17,525 research outputs found

    Mixed convection in a downward flow in a vertical duct with strong transverse magnetic field

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    The downward flow in a vertical duct with one heated and three thermally insulated walls is analyzed numerically using the two-dimensional approximation valid in the asymptotic limit of an imposed strong transverse magnetic field. The work is motivated by the design of liquid metal blankets with poloidal ducts for future nuclear fusion reactors, in which the main component of the magnetic field is perpendicular to the flow direction and very strong heating is applied at the wall facing the reaction chamber. The flow is found to be steady-state or oscillating depending on the strengths of the heating and magnetic field. A parametric study of the instability leading to the oscillations is performed. It is found among other results that the flow is unstable and develops high-amplitude temperature oscillations at the conditions typical for a fusion reactor blanket

    On the law of the iterated logarithm for continued fractions with sequentially restricted partial quotients

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    We establish a law of the iterated logarithm (LIL) for the set of real numbers whose nn-th partial quotient is bigger than αn\alpha_n, where (αn)(\alpha_n) is a sequence such that ∑1/αn\sum 1/\alpha_n is finite. This set is shown to have Hausdorff dimension 1/21/2 in many cases and the measure in LIL is absolutely continuous to the Hausdorff measure. The result is obtained as an application of a strong invariance principle for unbounded observables on the limit set of a sequential iterated function system.Comment: Improved bounds for $(\alpha_n)
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