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首页> 外文期刊>Brazilian journal of chemical engineering >Discretisation of the non-linear heat transfer equation for food freezing processes using orthogonal collocation on finite elements
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Discretisation of the non-linear heat transfer equation for food freezing processes using orthogonal collocation on finite elements

机译:使用有限元正交搭配的食品冷冻过​​程非线性传热方程离散化

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The freezing process is considered as a propagation problem and mathematically classified as an "initial value problem." The mathematical formulation involves a complex situation of heat transfer with simultaneous changes of phase and abrupt variation in thermal properties. The objective of the present work is to solve the non-linear heat transfer equation for food freezing processes using orthogonal collocation on finite elements. This technique has not yet been applied to freezing processes and represents an alternative numerical approach in this area. The results obtained confirmed the good capability of the numerical method, which allows the simulation of the freezing process in approximately one minute of computer time, qualifying its application in a mathematical optimising procedure. The influence of the latent heat released during the crystallisation phenomena was identified by the significant increase in heat load in the early stages of the freezing process.
机译:冻结过程被视为传播问题,并在数学上被分类为“初始值问题”。数学公式涉及复杂的传热情况,同时发生相变和热性质突然变化。本工作的目的是使用有限元上的正交配置来求解食品冷冻过​​程的非线性传热方程。该技术尚未应用于冻结过程,代表了该领域的另一种数值方法。获得的结果证实了数值方法的良好功能,该方法可以在大约一分钟的计算机时间内模拟冻结过程,从而使它在数学优化过程中的应用得到了验证。结晶过程中释放的潜热的影响可以通过在冷冻过程早期阶段热负荷的显着增加来确定。

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