Micro-Characteristics of Turbulent Thermal Convection in a Horizontal Fluid Layer Heated Internally and from Below

Y. Kikuchi, Z. Kawara, Takashi Ebisu, I. Michiyoshi
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引用次数: 1

Abstract

Measurements were taken of the fluid temperature fluctuations with turbulent thermal convection in a horizontal layer of water with uniform volumetric energy sources and a constant rate of bottom heating. The temperature fluctuations were fairly small in the central core region, which was nearly isothermal because of strong turbulent mixing. At the edge of the thermal boundary layer, however, violent temperature spikes were dominant, and were accompanied with the intermittent release of cold plumes from the upper boundary and hot plumes from the lower boundary. With an increase in the Rayleigh number, the number of plumes per unit area increased and the frequency of plume formation became higher. The measured surface heat flux agreed well with the calculation by a theoretical model, in which a renewal of the heat-generating boundary layer was assumed to occur periodically at the moment of plume release.
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内部和下方加热水平流体层湍流热对流的微观特征
在具有均匀体积能量源和恒定底部加热速率的水平水层中,测量了湍流热对流的流体温度波动。中心核心区温度波动较小,由于强烈的湍流混合,中心核心区几乎是等温的。而在热边界层边缘,则以剧烈的温度峰值为主,并伴有上边界冷羽和下边界热羽的间歇释放。随着瑞利数的增加,单位面积羽流的数量增加,羽流形成的频率也越来越高。实测的地表热通量与理论模型的计算结果吻合较好,理论模型假设在羽流释放的时刻周期性地发生产热边界层的更新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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