Investigating the Effect of Nano -Alumina and Nano graphic (Diamond)On performance Turbine
Abstract
In the present study, the effect of nano -alumina and nanograph additives on the performance optimization and improvement of fluid characteristics was investigated by the turbine denial. In this study, nanoparticles were 0.5, 0.5, 0.75, 1, 1 percentage. The variety of nanoparticles was evaluated by the scanning electron microscopy (SEM) and the passing electron microscopy (TEM).,
The results indicate that the thermal properties of the base oil and thus the fluid of the base oil will be improved by the addition of nano particles in the volume. Given the function of the turbine lubrication fluid, increasing the surface tension of the fluid helps to improve its performance in the coating of surfaces against friction.
The phases of the nanoparticles were diagnosed by X -ray beam analysis (XRD). The thermal conductivity. Surface tension and dynamic viscosity of hybrid nanoparticles were measured and compared to the base fluid.
As a result, it enhances fluid performance. Based on the results of the Dynamics of Dynamics of Hybrid Nanocyte Basic Oil/ Nanographic - Nano -Alumina, Adding nanoparticles during the volume fraction of 0 to 0.5 %, more on increased viscosity, non -neyotenic behavior, non -diluted thinning. The main function of the turbine fluid maintains, and the hybrid nanoparticles are leaned for non -uninhilated behavior. Therefore, adding these two types of nanoparticles in volume fraction of 0.5 % to strengthen the fluid function. it helps.
References
1) As a spreading agent of SDBS using Al2O3- experimental evaluation of the effect on the stability and thermophysical properties of water-based Nano fluids
2) and water-based hybrid nanofluid: an experimental evaluation of MWCNT with CeO2 for thermal conductivity (synthesis, sonication, surfactant, stability) S consideration 4
3) Physical analysis of the effects of thermophoresis and variable density on the evaluation of heat transfer along a porous tensile sheet and their application in Nano fluid lubrication
4) Synthesis and characterization of hybrid Nano fluids and their use in different heat exchangers to improve the heat transfer rate: a critical review
5) EG/TiO2-ZnO hybrid Nano fluid thermal conductivity measurement
6) focusing on the thermal conductivity of EG%)/40 (MgO%)-60 (SWCNTs) a new applied experimental study on the thermal behavior of hybrid Nano fluid
7) C Experimental analysis of water-based Nano fluids using boron nitride nanotubes with improved thermal properties u-Al2O3 New experimental correlation for thermal conductivity of ethylene glycol containing hybrid nanoparticles
8) The effect of carbon nanotubes on the physical properties of a binary nanofluid
9) Flow through thrombus catheterized stenotic artery (blood/GO-Au (Hall and ion slip effects) on hybrid nanoparticles
10) By simulating the molecular dynamics of Al2O3/CuO, investigating the atomic and thermal performance of soybean methyl ester biodiesel in the presence of hybrid nanoparticles.
11) Water with nanoparticles of different shapes to increase the characteristics of the first and second laws of flow by considering the two-phase/MWCNT-SiO2 approach to perform hybrid nanofluid
12) Comparative study of copper nanoparticles on radial tensile sheet with water and silicone oil
13) and Tak: a new correlation (20:80 (GO-Al2O3) experimental measurement of thermal conductivity and viscosity of hybrid nanofluids
14) in the flow of ethylene glycol TiO2-Cu new thermal aspects of hybrid nanoparticles
15) Effect on the permeable tensile surface of EG% in the inlet flow of hybrid nano cooling 20% water + 80 Cu-Al2O3
16) Hybrid nanofluid heat transfer passes through a smooth permeable surface with different volume fractions
17) on a porous medium (Al2O3-Cu) for micropolar dust fluid containing hybrid nanoparticles MHD boundary layer analysis
18) Water-based CNT-Cu surfactant-free synthesis, properties and stability of hybrid nanofluid dispersion
19) Modeling mixed convective heat transfer using nanofluid in a double door chamber with internal heat generation
20) International Journal of Heat and Mass Transfer April 2018 6
21) Nonlinear Engineering January 2023 1
22) International Journal of Nonlinear Sciences and Numerical Simulation September 2014 12
23) International communication in heat and mass transfer October 2021 29
24) Recovery, use, and environmental effects: A energy resources, section August 2020 21
25) Applied and computational mechanics October 2019 16
26) Journal of Molecular Liquids July 2018 29
27) Microfluid and nanofluid January 2021 20
28) 3/31/24, 12:46 AM Research project assistant | Editing
29) https://www.editage.com/research-solutions/projects/my-research/284384/literature 3/18
30) Convection viscous flow of non-magnetic mixture immersed in hybrid nanoparticles of titanium oxide and aluminum titanium oxide towards the surface of the cylinder
