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Visualizing energy flows through energy streamlines and pathlines

机译:可视化通过能量流线和路径的能量流

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摘要

This paper describes the new technique of total energy flow visualization inside channels and enclosures for natural, mixed, and forced convection heat transfer problems. Specifically, the flow of the total energy is visualized by energy streamlines or pathlines. In 2-D, energy streamlines are obtained by solving a Poisson equation of type ▽~2ΦP = (▽× E) · k where Φ is the energy streamfunction. E is the energy flux density vector and k is the unit vector. One of the objectives of this paper is to find expressions for E as a function of velocity, temperature, electric field, magnetic field, and fluid/flow properties. In 3-D, energy pathlines are used to visualize total energy flow. In concept, "total energy" includes all relevant forms of energy; for example, thermal, potential, kinetic, magnetic, electrical, and chemical. Steady-state convection heat transfer problems are selected from the available literature and energy streamlines are presented for these problems. For unsteady periodic problems, energy streamfunctions are calculated from the time averaged velocity, temperature, and other relevant properties. Finally, an energy pathline visualization technique is proposed for 3-D problems.
机译:本文介绍了在通道和外壳内部解决自然,混合和强制对流传热问题的总能量流可视化的新技术。具体地,总能量的流动通过能量流线或路径可视化。在二维中,通过求解类型为▽〜2ΦP=(▽×E)·k的泊松方程获得能量流线,其中Φ为能量流函数。 E是能量通量密度矢量,k是单位矢量。本文的目的之一是找到E随速度,温度,电场,磁场和流体/流动特性而变化的表达式。在3-D中,能量路径用于可视化总能量流。从概念上讲,“总能量”包括所有相关形式的能量。例如,热,势,动力学,磁,电和化学。从可获得的文献中选择稳态对流传热问题,并针对这些问题提出了能量流线。对于不稳定的周期性问题,根据时间平均速度,温度和其他相关属性来计算能量流函数。最后,提出了一种针对3D问题的能量路径可视化技术。

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