Thermal performance and optimum concentration of different nanofluids in immersion cooling in data center servers
The application of nanofluids in heat transfer systems is widely recognized for enhancing thermal efficiency compared to conventional fluids, representing a pivotal advancement in energy-saving strategies across a range of commercial applications. However, the selection of nanofluid concentration of...
        Saved in:
      
    
          | Main Authors: | Fahad S. Alkasmoul, Ahmed M. Almogbel, Muhammad W. Shahzad, Amer J. Al-damook | 
|---|---|
| Format: | Article | 
| Language: | English | 
| Published: | Elsevier
    
        2025-03-01 | 
| Series: | Results in Engineering | 
| Subjects: | |
| Online Access: | http://www.sciencedirect.com/science/article/pii/S259012302401942X | 
| Tags: | Add Tag 
      No Tags, Be the first to tag this record!
   | 
Similar Items
- 
                
                    Experimental study of the performance of liquid cooling tank used for single-phase immersion cooling data center        
                          
 by: Xueqiang Li, et al.
 Published: (2024-11-01)
- 
                
                    Experimental investigation on cooling tower performance with Al2O3, ZnO and Ti2O3 based nanofluids        
                          
 by: Habibur Rahman, et al.
 Published: (2024-10-01)
- 
                
                    Hydromagnetic nanofluid flow with Lorentz force, viscous dissipation, Dufour effect, first-order chemical reaction and unsteadiness        
                          
 by: Tuesday Kafunda, et al.
 Published: (2024-12-01)
- 
                
                    Windows Server 2019 administration fundamentals : a beginner's guide to managing and administering windows server environments /        
                          
 by: Dauti, Bekim
 Published: (2019)
- 
                
                    Research on Immersion Cooling Thermal Management of Lithium Ion Battery Combined With Checkerboard Topology Diversion Structure        
                          
 by: Qian LIU, et al.
 Published: (2021-04-01)
 
       