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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Evaluation of performance and energy consumption of an impinging stream dryer for paddy
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Evaluation of performance and energy consumption of an impinging stream dryer for paddy

机译:水稻冲击流式干燥机的性能和能耗评估

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摘要

Impinging stream dryer has proven to be an excellent alternative means for removing surface moisture of particulate materials. In this study, a coaxial two-impinging stream dryer prototype for paddy, whose surface moisture needs to be removed prior to subsequent processing, was developed and tested. The effects of various operating and geometric parameters, i.e., inlet air temperature, impinging distance, particle flow rate and particle feeding characteristics (single-point feeding vs. double-point feeding), on the overall performance (in terms of the volumetric water evaporation rate and volumetric heat transfer coefficient) and energy consumption of the dryer were then studied. It was found that the developed impinging stream dryer could reduce the moisture content of paddy by 3.4-7.7% (d.b.) within a very short period of time. The maximum value of the volumetric water evaporation rate was found to be about 198 kg_(water)/m~3 h, while the maximum value of the volumetric heat transfer coefficient was about 7013 W/m~3 K. The mean residence time of the particles (paddy) in the system was in the range of 1.81-2.42 s, leading to average drying rate in the range of 1.52-3.83 (% d.b.) s~(-1), which is about 250 and 40 times higher than spouted-bed and fluidized-bed dryers, respectively. The lowest total specific energy consumption of the process was 5.1 MJ/kg_(water) when using double-point particle feeding at an inlet air temperature of 110 ℃, an impinging distance of 5 cm and particle flow rate of 150 kg_(dry solid)/h.
机译:撞击流干燥器已被证明是去除颗粒材料表面水分的极佳替代方法。在这项研究中,开发并测试了用于水稻的同轴两冲击流干燥机原型,该原型的表面水分需要在后续加工之前去除。各种操作和几何参数(即进风温度,撞击距离,颗粒流速和颗粒进料特性(单点进料与双点进料))对整体性能的影响(以体积水蒸发量为单位)然后研究干燥器的热效率和体积传热系数)以及能耗。已经发现,开发的冲击流干燥器可以在很短的时间内使稻谷的水分含量降低3.4-7.7%(d.b。)。发现体积水蒸发速率的最大值约为198 kg_(水)/ m〜3 h,而体积传热系数的最大值约为7013 W / m〜3K。系统中的颗粒(稻谷)在1.81-2.42 s范围内,导致平均干燥速率在1.52-3.83(%db)s〜(-1)范围内,比干燥高约250至40倍喷射床干燥机和流化床干燥机。当在进气温度为110℃,撞击距离为5 cm和颗粒流量为150 kg_(干固体)下使用双点颗粒进料时,该过程的最低总单位能耗为5.1 MJ / kg_(水)。 /H。

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