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- W4386613786 abstract "Natural convection and heat transfer in triangular cavities are widely used in the thermal engineering of buildings and heat dissipation in electronic devices. In this study, we analyze dimensionally the development of thermal flow for Pr > 1 in a triangular cavity under top-cooling conditions. The formation and development of the boundary layer under a sloping wall are given in terms of instantaneous flow and heat transfer characteristics. The dimensional dependence of the thickness of the thermal boundary layer on time, as well as the timescale of the balance between convection and heat conduction, are also presented. We obtain the volume flow rate relation for the bottom horizontal intrusion flow. The variation of the flow dynamics and heat transfer control mechanisms over time is presented, the thickness and velocity dimensions of the horizontal intrusion flow at different stages are obtained, and the horizontal distance travelled by each mechanism is predicted. For the development of the initial plume, the virial relation between the initial plume thickness and the velocity is presented for different mechanisms. The dynamical and heat transfer control mechanisms of horizontal intrusions and plumes are summarized, the timescales of convective and heat conduction equilibria are given for different dynamical mechanisms, and the flow laws of intrusions and plumes in transient processes are discussed. It provides a reference for natural convection in triangular cavities." @default.
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- W4386613786 date "2024-01-01" @default.
- W4386613786 modified "2023-10-09" @default.
- W4386613786 title "Scaling analysis of intrusion flow and thermal plume for Pr > 1 in the triangular cavity" @default.
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- W4386613786 doi "https://doi.org/10.1016/j.ijthermalsci.2023.108616" @default.
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