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首页> 外文期刊>Drying technology: An International Journal >Performance and Energy Consumption of an Impinging Stream Dryer for High-Moisture Particulate Materials
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Performance and Energy Consumption of an Impinging Stream Dryer for High-Moisture Particulate Materials

机译:高湿颗粒材料撞击流干燥机的性能和能耗

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摘要

Impinging stream dryers (ISDs) are a novel alternative to flash dryers for high-moisture particulate materials. However, studies on hydrodynamics and heat/mass transfer as well as drying characteristics of an ISD are still limited or incomplete. The effects of various geometric and operating parameters of an ISD on its performance, in particular, are not conclusive. In addition, ISD was tested mainly with model materials that do not represent the real challenge of higher-moisture materials, which tend to be sticky in nature. In this study, modifications were made to an existing coaxial two-impinging stream dryer of Sathapornprasath et al to make it more suitable for high-moisture particulate materials. This newly modified dryer was then evaluated for its performance in terms of the volumetric water evaporation rate and volumetric heat transfer coefficient. Soy residue (okara), which is a by-product of a soymilk production process, was used as a test material. Particle mean residence time was also evaluated and the results were used to support and explain the performance data of the dryer. Finally, the specific energy consumption of the dryer was assessed at various geometric and operating conditions. The maximum volumetric water evaporation rate was found to be around 520 kg_(water)/m~3h and the maximum volumetric heat transfer coefficient was around 4,500 W/m K for the mean particle residence time of approximately 0.97-1.74 s. In terms of the specific energy consumption the lowest specific energy consumption was found to be around 5.6 MJ/kg_(water).
机译:冲击流干燥器(ISD)是用于高水分颗粒物料的闪蒸干燥器的一种新型替代品。但是,对ISD的水动力和传热/传质以及干燥特性的研究仍然有限或不完整。 ISD的各种几何参数和操作参数对其性能的影响尤其不确定。此外,ISD主要使用模型材料进行了测试,这些模型材料并不代表高水分材料的真正挑战,而高水分材料通常具有粘性。在这项研究中,对Sathapornprasath等人的现有同轴两冲击流干燥器进行了修改,使其更适合于高水分的颗粒物料。然后根据体积水蒸发速率和体积传热系数评估这种新改型的干燥机的性能。作为豆浆生产过程的副产品的大豆残渣(豆渣)用作测试材料。还评估了颗粒平均停留时间,并将结果用于支持和说明干燥机的性能数据。最后,在各种几何和操作条件下评估干燥机的比能耗。发现最大体积水蒸发速率为约520kg_(水)/ m〜3h,并且最大体积热传递系数为约4,500W / m K,平均颗粒停留时间为约0.97-1.74s。就比能耗而言,发现最低的比能耗约为5.6 MJ / kg_(水)。

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