Numerical investigation of the performance of cross-flow water cooling towers
2022
0 views
0 downloads
Advisor: Doç. Dr. Ömer Faruk Can
Abstract (EN)
With rising global temperatures, cooling systems used in business and in our daily lives are becoming more common, and the cooling tower is a vital part of this system. As time went on, problems such as dryness and environmental pollution were encountered in the world. For this reason, the effects of parameters such as the use of appropriate materials, water evaporation rate, and power consumption in cooling towers on the performance of the cooling towers are among the main research subjects. Except for the forced cross-flow water cooling tower, there are several varieties of cooling towers and extensive study. The performance of a forced cross-flow water cooling tower is investigated using the ANSYS CFX tool in this thesis. The cooling towers' geometric dimensions and boundary condition values were assumed to be close to the true values throughout the study. While SOLIDWORK software was used to construct the geometry of the 2 m wide, 2 m long, and 3 m high cooling tower, ANSYS CFX software was utilized to do the cooling tower's performance analysis. Boundary conditions are defined in the setup part of the ANSYS CFX application after the network has been created. The impact of air velocity, water droplet diameter, and inflow water temperature on the temperature of water leaving the cooling tower was explored in this study. The appropriate data values for the cooling tower were chosen from the point of view of appropriate design conditions. In this way, the values are close to the real values and the results are close to the results of real cooling towers. In the study, air velocity 2, 4, 6, and 8 m/s, diameters of water droplets 0.01, 0.008, 0.005 and 0.001m, and inlet water temperature 306.15, 309.15, 311.15, and 313.15 K was chosen. The association between cooling range and air velocity for different process water mass flow rate values was also looked into. As a consequence of the research, it was established that the cooling tower's water temperature change was reasonable in all studies, and the forced cross-flow water cooling towers' cooling range was acceptable.
Author
Muhammed Alabbas
How to Cite
Muhammed Alabbas (Master Thesis). Numerical investigation of the performance of cross-flow water cooling towers, 2022, Dicle University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Dicle University
- Determination of peak design flows of highway bridges and culverts with geographical information systems(2022)
- An analysis of the work 'al-Muhtasar fi Tafsir al-Qur'an al-Karim' from the perspective of tafsir methodology(2024)
- The situation of the disabled in islamic law(2010)
- Forensic medical examination of earthquake victims admitted to Dicle universi̇tesi Medical Faculty Hospitals as a result of the 6 february 2023 Kahramanmaraş centered earthquakes(2024)
- Arkeological di̇scoveries in Cyprus by the British in the 19th century(2024)
- The relationship between school principals' servant leadership behaviors and perceived organizational support(2024)
