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Numerical investigation of transient natural convection in air in a convergent vertical channel symmetrically heated at uniform heat flux

机译:均匀热流对称加热的垂直收敛通道中空气瞬态自然对流的数值研究

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摘要

A numerical investigation of natural convection in a convergent vertical channel is accomplished in order to study the thermal and fluid dynamics behavior of the transient regime in this configuration. The convergent channel has the two principal flat plates at uniform heat flux and the numerical analysis is carried out in a two-dimensional laminar regime. Results in terms of wall temperature profile, as a function of the time for inclination angle, between 0 degrees and 10 degrees, aspect ratios in the range of 10 to 58, and channel Rayleigh numbers from 5.0 to 3.8 x 10(3), are presented. Dimensionless wall temperature sensitivity to the convergence variation is almost 0 degrees for larger angle values. Maximum wall dimensionless temperature, for all convergence angles considered, changes in a very small range at small values of dimensionless time. Overshoots and undershoots in maximum and average dimensionless wall temperature profiles, as well as for dimensionless mass flow rate, are detected. The Nusselt number decreases remarkably between the initial time and 0.2. According to previous results, for steady-state investigations, a channel with a convergence angle equal to 2 degrees is the best configuration in terms of maximum wall temperature and heat transfer coefficient. Stream function and dimensionless air temperature fields allow analysis of fluid dynamics and thermal behavior for different times.
机译:为了研究瞬态状态在这种配置下的热和流体动力学行为,对收敛垂直通道中的自然对流进行了数值研究。会聚通道具有两个均匀热通量的主平板,并且在二维层流状态下进行了数值分析。壁温曲线的结果是倾斜角时间在0度到10度之间的函数,纵横比在10到58之间,通道瑞利数从5.0到3.8 x 10(3)呈现。对于较大的角度值,无量纲的壁温度对会聚变化的灵敏度几乎为0度。对于所有考虑的会聚角,最大的无因次壁温在很小的无因次时间值上会在很小的范围内变化。检测最大和平均无量纲壁温曲线中的过冲和下冲,以及无因次质量流率。 Nusselt数在初始时间和0.2之间显着降低。根据以前的结果,对于稳态研究,就最大壁温和传热系数而言,会聚角等于2度的通道是最佳配置。流函数和无量纲的空气温度场允许分析不同时间的流体动力学和热行为。

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