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首页> 外文期刊>Turkish Journal of Agriculture & Forestry >Comparison of computational fluid dynamics-based simulations and visualized seed trajectories in different seed tubes
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Comparison of computational fluid dynamics-based simulations and visualized seed trajectories in different seed tubes

机译:基于计算流体动力学的模拟与不同种子管中的可视种子轨迹的比较

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The objective of this study was to compare computational fluid dynamics (CFD)-based simulations and visualized seed trajectories in different seed tubes that can provide seed incorporation into the soil with enhanced seed spacing. The other objective was to determine the relation between the seed trajectories and peripheral speed of the vacuum disk. In order to meet the first objective, 2 different seeds (corn and cotton) and artificial spherical material (?10 mm) were tested under laboratory conditions. The seeds and artificial material were released by free fall into the semitransparent seed tubes (seed tubes A and B) from different release points, and their trajectories were recorded using a video camera. For the second objective, corn seeds were used and released from a vacuum-type metering unit equipped with a semitransparent seed tube (seed tube A) at 3 different peripheral speeds of the vacuum disk, as a function of 3 forward speeds of the seeder. For both objectives, the seed tubes were modeled and release of the seeds into the seed tubes was simulated and analyzed using ANSYS Fluent for CFD. The results obtained from the captured video and simulations were compared. As a result of the comparisons, it was found that the seed release point was an effective parameter on both the seed trajectory and seed spacing, since seed bouncing and skating in the seed tube, based on the release point, may occur. The results also showed that the lab tests and simulations were found to be very similar in terms of the seed trajectories and seed spacings. It is believed that this study, using CFD, will be an example and enable the development and design of new seed tubes in order to obtain better seed distribution uniformity.
机译:本研究的目的是将不同种子管中的计算流体动力学(CFD)进行比较,这些模拟和可视化种子轨迹可以通过增强的种子间隔提供种子掺入到土壤中。另一个目的是确定真空盘的种子轨迹与外围速度之间的关系。为了满足第一个目标,在实验室条件下测试2种不同的种子(玉米和棉)和人造球形材料(α10mm)。通过自由落入来自不同释放点的半透明种子管(种子管A和B)中的种子和人造材料,并且使用摄像机记录其轨迹。对于第二个目的,使用玉米种子并从配备有半透明种子管(种子管A)的真空型计量单元释放,其在真空盘的3种不同的真空速度下,作为播种机的3个前进速度的函数。对于既有目标,将种子管进行建模并释放种子进入种子管中,并使用对CFD流利的吻合液进行分析。比较了捕获的视频和模拟中获得的结果。由于比较,发现种子释放点是种子轨迹和种子间隔上的有效参数,因为可以发生基于释放点的种子撞击和滑冰在种子管中。结果还表明,在种子轨迹和种子间距方面,发现实验室测试和模拟非常相似。据信,使用CFD的这项研究将是一个例子,并使新种子管的开发和设计能够获得更好的种子分布均匀性。

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