chen1Weijia Wang2Lijun Yang3Xiaoze Du4Key Laboratory of Condition Monitoring and Control for Power Plant Equipment, Ministry of Education, Beijing 102206, ChinaKey Laboratory of Condition Monitoring and Control for Power Plant Equipment, Ministry of Education, Beijing 102206, ChinaKey Laboratory of Condition Monitoring and Control for Power Plant Equipment, Ministry of Education, Beijing 102206, ChinaKey Laboratory of Condition Monitoring and Control for Power Plant Equipment, Ministry of Education, Beijing 102206, ChinaKey Laboratory of Condition Monitoring and Control for Power Plant Equipment, Ministry of Education, Beijing 102206, ChinaAxial flow fans play key roles in the thermo-flow performance of direct dry cooling system under windy conditions, so the energy efficiency of a power generating unit can be improved by optimizing the operation strategies of the axial flow fans. In this work, various measures based on the partition adjustment of axial flow fans with constant power consumption of a 2 × 660 MW power plant are studied by computational fluid dynamics (CFD) methods. The results show that increasing the rotational speed of the windward fans is beneficial to reduce the inlet air temperature and increase the mass flow rates of the fans, which enhance the heat rejections of the air-cooled condensers, especially at high wind speeds. Moreover, the turbine back pressures for the optimal and original cases are achieved by iterative methods, with the largest drop of 2.77 kPa at the wind speed of 12 m/s for 110-case 3 in the wind direction of −90°. It is recommended to adopt 110-case 1 and 110-case 3 at low and high wind speeds, respectively, in the wind directions of 90° and −90°, while 110-case 2 is always the best choice in the 0° wind direction.https://www.mdpi.com/1996-1073/13/12/3179direct dry cooling systemair-cooled condenseraxial flow fanpartition adjustmentcooling performanceturbine back pressure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Wenhui Huang Lei Chen Weijia Wang Lijun Yang Xiaoze Du |
spellingShingle |
Wenhui Huang Lei Chen Weijia Wang Lijun Yang Xiaoze Du Cooling Performance Optimization of Direct Dry Cooling System Based on Partition Adjustment of Axial Flow Fans Energies direct dry cooling system air-cooled condenser axial flow fan partition adjustment cooling performance turbine back pressure |
author_facet |
Wenhui Huang Lei Chen Weijia Wang Lijun Yang Xiaoze Du |
author_sort |
Wenhui Huang |
title |
Cooling Performance Optimization of Direct Dry Cooling System Based on Partition Adjustment of Axial Flow Fans |
title_short |
Cooling Performance Optimization of Direct Dry Cooling System Based on Partition Adjustment of Axial Flow Fans |
title_full |
Cooling Performance Optimization of Direct Dry Cooling System Based on Partition Adjustment of Axial Flow Fans |
title_fullStr |
Cooling Performance Optimization of Direct Dry Cooling System Based on Partition Adjustment of Axial Flow Fans |
title_full_unstemmed |
Cooling Performance Optimization of Direct Dry Cooling System Based on Partition Adjustment of Axial Flow Fans |
title_sort |
cooling performance optimization of direct dry cooling system based on partition adjustment of axial flow fans |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2020-06-01 |
description |
Axial flow fans play key roles in the thermo-flow performance of direct dry cooling system under windy conditions, so the energy efficiency of a power generating unit can be improved by optimizing the operation strategies of the axial flow fans. In this work, various measures based on the partition adjustment of axial flow fans with constant power consumption of a 2 × 660 MW power plant are studied by computational fluid dynamics (CFD) methods. The results show that increasing the rotational speed of the windward fans is beneficial to reduce the inlet air temperature and increase the mass flow rates of the fans, which enhance the heat rejections of the air-cooled condensers, especially at high wind speeds. Moreover, the turbine back pressures for the optimal and original cases are achieved by iterative methods, with the largest drop of 2.77 kPa at the wind speed of 12 m/s for 110-case 3 in the wind direction of −90°. It is recommended to adopt 110-case 1 and 110-case 3 at low and high wind speeds, respectively, in the wind directions of 90° and −90°, while 110-case 2 is always the best choice in the 0° wind direction. |
topic |
direct dry cooling system air-cooled condenser axial flow fan partition adjustment cooling performance turbine back pressure |
url |
https://www.mdpi.com/1996-1073/13/12/3179 |
work_keys_str_mv |
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