Thermohydromagnetic Performance of Water–Alumina Nanofluid in a Trapezoidal Vessel

2021 ◽  
pp. 1-12
Author(s):  
Md J. Uddin ◽  
Md Arifuzzaman ◽  
Mohammad M. Rahman
Keyword(s):  
2019 ◽  
Author(s):  
Arash Shadlaghani ◽  
Nastaran Barhemmati-Rajab ◽  
Weihuan Zhao

Author(s):  
Luiz Carlos Aldeia Machado ◽  
Carolina da Silva Bourdot Dutra ◽  
Gabriel Caetano Gomes Ribeiro da Silva

Author(s):  
A. S. Chinchole ◽  
Arnab Dasgupta ◽  
P. P. Kulkarni ◽  
D. K. Chandraker ◽  
A. K. Nayak

Abstract Nanofluids are suspensions of nanosized particles in any base fluid that show significant enhancement of their heat transfer properties at modest nanoparticle concentrations. Due to enhanced thermal properties at low nanoparticle concentration, it is a potential candidate for utilization in nuclear heat transfer applications. In the last decade, there have been few studies which indicate possible advantages of using nanofluids as a coolant in nuclear reactors during normal as well as accidental conditions. In continuation with these studies, the utilization of nanofluids as a viable candidate for emergency core cooling in nuclear reactors is explored in this paper by carrying out experiments in a scaled facility. The experiments carried out mainly focus on quenching behavior of a simulated nuclear fuel rod bundle by using 1% Alumina nanofluid as a coolant in emergency core cooling system (ECCS). In addition, its performance is compared with water. In the experiments, nuclear decay heat (from 1.5% to 2.6% reactor full power) is simulated through electrical heating. The present experiments show that, from heat transfer point of view, alumina nanofluids have a definite advantage over water as coolant for ECCS. Additionally, to assess the suitability of using nanofluids in reactors, their stability was investigated in radiation field. Our tests showed good stability even after very high dose of radiation, indicating the feasibility of their possible use in nuclear reactor heat transfer systems.


2019 ◽  
Vol 12 (20) ◽  
pp. 1-8
Author(s):  
Ezra Vijay Anand ◽  
Amol Andhare ◽  
◽  

2017 ◽  
Vol 885 ◽  
pp. 012020
Author(s):  
Sedong Kim ◽  
A K M Mahmudul Haque ◽  
Junhyo Kim ◽  
Kitae Yu ◽  
Heegeun Song ◽  
...  

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