首页> 外文期刊>Transactions of the ASABE >A THREE-DIMENSIONAL, ASYMMETRIC, AND TRANSIENT MODEL TO PREDICT GRAIN TEMPERATURES IN GRAIN STORAGE BINS
【24h】

A THREE-DIMENSIONAL, ASYMMETRIC, AND TRANSIENT MODEL TO PREDICT GRAIN TEMPERATURES IN GRAIN STORAGE BINS

机译:预测储粮桶中谷物温度的三维,不对称和暂态模型

获取原文
获取原文并翻译 | 示例

摘要

A three-dimensional, transient, combined model (headspace model + soil model + conduction model in bulk grain) was developed to predict grain temperatures in a granary. Different meshes (mesh refinement in the whole domain or at the boundary) including linear and hybrid (linear and quadratic) elements were used to simulate grain temperatures. Prediction accuracies of temperatures produced by the different meshes were compared, and the model was validated using measured temperatures in two flat bottom bins (3.76 m diameter and 5.5 m high filled with wheat up to 3 m) located side by side in the north-south orientation near Winnipeg, Manitoba. Grain temperatures predicted by the model were in close agreement with the measured temperatures throughout a 21-month test in the two bins. By using a hybrid element mesh (mesh refinement at the boundary), the mean, standard error, and maximum of the absolute difference between the measured and predicted temperatures in the south bin were 2.2°C, 0.4°C, and 7.0°C, respectively. The mean, standard error, and maximum of the absolute difference predicted by a linear element model (88 linear elements each layer) in the south bin were 2.1°C, 0.3°C, and 6.3°C, respectively. Including a headspace model improved the prediction accuracy of the conduction model at the top of the grain bulk. Mesh refinement only at the boundary produced a homogeneous distribution of errors in the whole domain; however, mesh refinement in the whole domain gave higher errors at the walls than at the center of the bins. Considering the increased computer time and slightly improved accuracy by mesh refinement at the boundary, a uniform mesh with mesh refinement in the whole domain was preferable for predicting grain temperatures in an entire grain bin
机译:建立了三维瞬态组合模型(顶空模型+土壤模型+散装谷物中的传导模型)来预测粮仓中的谷物温度。包括线性和混合(线性和二次)元素的不同网格(整个域或边界处的网格细化)用于模拟晶粒温度。比较了不同网格生成的温度的预测精度,并使用在南北并排放置的两个平底仓(直径3.76 m,高5.5 m,装满小麦,最高3 m)中的温度对模型进行了验证。曼尼托巴省温尼伯附近的方向。该模型预测的谷物温度与两个箱中整个21个月的测试中测得的温度非常吻合。通过使用混合元素网格(边界处的网格细化),南仓中的测量温度和预测温度之间的平均值,标准误差和绝对差的最大值分别为2.2°C,0.4°C和7.0°C,分别。南仓中的线性元素模型(每层88个线性元素)预测的平均值,标准误差和绝对差的最大值分别为2.1°C,0.3°C和6.3°C。包含顶空模型提高了谷物块顶部传导模型的预测精度。仅在边界处进行网格细化会在整个域中产生均匀的误差分布。但是,在整个域中进行网格细化会导致壁上的错误比容器中心处的错误更高。考虑到计算机时间的增加和边界处网格细化的精度略有提高,因此在整个域中使用网格细化的均匀网格对于预测整个谷物仓中的谷物温度是可取的

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号