International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as their signatures in available observational data (gravity, magnetism, rotation, etc.), is a tremendous interdisciplinary challenge. In particular, it requires understanding the fundamental fluid dynamics involving turbulence and rotation at typical scales well beyond our day-to-day experience. To do so, laboratory experiments are fully complementary to numerical simulations, especially in systematically exploring extreme flow regimes for long duration. In this review article, we present some illustrative examples where experimental approaches, complemented by theoretical and numerical studies, have been key for a better understanding of plan...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
International audienceUnderstanding the flows in planetary cores, i.e. the large liquid iron oceans ...
International audienceUnderstanding the flows in planetary cores, i.e. the large liquid iron oceans ...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
The energy for driving turbulent flows in planetary fluid layers comes from a combination of thermoc...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
International audienceUnderstanding the flows in planetary cores, i.e. the large liquid iron oceans ...
International audienceUnderstanding the flows in planetary cores, i.e. the large liquid iron oceans ...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
International audienceUnderstanding fluid flows in planetary cores and subsurface oceans, as well as...
The energy for driving turbulent flows in planetary fluid layers comes from a combination of thermoc...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
This chapter surveys laboratory fluid experiments pertinent to the dynamics of the Earth's core. Lab...
International audienceUnderstanding the flows in planetary cores, i.e. the large liquid iron oceans ...
International audienceUnderstanding the flows in planetary cores, i.e. the large liquid iron oceans ...