The physical and numerical ingredients of the Vienna nonlinear model for radially pulsating stars are presented. Stellar pulsations are investigated by solving the full system of radiation hydrodynamics including a time-dependent formulation of turbulent convection. The numerical solution method comprises a state-of-the-art adaptive grid algorithm which provides a powerful tool for resolving and tracking the most important ionization zones. Several already published applications to pulsating stars in the classical instability strip demonstrate that the model is able to reproduce important observational properties like RR Lyrae light curves or double mode pulsations
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
We show that the use of an implicit adaptive-grid technique is an efficient and up-to-date approach ...
Context. We study the convection-pulsation coupling that occurs in cold Cepheids close to ...
The physical and numerical ingredients of the Vienna nonlinear model for radially pulsating stars ar...
We describe a methodology that allows us to follow the pulsational behavior of an RR Lyrae model con...
x, 135 leaves : ill. (some col.) ; 29 cm.Includes abstract.Includes bibliographical references (leav...
We describe a methodology that allows us to follow the pulsational behavior of an RR Lyrae model con...
Abstract. We present a theoretical investigation on pe-riods and amplitudes of RR Lyrae pulsators by...
There are currently unresolved differences between fundamental mode red giant pulsation models and t...
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
Publisher's version/PDFThree-dimensional hydrodynamic simulations of full amplitude RR Lyrae stars h...
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
Context. Linear and also nonlinear pulsation models with the variable Eddington factor approximatio...
We have developed a multidimensional radiation hydrodynamics code to simulate the inter-action of ra...
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
We show that the use of an implicit adaptive-grid technique is an efficient and up-to-date approach ...
Context. We study the convection-pulsation coupling that occurs in cold Cepheids close to ...
The physical and numerical ingredients of the Vienna nonlinear model for radially pulsating stars ar...
We describe a methodology that allows us to follow the pulsational behavior of an RR Lyrae model con...
x, 135 leaves : ill. (some col.) ; 29 cm.Includes abstract.Includes bibliographical references (leav...
We describe a methodology that allows us to follow the pulsational behavior of an RR Lyrae model con...
Abstract. We present a theoretical investigation on pe-riods and amplitudes of RR Lyrae pulsators by...
There are currently unresolved differences between fundamental mode red giant pulsation models and t...
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
Publisher's version/PDFThree-dimensional hydrodynamic simulations of full amplitude RR Lyrae stars h...
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
Context. Linear and also nonlinear pulsation models with the variable Eddington factor approximatio...
We have developed a multidimensional radiation hydrodynamics code to simulate the inter-action of ra...
The problem of interaction of stellar pulsations with turbulence and radiation in stellar convective...
We show that the use of an implicit adaptive-grid technique is an efficient and up-to-date approach ...
Context. We study the convection-pulsation coupling that occurs in cold Cepheids close to ...