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Online estimation of tapioca starch moisture content in a flash dryer

机译:在线估算木薯淀粉在快速干燥机中的水分含量

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In tapioca starch drying process, moisture content of tapioca starch is an important factor on the product quality. Normally, controlling starch moisture in drying is done by an operator resulting in a high variation of product moisture content. This research studied and developed a mathematical model for online estimation of starch moisture content in a flash dryer. Using a pilot-scale pneumatic conveying dryer with a drying tube of 9.7 m in length and an inner diameter of 0.07 m, a maximum of heater temperature of 350 °C, and an air velocity output of 15-20 m/s. In the dryer's control system, moist starch feed rate, temperature and humidity of air could be measured while moisture content of starch could not be measured. The flash dryer model was implemented and was validated with experimental data. The inlet tapioca starch moisture content was estimated using the outlet air temperature and outlet air humidity. The inlet starch moisture content of estimation was examined in the model. The outlet starch moisture content was estimated. The mean absolute percentage error (MAPE) of the inlet starch moisture content by simulation and experimental data was 1.99%.
机译:在木薯淀粉干燥过程中,木薯淀粉的水分含量是影响产品质量的重要因素。通常,在干燥过程中控制淀粉水分是由操作员完成的,导致产品水分含量的较大变化。这项研究研究并开发了用于在线估算快速干燥机中淀粉水分含量的数学模型。使用中试型气动输送干燥机,其干燥管长度为9.7 m,内径为0.07 m,加热器的最高温度为350°C,风速输出为15-20 m / s。在干燥机的控制系统中,可以测量潮湿的淀粉进料速率,空气的温度和湿度,而不能测量淀粉的水分含量。实施了闪蒸干燥器模型,并通过实验数据进行了验证。使用出口空气温度和出口空气湿度来估计入口木薯淀粉的水分含量。在模型中检查了估计的入口淀粉水分含量。估计出口淀粉的水分含量。通过模拟和实验数据得出的入口淀粉水分的平均绝对百分比误差(MAPE)为1.99%。

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