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首页> 外文期刊>Applied Engineering in Agriculture >ENERGY USE AND EFFICIENCY OF RICE-DRYING SYSTEMS I. ON-FARM CROSS-FLOW DRYER MEASUREMENTS
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ENERGY USE AND EFFICIENCY OF RICE-DRYING SYSTEMS I. ON-FARM CROSS-FLOW DRYER MEASUREMENTS

机译:稻谷干燥系统的能源利用和效率I.农场内横流干燥机的测量

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Energy use and efficiency of an on-farm, cross-flow dryer were measured by performing five tests during the harvest season of 2011 and three tests during the harvest season of 2012. Thermal energy requirements were expressed in terms of energy per unit mass water removed, by dividing the energy requirements of the burner by the total mass of water removed for each drying run. Energy efficiency was calculated as the ratio of theoretical energy requirements to the measured energy requirements. In 2011, energy requirements to dry rice ranged from 2,840 to 5,310 kJ/kg water removed, with harvest moisture contents ranging from 16.6% to 21.7%, and in 2012 from 3,730 to 5,840 kJ/kg water removed, with harvest moisture contents ranging from 17.4% to 18.2%. Thermal energy efficiencies ranged from 47% to 90% in 2011 and from 44% to 69% in 2012. The difference between drying air temperature inside the dryer and ambient air temperature as well as the amount of water removed, expressed on a per unit mass of rice dry matter; significantly impacted energy use. Equations were developed to predict energy use and efficiency as a function of these two parameters.
机译:通过在2011年收割季节进行五项测试和在2012年收割季节进行三项测试,测量了场内错流干燥机的能源使用和效率。热能需求以每单位质量水去除的能量表示,将燃烧器的能量需求除以每次干燥运行所除去的水总量。能量效率计算为理论能量需求与测得能量需求之比。 2011年,干米的能量需求量为2840至5310 kJ / kg水分,收获水份含量为16.6%至21.7%; 2012年为3730到5840 kJ / kg水去除,收获水份含量为1700 kg / kg。 17.4%至18.2%。热能效率在2011年为47%至90%,在2012年为44%至69%。干燥机内部的干燥空气温度与环境空气温度以及除去的水量之间的差异,以每单位质量表示大米干物质极大地影响了能源使用。开发了方程来预测能源消耗和效率,这是这两个参数的函数。

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