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EVALUATION OF THREE NA/LT IN-BIN DRYING STRATEGIES IN FOUR CORN BELT LOCATIONS

机译:四个玉米带定位中三种NA / LT箱内干燥策略的评估

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摘要

The performance of the variable heat (VH), continuous natural air (CNA), and continuous constant heat (CH) fan and burner control strategies were evaluated using simulation for four locations (Indianapolis, Ind.; Des Moines, Iowa; Lansing, Mich.; and Minneapolis, Minn.), three airflow rates (0.83, 1.1, and 1.7 m{sup}3 min{sup}(-1) t{sup}(-1)), and two harvest dates (25% and 75% of the harvest period). The ideal airflow rate for each location/liarvest date combination was determined based on the criterion of limiting the dry matter loss (DML) to 0.5% or less, and minimizing the total drying cost, An airflow rate of 1.1 m{sup}3 min{sup}(-1) t{sup}(-1) was identified as optimum for the VH and the CH in-bin drying control strategies in all locations. In a comparison based on total drying cost, final moisture content (MC) range, average final MC, and drying ending date, the VH strategy outperformed the other two strategies (CNA and CH) for all location and harvest date combinations. A sensitivity analysis showed that the VH strategy costs were sufficiently stable to make it the least-cost option for the entire range of propane, electricity, and grain prices explored.
机译:使用四个位置(印第安纳州印第安纳波利斯;爱荷华州得梅因;爱荷华州得梅因;密歇根州兰辛)的模拟评估了可变热量(VH),连续自然空气(CNA)和连续恒定热量(CH)风扇和燃烧器控制策略的性能。 ;和明尼苏达州明尼阿波利斯),三种气流速率(0.83、1.1和1.7 m {sup} 3 min {sup}(-1)t {sup}(-1))和两个收获日期(25%和收获期的75%)。根据将干物质损失(DML)限制在0.5%或以下并最大程度降低总干燥成本的标准,确定每个地点/最晚日期组合的理想空气流速。空气流速为1.1 m {sup} 3 min {sup}(-1)t {sup}(-1)被确定为在所有位置的VH和CH箱内干燥控制策略的最佳选择。在基于总干燥成本,最终水分含量(MC)范围,平均最终MC和干燥结束日期的比较中,对于所有定位和收获日期组合,VH策略均优于其他两种策略(CNA和CH)。敏感性分析显示,VH策略成本足够稳定,使其成为探讨的整个丙烷,电力和谷物价格范围内成本最低的选择。

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