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Paraxial ray tracing for atmospheric wave propagation
https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2004GL020514
Paraxial ray tracing for atmospheric wave propagation
https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2004GL020514
[1] Ray tracing for sonic wave propagation in a two-dimensional atmosphere structure is performed in the presence of spatially variable wind by using an Hamiltonian approach. Paraxial ray tracing is deduced by first-order perturbations. Using standard atmospheric data or illustrative models, we test numerically the Hamiltonian approach.
(PDF) Paraxial ray tracing for atmospheric wave …
https://www.researchgate.net/publication/231182736_Paraxial_ray_tracing_for_atmospheric_wave_propagation
Abstract. Ray tracing for sonic wave propagation in a two-dimensional atmosphere structure is performed in the presence of spatially variable wind by …
Paraxial ray tracing for atmospheric wave propagation
https://www.academia.edu/52387366/Paraxial_ray_tracing_for_atmospheric_wave_propagation
Paraxial ray tracing for atmospheric wave propagation. Geophysical Research Letters, 2004. Nicolas B Garnier. Download PDF. Download Full PDF Package. This paper. A short summary of this paper. 37 Full PDFs related to this paper. Read …
Paraxial ray tracing for atmospheric wave propagation
https://www.ipgp.fr/en/node/10237
Ray tracing for sonic wave propagation in a two-dimensional atmosphere structure is performed in the presence of spatially variable wind by using an Hamiltonian approach. Paraxial ray tracing is deduced by first-order perturbations. Using standard atmospheric data or illustrative models, we test numerically the Hamiltonian approach.
Paraxial ray tracing for atmospheric wave propagation
https://www.semanticscholar.org/paper/Paraxial-ray-tracing-for-atmospheric-wave-Virieux-Garnier/d9a026ca6a48312f00b06d4d5908a3e5995a2cad
[1] Ray tracing for sonic wave propagation in a two-dimensional atmosphere structure is performed in the presence of spatially variable wind by using an Hamiltonian approach. Paraxial ray tracing is deduced by first-order perturbations. Using standard atmospheric data or illustrative models, we test numerically the Hamiltonian approach. The ray tracing allows accurate …
Paraxial ray tracing for atmospheric wave propagation - DeepDyve
https://www.deepdyve.com/lp/wiley/paraxial-ray-tracing-for-atmospheric-wave-propagation-YcoHi8CYcY
Ray tracing for sonic wave propagation in a two‐dimensional atmosphere structure is performed in the presence of spatially variable wind by using an Hamiltonian approach. Paraxial ray tracing is deduced by first‐order perturbations. Using standard atmospheric data or illustrative models, we test numerically the Hamiltonian approach. The ray tracing allows …
Paraxial ray tracing for atmospheric wave propagation - NASA/ADS
https://ui.adsabs.harvard.edu/abs/2004GeoRL..3120106V/abstract
Ray tracing for sonic wave propagation in a two-dimensional atmosphere structure is performed in the presence of spatially variable wind by using an Hamiltonian approach. Paraxial ray tracing is deduced by first-order perturbations. Using standard atmospheric data or illustrative models, we test numerically the Hamiltonian approach. The ray tracing allows accurate estimation of …
Paraxial ray tracing for atmospheric wave propagation
https://hal.archives-ouvertes.fr/hal-00407349/document
Paraxial ray tracing for atmospheric wave propagation J. Virieux, Nicolas B. Garnier, E. Blanc, J.-X. Dessa ... Paraxial ray tracing for atmospheric wave propagation J. Virieux,1 N. Garnier,2,3 E. Blanc,3 and J.-X. Dessa4 Received 13 May 2004; revised 18 August 2004; accepted 27 September 2004; published 21 October 2004. ...
Section 9 Paraxial Raytracing - University of Arizona
https://wp.optics.arizona.edu/jgreivenkamp/wp-content/uploads/sites/11/2019/01/201-202-09-Paraxial-Raytracing.pdf
The Gaussian properties of an optical system can be determined using a paraxial raytrace with particular rays. Rear cardinal points: Trace a ray parallel to the axis in object space. This ray must go through the rear focal point of the system. The kth surface is the final surface in the system. System: k 11 y k y 1
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