Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Tyre–Road Heat Transfer Coefficient Equation Proposal

View through CrossRef
Tyres are one of the most important elements of a vehicle because they are the link to the road and have a huge impact on traffic-related pollution. Knowing their behaviour, thus being able to use them at their best and reducing their wear rate, is one of the means of improving their lifetime, which means decreasing traffic environmental impact. In order to understand how tyres behave and to predict the real-time tyre–road coefficient of friction, which is strongly influenced by the temperature, in the last few years several complex thermo-mechanical models of heat transfer inside the tyre have been developed. However, in the current state of the art of the literature and practice, there is still an important parameter regarding such models that is not deeply studied. This parameter is the heat transfer coefficient between the tyre and the road at the contact patch, which usually is considered as a constant. The current research paper allows understanding that such an approximation is not always valid for all of the speeds and tyre loads of city and race cars; instead, it is developed an equation that, for the first time, calculates the real-time, dynamic tyre–road heat transfer coefficient, taking into account the tyre’s travelling speed and the footprint length. The equation results are in good agreement with the empirical values coming from the literature and permit understanding how much such a parameter can vary, depending on the tyre use range. The formulation is simple enough to be easily implemented in existing thermodynamic tyre models without requiring meaningful computational time.
Title: Tyre–Road Heat Transfer Coefficient Equation Proposal
Description:
Tyres are one of the most important elements of a vehicle because they are the link to the road and have a huge impact on traffic-related pollution.
Knowing their behaviour, thus being able to use them at their best and reducing their wear rate, is one of the means of improving their lifetime, which means decreasing traffic environmental impact.
In order to understand how tyres behave and to predict the real-time tyre–road coefficient of friction, which is strongly influenced by the temperature, in the last few years several complex thermo-mechanical models of heat transfer inside the tyre have been developed.
However, in the current state of the art of the literature and practice, there is still an important parameter regarding such models that is not deeply studied.
This parameter is the heat transfer coefficient between the tyre and the road at the contact patch, which usually is considered as a constant.
The current research paper allows understanding that such an approximation is not always valid for all of the speeds and tyre loads of city and race cars; instead, it is developed an equation that, for the first time, calculates the real-time, dynamic tyre–road heat transfer coefficient, taking into account the tyre’s travelling speed and the footprint length.
The equation results are in good agreement with the empirical values coming from the literature and permit understanding how much such a parameter can vary, depending on the tyre use range.
The formulation is simple enough to be easily implemented in existing thermodynamic tyre models without requiring meaningful computational time.

Related Results

The Burden of Road Traffic Injuries: A Global Perspective
The Burden of Road Traffic Injuries: A Global Perspective
Introduction     Road Traffic Injury (RTI) pose a significant health challenge. It represents the eighth leading cause of death globally, prompting the UN to designate 2011-2020 as...
Kinetic modelling of scrap tyre pyrolysis and oxidative desulphurisation of tyre-derived oil
Kinetic modelling of scrap tyre pyrolysis and oxidative desulphurisation of tyre-derived oil
The amount of tyres generated around the world has been on the rise. This has prompted the need to explore ways in which waste tyres can be disposed. One of the ways of recycling w...
Modifikasi Surface Tyre Grapple (Four Finger) pada Unit Tyre Handler untuk Meningkatkan Pengendalian Risiko Maintenance Big Tyre
Modifikasi Surface Tyre Grapple (Four Finger) pada Unit Tyre Handler untuk Meningkatkan Pengendalian Risiko Maintenance Big Tyre
Pengendalian risiko pada aktivitas maintenance big tyre merupakan salah satu faktor krusial dalam menjamin keselamatan kerja pada industri jasa pertambangan yang menggunakan unit h...
Advanced numerical methodology for tyre noise prediction
Advanced numerical methodology for tyre noise prediction
"It is seen that for lower car speeds the noise generated by internal combustion engine dominates that of tyres and is vice versa at higher speeds. This is beneficiary since a road...
Tyre Volume and Pressure Effects on Impact Attenuation during Mountain Bike Riding
Tyre Volume and Pressure Effects on Impact Attenuation during Mountain Bike Riding
Exposure to impacts and vibrations has been shown to be detrimental to cross country mountain bike performance and health. Therefore, any strategy aimed at attenuating such exposur...
Effect of ocean heat flux on Titan's topography and tectonic stresses
Effect of ocean heat flux on Titan's topography and tectonic stresses
INTRODUCTIONThe thermo-mechanical evolution of Titan's ice shell is primarily controlled by the mode of the heat transfer in the ice shell and the amount of heat coming from the oc...
The Flame Characteristics of a Tyre Fire on a Mining Vehicle
The Flame Characteristics of a Tyre Fire on a Mining Vehicle
AbstractWith vehicles frequently found in underground mines and tyres being a major fuel item, the risk of tyre fires will be severe underground. This study presents an in-depth an...
Tyre Parameterization Tests: Dynamic vs. Static
Tyre Parameterization Tests: Dynamic vs. Static
Agricultural vehicles are used more on asphalt roads and needs to be safe in an evasive maneuver or during an emergency brake scenario. The designers of these vehicles require tyre...

Back to Top