2021
DOI: 10.1016/j.ijrefrig.2021.04.036
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Heat transfer nanofluids for trigeneration systems: fabrication and experimental investigation of viscosity at below-ambient temperatures

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Cited by 1 publication
(2 citation statements)
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“…In this respect, the Reynolds number, which is a dimensionless flow parameter, is strongly influenced by fluid viscosity and is also the control flow parameter in thermal systems that involve heat transfer, fluid flow, and pressure drop. Therefore, refrigeration as well as trigeneration systems may benefit from the use of the experimental data from [1] , since a more precise operational condition can be attained. The data can, of course, be re-used for further insight, research, and development, by means of: (i) data points direct collection in Tables 1 to 4 , or (ii) by curve fitting equations.…”
Section: Value Of the Datamentioning
confidence: 99%
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“…In this respect, the Reynolds number, which is a dimensionless flow parameter, is strongly influenced by fluid viscosity and is also the control flow parameter in thermal systems that involve heat transfer, fluid flow, and pressure drop. Therefore, refrigeration as well as trigeneration systems may benefit from the use of the experimental data from [1] , since a more precise operational condition can be attained. The data can, of course, be re-used for further insight, research, and development, by means of: (i) data points direct collection in Tables 1 to 4 , or (ii) by curve fitting equations.…”
Section: Value Of the Datamentioning
confidence: 99%
“…Shear stress was also stabilized resulting in the shear rate as a fixed experimental parameter. Data accessibility (1) Name of the repository: Mendeley (2) Data Identification Number: 10.17632/5xz8jrcmkb.1 (3) Direct URL to the data: https://data.mendeley.com/datasets/5xz8jrcmkb/1 Related research article [1] L.U.R. Sica, G.C.M.…”
mentioning
confidence: 99%