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Effective radiation field model to scattering - absorption applied in heterogeneous photocatalytic reactors

机译:应用于非均相光催化反应器散射-吸收的有效辐射场模型。

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摘要

A new mathematical model for the calculation of the radiation field in heterogeneous photocatalytic reactors using the new concept of ‘‘effective radiation field model’’ or ERFM is proposed. In this concept, the incident radiation associated to the photons flow is an energy cloud. The generated space-phase and the properties of the cloud are considered isotropic and independent of the propagation angle and photon frequency. The isotropic nature of the ERFM concept provides a simple estimation of the radiation field of a catalyst in suspension (particles and fluid) for polychromatic radiation and the solar spectrum. The ERFM is an alternative model for the calculus of the radiant energy distribution in heterogeneous photocatalytic reactors as an extension of concept to the overall volumetric rate photon absorption –udOVRPA. The local volumetric rate of photon absorption (LVRPA) predicted by the ERFM were compared with the Six Flux Model (SFM) and the rigorous solution using Discrete Ordinate Method (DOM) for the radiative transfer equation (RTE). The calculated LVRPA with the ERFM was found to be closer to the solution of the RTE-DOM. Theseudresults were attributed to the performance of the phase function in both models.
机译:提出了一种新的数学模型,该模型使用“有效辐射场模型”或ERFM的新概念来计算非均相光催化反应器中的辐射场。在这个概念中,与光子流相关的入射辐射是能量云。所产生的空间相位和云的性质被认为是各向同性的,并且与传播角和光子频率无关。 ERFM概念的各向同性性质为多色辐射和太阳光谱提供了悬浮液(颗粒和流体)中催化剂辐射场的简单估算。 ERFM是异质光催化反应器中辐射能分布演算的替代模型,是对总体积率光子吸收–udOVRPA概念的扩展。将ERFM预测的局部光子吸收率(LVRPA)与六通量模型(SFM)进行了比较,并使用离散标准方法(DOM)对辐射传递方程(RTE)进行了严格求解。发现使用ERFM计算得出的LVRPA更接近RTE-DOM的解。这些结果归因于两个模型中相位函数的性能。

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