Design and experiment of bionic skateboard for rice direct seeding machine based on loach body surface

Authors

  • Zhang Guozhong
  • Ding Kaiquan
  • Li Zhengbo
  • Chen Long
  • Tang Nanrui
  • Liu Wanru
  • Huang Haidong
  • Zhou Yong
  • Wang Hongchang

DOI:

https://doi.org/10.59782/sidr.v2i1.55

Keywords:

loach bionics, non-smooth surface, paddy field soil, Fluent, soil trough test

Abstract

Aiming at the problem of heavy adhesion and large resistance of the rice direct seeding machine slide in the disturbed saturated paddy field environment, the non-smooth surface of the loach body was observed by microscopic observation; the simulation analysis was carried out using Fluent software, revealing the principle of reducing adhesion and drag of the non-smooth surface; the Box-Behnken response surface method was used to design the experiment, and the regression equation of the total resistance of the groove non-smooth surface FBand the groove width w, groove depth hand incoming flow velocity was obtained. vThe optimization analysis results show that when wis 4 mm、v1.25 m/s, 4.5 mm、hthe maximum drag reduction rate reaches 10.052%; based on the optimal parameters, the rice direct seeding machine bionic slide was trial-produced, and the indoor paddy field soil trough test was carried out, and the final drag reduction rate reached 10.23%. This study can provide new ideas for the development of adhesion and drag reduction technology for paddy field soil contact parts.

How to Cite

Guozhong, Z., Kaiquan, D., Zhengbo, L., Long, C., Nanrui, T., Wanru, L., Haidong, H., Yong, Z., & Hongchang, W. (2024). Design and experiment of bionic skateboard for rice direct seeding machine based on loach body surface. Scientific Insights and Discoveries Review, 2, 1–16. https://doi.org/10.59782/sidr.v2i1.55