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  • 1
    Publication Date: 2014-05-20
    Description: Author(s): Soumyajit Bose, Anindya Sengupta, and Arnab K. Ray We subject the stationary solutions of inviscid and axially symmetric rotational accretion to a time-dependent radial perturbation, which includes nonlinearity to any arbitrary order. Regardless of the order of nonlinearity, the equation of the perturbation bears a form that is similar to the metric... [Phys. Rev. D 89, 103011] Published Mon May 19, 2014
    Keywords: Astrophysics
    Print ISSN: 0556-2821
    Electronic ISSN: 1089-4918
    Topics: Physics
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  • 2
    Publication Date: 2019-06-27
    Description: Two sets of programs, named Nasum 2 and Nasum 3 are presented in detail. Nasum 2 is a far field formulation and is used without including the plant thermal discharge. Nasum 3 uses horizontal stretching to provide higher resolution at thermal discharge joints; and includes far field influences such as varying tides and ambient currents far from point of discharge.
    Keywords: EARTH RESOURCES AND REMOTE SENSING
    Type: NASA-CR-154624-VOL-3 , KSC-TR-43-2-VOL-3
    Format: application/pdf
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  • 3
    Publication Date: 2019-06-27
    Description: A mathematical model package for thermal pollution analyses and prediction is presented. These models, intended as user's manuals, are three dimensional and time dependent using the primitive equation approach. Although they have sufficient generality for application at sites with diverse topographical features; they also present specific instructions regarding data preparation for program execution and sample problems. The mathematical formulation of these models is presented including assumptions, approximations, governing equations, boundary and initial conditions, numerical method of solution, and same results.
    Keywords: EARTH RESOURCES AND REMOTE SENSING
    Type: NASA-CR-154624-VOL-1 , KSC-TR-43-2-VOL-1
    Format: application/pdf
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  • 4
    Publication Date: 2019-08-14
    Description: Three versions of rigid lid programs are presented: one for near field simulation; the second for far field unstratified situations; and the third for stratified basins, far field simulation. The near field simulates thermal plume areas, and the far field version simulates larger receiving aquatic ecosystems. Since these versions have many common subroutines, a unified testing is provided, with main programs for the three possible conditions listed.
    Keywords: EARTH RESOURCES AND REMOTE SENSING
    Type: NASA-CR-154624-VOL-2 , KSC-TR-43-2-VOL-2
    Format: application/pdf
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  • 5
    Publication Date: 2019-07-13
    Description: Progress and remaining difficulties in the construction of predictive mathematical models of large bodies of water as ecosystems are reviewed. Surface temperature is at present the only variable than can be measured accurately and reliably by remote sensing techniques, but satellite infrared data are of sufficient resolution for macro-scale modeling of oceans and large lakes, and airborne radiometers are useful in meso-scale analysis (of lakes, bays, and thermal plumes). Finite-element and finite-difference techniques applied to the solution of relevant coupled time-dependent nonlinear partial differential equations are compared, and the specific problem of the Biscayne Bay and environs ecosystem is tackled in a finite-differences treatment using the rigid-lid model and a rigid-line grid system.
    Keywords: EARTH RESOURCES AND REMOTE SENSING
    Type: Remote sensing: Energy-related studies; Dec 02, 1974 - Dec 04, 1974; Miami, FL
    Format: text
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  • 6
    Publication Date: 2019-07-19
    Description: Young, hot gas giant planets at large separations from their primaries have been directly imaged around several nearby stars. More such planets will likely be detected by ongoing and new imaging surveys with instruments such as the Gemini Planet Imager (GPI). Efforts continue to model the spectra of these planets in order to constrain their masses, effective temperatures, composition, and cloud structure. One potential tool for analyzing these objects, which has received relatively less attention, is polarization. Linear polarization of gas giant exoplanets can arise from the combined influences of light scattering by atmospheric dust and a rotationally distorted shape. The oblateness of gas giant planet increases of course with rotation rate and for fixed rotation also rises with decreasing gravity. Thus young, lower mass gas giant planets with youthful inflated radii could easily have oblateness greater than that of Saturn s 10%. We find that polarizations of over 1% may easily be produced in the near-infrared in such cases. This magnitude of polarization may be measurable by GPI and other instruments. Thus if detected, polarization of a young Jupiter places constraints on the combination of its gravity, rotation rate, and degree of cloudiness. We will present results of our multiple scattering analysis coupled with a self-consistent dusty atmospheric models to demonstrate the range of polarizations that might be expected from resolved exoplanets and the range of parameter space that such observations may inform.
    Keywords: Astrophysics
    Type: 42nd Annual Meeting of the Division of Planetary Sciences; Oct 03, 2012 - Oct 08, 2012; Pasadena, CA; United States
    Format: application/pdf
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