31) Experimental study on thermal conductivity and viscosity of nanofluid based on ethylene glycol containing diamond-silver hybrid materials
32) Thermal conductivity of hybrid nanofluids: a critical review
33) Testing and studying the predicted model of boiling heat transfer of resuspended nanofluid pool under electric field
34) Water-EG/CuO experimental investigation and development of new correlations for nanofluid thermal conductivity
35) Unsteady flow and heat transfer of quasi-plastic nanofluid in a limited thin layer on a stretching surface with variable thermal conductivity and viscous loss
36) Molybdenum disulfide and silicon oxide hybrid nanofluid near the irregular three-dimensional surface of MoS2, the effects of sliding speed and temperature jump on the hybrid nanofluid
37) Stable graphene/water and development of a new correlation for thermal conductivity-TiO2 preparation of hybrid nanofluids
38) Fluid flow; International Journal of Numerical Methods for Heat and December 2013 20
39) International communication in heat and mass transfer November 2020 21
40) Diamonds and related materials May 2019 11
41) International Journal of Heat and Mass Transfer May 2018 11
42) International communication in heat and mass transfer December 2021 27
43) International communication in heat and mass transfer April 2015 19
44) Powder Technology January 2015 26
45) Alexandria Engineering Magazine November 2020 28
46) Powder Technology March 2021 10
47) 3/31/24, 12:46 AM Research project assistant | Edit age
48) https://www.editage.com/research-solutions/projects/my-research/284384/literature 4/18
49) Experimental evaluation and artificial neural network modeling of thermal conductivity of water-based Nano fluid containing magnetic copper nanoparticles
50) Water with different surfactants-TiO2 synthesis and properties of nanofluids
51) and the heat transfer of quasi-plastic nanofluids on porous media with the modified Marangoni MHD model of boundary layer flow
52) Nanofluid two-phase flow and thermal physics: the new research frontier of nanotechnology and its challenges
53) Blood towards a porous tensile sheet/Cu-CuO, improvement of blood circulation system, micro-drug delivery with a new pattern of hybrid nanofluid flow.
54) Identification of nanoparticles in engine oil to increase the heat transfer rate AL2O3
55) The role of magnetic field on the forced displacement of nanofluid in the branching channel
56) An up-to-date review on the synthesis and thermophysical properties of hybrid nanofluids
57) R141b on the thermophysical properties of TiO2 refrigerant, an experimental study of the effect of nanoparticles
58) Physics A: Statistical mechanics and its applications January 2020 15
59) International communication in heat and mass transfer May 2016 12
60) Mechanics of time-dependent materials August 2015 11
61) Journal of Science and Nanotechnology, July
62) International Journal of Numerical Methods for Heat and Fluid Flow June 2019 25
63) International Journal of Engineering & Technology May 2018 31
64) International Journal of Numerical Methods for Heat and Fluid Flow January 2019 25
65) Pakter Production Magazine April 2018 19
66) 3/31/24, 12:46 AM Research project assistant | Editing
67) https://www.editage.com/research-solutions/projects/my-research/284384/literature 5/18
68) ANN evaluation of thermal conductivity through temperature and solid volume fraction using experimental data and COOH methods of water containing MWCNTs
69) (70%: 30% (EG water-based Zona-SWCNT) experimental study and development of thermal conductivity improvement model and evaluation of cost and sensitivity of hybrid nanofluid
70) A prediction model based on neural network for thermal conductivity of hybrid nanofluids
71) as dispersing agent of SDBS using Al2O3-experimental evaluation of effect on stability and thermophysical properties of water-based nanofluids
72) as a PCM cooling investigation of the opposite microchannel heat exchanger with hybrid nanoparticles and suspension
73) and water-based hybrid nanofluid: an experimental evaluation of MWCNT with CeO2 for thermal conductivity (synthesis, sonication, surfactant, stability) S consideration 4
74) Physical analysis of the effects of thermophoresis and variable density on the evaluation of heat transfer along a porous tensile sheet and their application in nanofluid lubrication
75) Improving heat transfer in hybrid Nano fluid flow on a moving plate with a magnetic dipole, experimental analysis of water-based Nano fluids using boron nitride nanotubes with improved thermal properties
76) Mathematical problems in engineering March 2021 18 Mathematical problems in engineering March 2021 23 Engineering science and technology,
77) International Journal June 2023 30
78) Journal of Thermal Analysis and Calorimetry April 2016 13
79) Powder Technology October 2018 2 Journal of Molecular Liquids April 2018 22
80) Thermal analysis and calorimetry September 2017 21
81) Waves in random and complex media October 2021 2