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- W53335173 abstract "This chapter describes numerical simulation of irradiance fluctuations for optical waves through atmospheric turbulence. Optical waves traversing turbulence develop dramatic spatial patterns of irradiance fluctuations. The spatial patterns on an observing screen can be understood only partially from knowledge of their wavenumber spectra; a description of the complete pattern requires knowledge of all significant higher moments of irradiance, which is very difficult to obtain either theoretically or experimentally. A measure of the strength of medium fluctuations in this type of wave propagation is β02, which is the in-irradiance variance calculated from weak-fluctuation theory for Kolmogorov turbulence with zero inner scale. Another important parameter of medium fluctuations is the inner scale, which affects irradiance fluctuations sufficiently that it must be measured reasonably well if irradiance fluctuations are to be predicted. Moreover, prior to the application of numerical simulation to this field, a number of theoretical approaches has been attempted to calculate the irradiance variance and also higher moments of irradiance. The excellent agreement between the new experiment and the simulations improves the understanding in two areas: (1) it can systematically discuss the effects of inner scale and spectrum shape on irradiance variance,(2) it can judge other theoretical calculations against simulations that have been done with the same assumptions about spectrum shape, inner scale, and initial conditions." @default.
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- W53335173 date "1996-01-01" @default.
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- W53335173 title "Numerical simulation of irradiance fluctuations for optical waves through atmospheric turbulence" @default.
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- W53335173 doi "https://doi.org/10.1016/b978-012186030-1/50019-9" @default.
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