Models of the Sl9 Impacts Ii. Radiative-hydrodynamic Modeling of the Plume Splashback
نویسنده
چکیده
We model the plume ‘splashback’ phase of the Shoemaker-Levy 9 (SL9) collisions with Jupiter. We modified the ZEUS-3D hydrodynamic code to include radiative transport in the gray approximation, and present validation tests. After initializing with a model Jovian atmosphere, we couple mass and momentum fluxes of SL9 plume material, as calculated by the ballistic Monte-Carlo plume model of Paper I of this series. A strong and complex shock structure results. The shock temperatures produced by the model agree well with observations, and the structure and evolution of the modeled shocks account for the appearance of high excitation molecular line emission after the peak of the continuum light curve. The splashback region cools by radial expansion as well as by radiation. The morphology of our synthetic continuum light curves agree with observations over a broad wavelength range (0.9–12 μm). Much of the complex structure of these light curves is a natural consequence of the temperature dependence of the Planck function, and the plume velocity distribution. A feature of our ballistic plume is a shell of mass at the highest velocities, which we term the ‘vanguard’. Portions of the vanguard ejected on shallow trajectories produce a lateral shock front, whose initial expansion accounts for the ‘third precursors’ seen in the 2-μm light curves of the larger impacts, and for hot methane emission at early times observed by Dinelli et al. Continued propagation of this lateral shock approximately reproduces the radii, propagation speed, and centroid positions of the large rings observed at 3–4 μm by McGregor et al. The portion of the vanguard ejected closer to the vertical falls back with high zcomponent velocities just after maximum light, producing CO emission and the ‘flare’ seen at 0.9 μm. The model also produces secondary maxima (‘bounces’) whose amplitudes and periods are in agreement with observations. Subject headings: planets and satellites: Jupiter, comets: P/Shoemaker-Levy 9, infrared: solar system, hydrodynamics, impacts, shock waves
منابع مشابه
Temporal Behavior of Stratospheric Ammonia Abundanceand Temperature Following the SL9 Impacts
Infrared emission lines of stratospheric ammonia (NH3) were observed following the collisions of the fragments of Comet Shoemaker–Levy 9 with Jupiter in July of 1994 at the impact sites of fragments G and K. Infrared heterodyne spectra near 10.7 μm were obtained by A. Betz et al. (in Abstracts for Special Sessions on Comet Shoemaker-Levy 9, The 26th Meeting of the Division for Planetary Science...
متن کاملModels of the Sl9 Impacts I. Ballistic Monte-carlo Plume
We model the plumes raised by impacting fragments of comet Shoemaker-Levy 9 to calculate synthetic plume views, atmospheric infall fluxes, and debris patterns. Our plume is a swarm of ballistic particles with one of several mass-velocity distributions (MVD). The swarm is ejected instantaneously and uniformly into a cone from its apex. Upon falling to the ejection altitude, particles slide with ...
متن کاملModeling of Hydrodynamic Factors for Management of Coastal Hazards, Case Study: Khamir Port, Persian Gulf, Iran
In coastal areas, hydrodynamic factors make changes in shorelines geomorphology. This can affect coastal facilities and cause hazards to human societies in the areas. This study has investigated the influence of wave and tide properties on Khamir Port, Hormoz Strait in coast of Persian Gulf. The purpose of the study is to make a mathematical regional and local modeling of water level fluctuatio...
متن کاملConjugate problem of combined radiation and laminar forced convection separated flow
This paper presents a numerical investigation for laminar forced convection flow of a radiating gas in a rectangular duct with a solid element that makes a backward facing step. The fluid is treated as a gray, absorbing, emitting and scattering medium. The governing differential equations consisting the continuity, momentum and energy are solved numerically by the computational fluid dynamics t...
متن کاملIdentification of an Autonomous Underwater Vehicle Dynamic Using Extended Kalman Filter with ARMA Noise Model
In the procedure of designing an underwater vehicle or robot, its maneuverability and controllability must be simulated and tested, before the product is finalized for manufacturing. Since the hydrodynamic forces and moments highly affect the dynamic and maneuverability of the system, they must be estimated with a reasonable accuracy. In this study, hydrodynamic coefficients of an autonomous un...
متن کامل