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Modeling of Transport Phenomena and Melting Kinetics of Starch in a Co-Rotating Twin-Screw Extruder

机译:同向旋转双螺杆挤出机中淀粉传输现象及熔融动力学模型

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摘要

A mathematical model was developed to simulate fluid flow, heat transfer, and melting kinetics of starch in a co-rotating intermeshing twin-screw extruder (TSE). The partial differential equations governing the transport phenomena of the biomaterial in the extruder were solved by a finite element scheme. For validating the model, the predicted product pressure, bulk temperature at the entrance of the die, and minimum residence time of the biomaterial in the extruder were compared with experimental data. Standard errors of product pressure, bulk temperature at the die entrance, and minimum residence time were about 8.8, 2.8, and 17.3%. Simulations were carried out to investigate profiles of product pressure, bulk temperature, and melt fraction within the extruder during extrusion.
机译:建立了数学模型来模拟同向啮合双螺杆挤出机(TSE)中淀粉的流体流动,传热和熔融动力学。通过有限元方案求解了控制生物材料在挤出机中传输现象的偏微分方程。为了验证模型,将预测的产品压力,模具入口处的整体温度以及生物材料在挤出机中的最小停留时间与实验数据进行了比较。产品压力,模头入口处的本体温度和最小停留时间的标准误差约为8.8%,2.8%和17.3%。进行模拟以研究挤出过程中产品压力,整体温度和挤出机内熔体分数的分布。

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