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首页> 外文期刊>Frontiers in Heat and Mass Transfer >A NEURAL NETWORK BASED METHOD FOR ESTIMATION OF HEAT GENERATION FROM A TEFLON CYLINDER
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A NEURAL NETWORK BASED METHOD FOR ESTIMATION OF HEAT GENERATION FROM A TEFLON CYLINDER

机译:基于神经网络的聚四氟乙烯圆筒发热估算方法

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The paper reports the estimation of volumetric heat generation (qv) from a Teflon cylinder. An aluminum heater, which acts as a heat source, is placed at the center of the Teflon cylinder. The problem under consideration is modeled as a three dimensional steady state conjugate heat transfer from the Teflon cylinder. The model is created and simulations are performed using ANSYS FLUENT to obtain temperature data for the given heat generation qv, W/m3. The numerical model developed using ANSYS acts as a forward model. The inverse model used in this work is Artificial Neural Network (ANN). The estimation of heat generation is carried out by minimizing the error between the simulated temperature and the experimental/surrogated temperature. The efficacy of the ANN method is explored for the estimation of unknown heat generation as both forward model and inverse model. The concept of Asymptotic Computational Fluid Dynamics (ACFD) is introduced as a fast forward model which is obtained by performing CFD simulations. The unknown heat generation is estimated for the surrogated data using ANN.  In order to mimic experiments, noise is added to the surrogated data and estimation of heat generation is also carried out for the perturbedoise added temperature data.
机译:该论文报道了从聚四氟乙烯圆柱体产生的体积热(qv)的估算值。在特富龙圆柱体的中央放置了一个铝制加热器,作为热源。考虑中的问题被建模为来自特氟龙圆柱的三维稳态共轭传热。建立模型并使用ANSYS FLUENT进行仿真,以获得给定热量qv,W / m3的温度数据。使用ANSYS开发的数值模型充当正向模型。在这项工作中使用的逆模型是人工神经网络(ANN)。通过最小化模拟温度和实验/替代温度之间的误差来进行热量的估算。探究了ANN方法的有效性,该方法可用于估计正向模型和反向模型中的未知热量。渐进计算流体动力学(ACFD)的概念作为通过执行CFD模拟获得的快进模型而引入。使用人工神经网络估算替代数据的未知热量。为了模拟实验,将噪声添加到替代数据中,并且还对受扰动/添加了噪声的温度数据进行了热量生成的估算。

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