In recent years, computational fluid dynamics (CFD) has been applied for the design and analysis of positive displacement machines (both compressors and expanders) with numerous challenges due to the dynamics of the compression (or expansion) process and deforming working chambers. The relative motion and in turn, the variation of the gaps during machine operation implies several obstacles for the implementation of reliable CFD models. The majority of the studies reported in literature focused on scroll, twin screw and reciprocating machines. The limitation of the developed methodologies to be applied directly to positive displacement machines with more complex meshing such as that of single-screw has been highlighted in literature. In thi...
In this paper, a mechanistic steady-state model of a single-screw expander is described with emphasi...
Growing demands to reduce energy consumption are driving researchers towards in-depth analysis of po...
Fluids processed by the machinery involved in ORC cycles undergo several transformations among which...
In recent years, computational fluid dynamics (CFD) has been applied for the design and analysis of ...
In recent years, computational fluid dynamics (CFD) has been applied for the design and analysis of ...
Over the last decade, Computational Fluid Dynamics (CFD) has been increasingly applied for the desig...
Organic Rankine Cycle (ORC) systems rely on the expander performance to generate power output in an ...
Organic Rankine Cycle (ORC) systems rely on the expander performance to generate power output in an ...
Positive displacement machines (e.g. scroll, twin screw, reciprocating, etc.) are proven to be suita...
The use of Computational Fluid Dynamics (CFD) and Computational Continuum Mechanics (CCM) for analys...
The push for having more reliable and efficient positive displacement machines (both compressors and...
The numerical simulation of rotary positive displacement (PD) machines has proven to be a very chall...
Positive displacement machines have been identified as appropriate expanders for small-scale power g...
© 2019 by the authors. Licensee MDPI, Basel, Switzerland. A detailed study of the fluid flow and the...
In recent years, computational fluid dynamics (CFD) has been applied for the design and analysis of ...
In this paper, a mechanistic steady-state model of a single-screw expander is described with emphasi...
Growing demands to reduce energy consumption are driving researchers towards in-depth analysis of po...
Fluids processed by the machinery involved in ORC cycles undergo several transformations among which...
In recent years, computational fluid dynamics (CFD) has been applied for the design and analysis of ...
In recent years, computational fluid dynamics (CFD) has been applied for the design and analysis of ...
Over the last decade, Computational Fluid Dynamics (CFD) has been increasingly applied for the desig...
Organic Rankine Cycle (ORC) systems rely on the expander performance to generate power output in an ...
Organic Rankine Cycle (ORC) systems rely on the expander performance to generate power output in an ...
Positive displacement machines (e.g. scroll, twin screw, reciprocating, etc.) are proven to be suita...
The use of Computational Fluid Dynamics (CFD) and Computational Continuum Mechanics (CCM) for analys...
The push for having more reliable and efficient positive displacement machines (both compressors and...
The numerical simulation of rotary positive displacement (PD) machines has proven to be a very chall...
Positive displacement machines have been identified as appropriate expanders for small-scale power g...
© 2019 by the authors. Licensee MDPI, Basel, Switzerland. A detailed study of the fluid flow and the...
In recent years, computational fluid dynamics (CFD) has been applied for the design and analysis of ...
In this paper, a mechanistic steady-state model of a single-screw expander is described with emphasi...
Growing demands to reduce energy consumption are driving researchers towards in-depth analysis of po...
Fluids processed by the machinery involved in ORC cycles undergo several transformations among which...