The paper concerns the hydrodynamic turbulent motion in the lubricant layer. Proceeding from the Reynolds equations and introducing the approximations currently used in lubrica-tion problems, owing to the lubricant film thickness, the general motion equations for turbulent lubrication are written. Using the Prandtl mixing length hypothesis, exact and approximate solutions are obtained for the velocity distribution into the lubricant layer. The results are discussed by pointing out the pressure gradient and the Reynolds number influence on the velocity distributions, as well as the differences with respect to the laminar flow. In order to obtain simple formulae, the exact dependence of the rate of flow on the pressure gradient into a dimensi...
In this study authors solve the fundamental set of equations of the hydrodynamic theory of lubricati...
The paper aims to obtain the expression of the velocity of lubricating fluid in the hydrodynamic jou...
Interacting surfaces are frequently found in mechanical systems and components. A lubricant is often...
This paper relates the turbulent motion in the lubricant fluid film with centrifugal effect and the ...
The piezoviscous property of lubricants enhances bearing deformation; this is more marked at high sp...
A new theoretical approach to turbulent lubrication problems including the surface roughness effects...
The purpose of this paper is to propose a method for the analytical description of the non-steady fl...
In this licentiate thesis we study some mathematical problems in hydrodynamic lubrication theory. It...
This thesis contains a superlaminar* lubrication theory which is applicable in both transition and f...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
We consider mathematical modeling of thin film flow between two rough surfaces which are in relative...
The main purpose of this paper is to define a methodology to determine the analytical approximate cl...
The journal bearing is a critical machine element typically used to support rotating motion in high ...
The paper aims to obtain the expression of the velocity of lubricating fluid in the hydrodynamic jou...
In this study authors solve the fundamental set of equations of the hydrodynamic theory of lubricati...
The paper aims to obtain the expression of the velocity of lubricating fluid in the hydrodynamic jou...
Interacting surfaces are frequently found in mechanical systems and components. A lubricant is often...
This paper relates the turbulent motion in the lubricant fluid film with centrifugal effect and the ...
The piezoviscous property of lubricants enhances bearing deformation; this is more marked at high sp...
A new theoretical approach to turbulent lubrication problems including the surface roughness effects...
The purpose of this paper is to propose a method for the analytical description of the non-steady fl...
In this licentiate thesis we study some mathematical problems in hydrodynamic lubrication theory. It...
This thesis contains a superlaminar* lubrication theory which is applicable in both transition and f...
The Reynolds equation for the pressure distribution of the lubricant in a journal bearing with finit...
We consider mathematical modeling of thin film flow between two rough surfaces which are in relative...
The main purpose of this paper is to define a methodology to determine the analytical approximate cl...
The journal bearing is a critical machine element typically used to support rotating motion in high ...
The paper aims to obtain the expression of the velocity of lubricating fluid in the hydrodynamic jou...
In this study authors solve the fundamental set of equations of the hydrodynamic theory of lubricati...
The paper aims to obtain the expression of the velocity of lubricating fluid in the hydrodynamic jou...
Interacting surfaces are frequently found in mechanical systems and components. A lubricant is often...