Results 211 to 220 of about 204,763 (254)
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Journal of Thermal Analysis and Calorimetry
The present study examines the effect of the Hiemenz stagnation point and magnetic field on the ternary nanofluid flow on the permeable stretching/shrinking surface. Ternary nanofluid composites are formed by dissolving silicon dioxide (SiO2), aluminum oxide (Al2O3), and titanium dioxide (TiO2) in base fluid water (H2O), and applying these ...
Sachhin S. M.+4 more
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The present study examines the effect of the Hiemenz stagnation point and magnetic field on the ternary nanofluid flow on the permeable stretching/shrinking surface. Ternary nanofluid composites are formed by dissolving silicon dioxide (SiO2), aluminum oxide (Al2O3), and titanium dioxide (TiO2) in base fluid water (H2O), and applying these ...
Sachhin S. M.+4 more
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Thermo-economic performance and sensitivity analysis of ternary hybrid nanofluids
Journal of Molecular Liquids, 2021Abstract The thermo-economic performance of the Al2O3-TiO2-Cu/water ternary hybrid nanofluid was investigated experimentally. The shear stress, viscosity, and thermal conductivity were measured at 0.005–1 vol% over temperature range of 20–60 °C. The morphology and stability of nanofluids were characterized by SEM and UV–Vis spectrophotometer analyses.
Mingyan Ma+4 more
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The enhanced specific heat capacity of ternary carbonates nanofluids with different nanoparticles [PDF]
Abstract Ternary carbonates with a relative low melting point and a high operating temperature is one of the promising heat transfer fluids for Concentrated Solar Power (CSP). In the present work, ternary carbonates nanofluids of K 2 CO 3 -Li 2 CO 3 -Na 2 CO 3 (4:4:2, mass ratio) with nanoparticles were prepared by using a two step solution method ...
Lixia Sang, Tai Liu
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Development of a new correlation to determine the viscosity of ternary hybrid nanofluid
International Communications in Heat and Mass Transfer, 2020Abstract In this study, the experimental investigation on the effects of temperature and concentrations of nanoparticles on the dynamic viscosity of water-based Al2O3-CuO-TiO2 ternary hybrid nanofluid has been presented. The experiments were performed in the solid vol. fraction range of 0.01–0.1%, and temperature range of 35°C to 50 °C.
Vikash Kumar, Rashmi Rekha Sahoo
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Journal of Thermal Analysis and Calorimetry, 2021
Hybrid nanofluids have been known to provide perceptibly increased heat transfer characteristics over conventional fluid, and so have been experimentally applied to solar collector applications. Recently, attention has grown towards three-particle hybrid nanocomposites, to investigate their increased thermophysical properties for heat transfer ...
Ravinder Kumar+5 more
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Hybrid nanofluids have been known to provide perceptibly increased heat transfer characteristics over conventional fluid, and so have been experimentally applied to solar collector applications. Recently, attention has grown towards three-particle hybrid nanocomposites, to investigate their increased thermophysical properties for heat transfer ...
Ravinder Kumar+5 more
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Energy, 2021
Abstract The rising demand for electricity (energy) to cool the conditioning space leads to the searching for alternate, emission-free and sustainable technologies. The regenerative (dew-point) evaporating coolers are proved to be energy-efficient and eco-friendly devices for a wide range of climatic conditions.
Jahar Sarkar, Sarvesh Kashyap, A. Kumar
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Abstract The rising demand for electricity (energy) to cool the conditioning space leads to the searching for alternate, emission-free and sustainable technologies. The regenerative (dew-point) evaporating coolers are proved to be energy-efficient and eco-friendly devices for a wide range of climatic conditions.
Jahar Sarkar, Sarvesh Kashyap, A. Kumar
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An impact of ternary nanofluid on a micropolar fluid with inclined MHD, slip flow and heat transfer
International Journal of Numerical Methods for Heat & Fluid FlowPurpose The purpose of this study is to analyze the impact of inclined magnetohydrodynamics (MHD) and thermal radiation on the flow of a ternary micropolar nanofluid on a sheet that is expanding and contracting while applying mass transpiration and ...
U. S. Mahabaleshwar+3 more
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International Journal of Numerical Methods for Heat & Fluid Flow
Purpose Multiple encapsulated phase change materials (PCMs) are used in a wide range of applications, including convective drying, electronic cooling, waste heat recovery and air conditioning.
F. Selimefendigil, H. Oztop
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Purpose Multiple encapsulated phase change materials (PCMs) are used in a wide range of applications, including convective drying, electronic cooling, waste heat recovery and air conditioning.
F. Selimefendigil, H. Oztop
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International Journal of Numerical Methods for Heat & Fluid Flow, 2023
Purpose The analysis of fluid flow and thermal transport performance inside the cavity has found numerous applications in various engineering fields, such as nuclear reactors and solar collectors.
K. Thirumalaisamy, A. S. Reddy
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Purpose The analysis of fluid flow and thermal transport performance inside the cavity has found numerous applications in various engineering fields, such as nuclear reactors and solar collectors.
K. Thirumalaisamy, A. S. Reddy
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Journal of solar energy engineering
This paper aims to explore the technological limits of the synergy between the solar concentration technique, facilitated by a parabolic concentrator, and the thermoelectric effect induced by a thermoelectric generator (TEG) within a PV/T ...
K. Mouaici+4 more
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This paper aims to explore the technological limits of the synergy between the solar concentration technique, facilitated by a parabolic concentrator, and the thermoelectric effect induced by a thermoelectric generator (TEG) within a PV/T ...
K. Mouaici+4 more
semanticscholar +1 more source