Javascript must be enabled to continue!
Thermal Performance of Nanofluid in Automobile Radiator
View through CrossRef
The use of nanofluids as a coolant in automobile radiators is getting more attention for the radiator’s better performance. Continuous development in automotive industries has increased the demand for higher efficiency car engines. The addition of a radiator fin is one way to improve the efficiency of car engines. However, this study aims to prepare stable nanofluid and analyze the thermal physical and thermal performance of the nanofluid. Stable nanofluids were prepared using the two-step method, and the sedimentation of nanofluid was recorded to evaluate the nanofluids' stability. Single material nanofluid was compared to hybrid nanofluid and the most stable nanofluid based on the nanoparticle's sedimentation was decided. Nanofluid with less sedimentation was concluded as the most stable nanofluid among the mixture. KD2 Pro measured the thermal conductivity of nanofluid after confirmation of the nanofluid stability. A nanoparticle and base fluid chosen were based on the previous study. Al2O3 and TiO2 were dispersed in ethylene glycol and graphene: TiO2 dispersed in the mixture of EG: Distilled water (48:32) have been proposed in this study to improve the radiator performance. The factors affecting the thermal conductivity were studied, and the effect of volume concentration on the thermal conductivity of a nanofluid to transfer heat was also highlighted. An increase in volume concentration would also increase the thermal conductivity of nanofluid and thus increase radiator performance. The equation correlation of volume concentration and weight percentage equation was also proposed and investigated, hence used to prepare the sample of nanofluid.
Akademia Baru Publishing
Title: Thermal Performance of Nanofluid in Automobile Radiator
Description:
The use of nanofluids as a coolant in automobile radiators is getting more attention for the radiator’s better performance.
Continuous development in automotive industries has increased the demand for higher efficiency car engines.
The addition of a radiator fin is one way to improve the efficiency of car engines.
However, this study aims to prepare stable nanofluid and analyze the thermal physical and thermal performance of the nanofluid.
Stable nanofluids were prepared using the two-step method, and the sedimentation of nanofluid was recorded to evaluate the nanofluids' stability.
Single material nanofluid was compared to hybrid nanofluid and the most stable nanofluid based on the nanoparticle's sedimentation was decided.
Nanofluid with less sedimentation was concluded as the most stable nanofluid among the mixture.
KD2 Pro measured the thermal conductivity of nanofluid after confirmation of the nanofluid stability.
A nanoparticle and base fluid chosen were based on the previous study.
Al2O3 and TiO2 were dispersed in ethylene glycol and graphene: TiO2 dispersed in the mixture of EG: Distilled water (48:32) have been proposed in this study to improve the radiator performance.
The factors affecting the thermal conductivity were studied, and the effect of volume concentration on the thermal conductivity of a nanofluid to transfer heat was also highlighted.
An increase in volume concentration would also increase the thermal conductivity of nanofluid and thus increase radiator performance.
The equation correlation of volume concentration and weight percentage equation was also proposed and investigated, hence used to prepare the sample of nanofluid.
Related Results
Performance Evaluation of Photovoltaic Thermal using MgO Nanofluid
Performance Evaluation of Photovoltaic Thermal using MgO Nanofluid
This study investigated the performance and efficiency of a photovoltaic thermal (PV/T) system utilizing a metal-based nanofluid, specifically MgO nanofluid. This research proposes...
Recent Review On Preparation Method, Mixing Ratio, and Heat Transfer Application Using Hybrid Nanofluid
Recent Review On Preparation Method, Mixing Ratio, and Heat Transfer Application Using Hybrid Nanofluid
Hybrid nanofluid is the extension from nanofluid that had been recently discovered, which can enhance heat transfer performance of heat transfer application. However, there were li...
ANALISIS KERUSAKAN RADIATOR SEPEDA MOTOR 150cc
ANALISIS KERUSAKAN RADIATOR SEPEDA MOTOR 150cc
Sepeda motor yang mempunyai kapasitas mesin relativ besar memerlukan pendingin yang efisien agar ketika beroperasi tidak mengalami panas yang berlebihan sehingga dapat merusak mesi...
Study on Enhanced Oil Recovery of Water-Based Nanofluid with Functional Silica Nanoparticles
Study on Enhanced Oil Recovery of Water-Based Nanofluid with Functional Silica Nanoparticles
Abstract
Although application of nanofluids in enhanced oil recovery has been reported, the dispersibility of nanoparticles in water is one of the most difficult pro...
Thermal Conductivity-Based Optimisation of Surfactant on Hybrid Nanofluid
Thermal Conductivity-Based Optimisation of Surfactant on Hybrid Nanofluid
A surfactant is an efficient approach for increasing the stability of nanofluids. However, excessive surfactant degrades the hybrid nanofluid's outstanding thermal conductivity. Ad...
Measurement of corporate social responsibility of automobile enterprises based on AHP-GRA model
Measurement of corporate social responsibility of automobile enterprises based on AHP-GRA model
With the development of economic globalization, great importance has been attached to corporate social responsibility by firms, governments and social organizations. Currently, onl...
Variable Thermal Conductivity Metamaterials Applied to Passive Thermal Control of Satellites
Variable Thermal Conductivity Metamaterials Applied to Passive Thermal Control of Satellites
Abstract
Active materials like the proposed variable thermal conductivity metamaterial enable new thermal designs and low-cost, low-power, passive thermal control. T...
Experimental Investigation of Heat Transfer Performance of Different Nanofluids Using Automobile Radiator
Experimental Investigation of Heat Transfer Performance of Different Nanofluids Using Automobile Radiator
TIn this present study, the forced convection heat transfer performance of different fluids, namely, Al2O3-water, and CuO-water nanofluid has been studied experimentally in an auto...

