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液体板破裂时的动态表面张力控制了喷雾滴的尺寸:一个统一的模型来减少漂移和改进准
Zhan Huang1, Zhichong Wang2, Changling Wang3
1College of Science, China Agricultural University, Beijing, China; Institute of Plant Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China; College of Agricultural Unmanned System, China Agricultural University, Beijing, China; Centre for Chemicals Application Technology, China Agricultural University, Beijing, China.
一个新的模型通过测量液体分解时的动态表面张力来准确预测杀虫剂喷雾液滴的大小. 这有助于提高目标,减少环境污染,提高农业的可持续性.
科学领域:
- 农业工程
- 物理化学
- 流体动力学
背景情况:
- 精确控制农药喷液滴的大小对于有效性和环境安全至关重要.
- 当使用喷雾辅助剂时,现有的模型无法准确预测液滴大小.
- 现有模型中的不一致性阻碍了喷雾漂流和流水的有效管理.
研究的目的:
- 开发一个统一的滴子大小预测模型,考虑喷雾辅助剂.
- 作为一个关键预测参数,在液体板块破裂时引入动态表面张力.
- 提高农药喷涂模型的准确性和可靠性.
主要方法:
- 开发了一种统一的液滴大小预测模型,在液体板破裂时间 (TLSB) 中结合了动态表面张力 (DST).
- 利用粒子图像速度计 (PIV) 在各种条件下实验性地确定TLSB.
- 用水和辅助剂溶液在TLSB进行测量,以校准统一模型.
主要成果:
- 统一模型成功调整了水和辅助剂溶液的预测常数,减少了89%的偏差.
- 在滴滴大小 (R2 > 0.99) 方面取得了高预测准确度.
- 减少了13%的液滴大小预测的平方平均误差.
结论:
- 新模型为优化辅助剂选择和农药应用中的操作参数提供了强大的工具.
- 提高预测准确度使得杀虫剂的使用更有针对性,减少非目标沉积.
- 这种进步有助于减少喷雾漂流,尽量减少化学排放,提高农业的环境可持续性.
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