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首页> 外文期刊>Journal of Stored Products Research >Transient numerical study of the effect of ambient temperature on 2-D cereal grain storage in cylindrical silos.
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Transient numerical study of the effect of ambient temperature on 2-D cereal grain storage in cylindrical silos.

机译:瞬态数值研究环境温度对圆柱形筒仓中二维谷物储粮的影响。

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A numerical study was performed on the transient heat and mass convection of grain storage in a cylindrical silo. Temperature gradients were induced by the heat of respiration, and thermal gradients were generated by variations of the temperature surrounding the cavity. The model was developed using the equations of heat, mass, and momentum transport for multiphasic media. The equation that represents the environmental temperature along the day-night cycle was obtained via a least squares regression using statistical data. In this study, the effects of different geometric ratios (A) and Rayleigh (Ra) numbers on the isotherms, flow patterns, and concentration isolines were analyzed. The governing equations were solved using discretization of the spatial coordinates by orthogonal collocation with Legendre polynomials and an implicit-trapezoidal formulation for time. The resulting algebraic system was solved by employing the Newton-Raphson with LU factorization method. A computer code called NEWIMPC2 in the FORTRAN 90 language was developed; this code was used to calculate the dynamics and hot regions in the bulk mass grain in the cavity. The thermodynamic properties for sorghum were used in the simulation, although the model is applicable to any cereal grains. For simulation data, typical prevailing conditions in the Bajio, an agricultural region located in Guanajuato State, were used. When the geometric ratio (A) increases, the hot nucleus is displaced toward the top of the cavity. In the case of Rayleigh numbers (Ra), a small increase significantly increases the stiffness of the parabolic equations. The ambient temperature has a significant effect on the formation of hot regions inside the cavity. When Ra increases, an increase can be observed in the temperature of the hot nucleus, with this temperature reaching 31 degrees C near the top wall of the enclosure. There was no evidence of the formation of multicellular flows.Digital Object Identifier http://dx.doi.org/10.1016/j.jspr.2011.01.006
机译:对圆柱筒仓中粮食储存的瞬态热和质量对流进行了数值研究。温度梯度是由呼吸热引起的,而热梯度是由腔体周围温度的变化产生的。使用多相介质的热,质量和动量传输方程式开发了该模型。使用统计数据通过最小二乘回归获得代表昼夜循环中环境温度的方程式。在这项研究中,分析了不同几何比率( A )和瑞利(Ra)数对等温线,流动模式和浓度等值线的影响。通过使用Legendre多项式和时间的隐式梯形公式通过正交搭配将空间坐标离散化来求解控制方程。通过采用牛顿-拉夫森(LU)分解方法求解所得的代数系统。开发了FORTRAN 90语言的称为NEWIMPC2的计算机代码。该代码用于计算型腔中散装质量晶粒的动力学和高温区域。模拟中使用了高粱的热力学性质,尽管该模型适用于任何谷物。对于模拟数据,使用了瓜纳华托州农业区Bajio的典型盛行条件。当几何比( A )增加时,热核​​移向空腔顶部。在瑞利数(Ra)的情况下,很小的增加会大大增加抛物线方程的刚度。环境温度对空腔内部高温区域的形成有重大影响。当Ra增加时,可以观察到热核的温度增加,该温度在外壳的顶壁附近达到31摄氏度。没有证据表明多细胞流动的形成。数字对象标识符http://dx.doi.org/10.1016/j.jspr.2011.01.006

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