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- W2019035401 abstract "Horizontal wind systems in the ionospheric E region are deduced from the dynamo theory by using the same total electric field as in Part I. [1] In Part II the effect of the Coriolis force is taken into consideration and a further study is made about the wind motion in the E region. The wind velocity is obtained by solving the equation of motion of the atmosphere for the rotating earth simultaneously with the dynamo equation.It is shown as in Part I that the diurnal wind motion predominates over the semi-diurnal one in the E region and the semi-diurnal pressure variation is almost in phase with that observed at the ground.The conspicious differences in the results between Part I and Part II are: (1) The diurnal pressure variation in the E region reaches its maximum value at about 7p.m. local solar time in Part II instead of at 9a.m. as in Part I. (2) Amplification of the semi-diurnal pressure variation in the E region is estimated to be 25-30 at low latitudes in Part II instead of 50 as in Part I.The vertical drift velocity in the F2 region is calculated by using our wind-systems.In Appendices the mathematical consideration is given to our treatment." @default.
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- W2019035401 date "1956-01-01" @default.
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- W2019035401 title "Horizontal Wind Systems in the Ionospheric E region Deduced from the Dynamo Theory of the Geomagnetic Sq variation Part II. Rotating Earth" @default.
- W2019035401 doi "https://doi.org/10.5636/jgg.8.24" @default.
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