负压红花采收装置气流模拟与优化

Ge Yun, Zhang Lixin, Han Dandan, Z. Hai-feng, Z. Xiang
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引用次数: 0

摘要

采花装置是红花采花装置的重要服务部件,出风口的数量和采风罩的外部结构是影响红花花瓣采收效果的主要因素。然而,气动红花采收装置的设计是基于经验的,导致设计周期长,从而增加了设计成本。本文结合计算流体动力学软件FLUENT的优势,以红花封闭式盖花内部流场为研究对象,通过对气流分布和运动规律的分析,设计了不同出风口数量的集气罩结构。数值模拟结果表明,梯形锥型集气罩的气流速度较高,无低速区,且梯形锥型红花集气罩的流场分布优于抛物线型结构。在仿真结果的基础上,改进花罩外形设计,设计梯形锥型,改善内部气流状态,从而达到提高采收效率,降低能耗的目的。
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Air Flow Simulation and Optimization for Negative Pressure Safflower Harvesting Device
The safflower collection device is an important service part of safflower harvesting device, the number of the air outlets and external structure of air collecting hood are the main factors influencing the effect of the flower’s petals harvesting and collection. However, the design of pneumatic safflower harvest device is based on experience, resulting in long the design cycle, thus increasing the cost of design. Combined with the advantages of computational fluid dynamics software FLUENT, and the internal flow field of safflower closed style cover flowers as the research object, this paper designed gas collecting hood structures with different number of outlets through the analysis of the airflow distribution and motion law. The result of numerical simulation of gas-collecting hood with trapezoidal cone shows higher air flow speed with no low velocity zone, and the distribution of flow field of safflower collected cover with trapezoid cone type is better than that of parabolic type structure. Based on result of simulation, improved the design of the external shape of flowers cover and designed trapezoid cone type to improve the internal airflow state, thus could achieve the goal of improving efficiency of picking and collecting and reduce energy consumption.
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