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通过碰撞现象了解太阳系的演化

We study phenomena such as collisions and friction that occur in small bodies in the solar system from the perspective of solid earth science and planetary science In particular, we are focusing on the collision process on the surface of celestial bodies made of ice, and are trying to clarify through experiments and models what kind of material changes occur Currently, we are conducting research to decipher how gas giant planets migrated in the past, using clues from the changes in water quality that can occur in the "warm collision lakes" that temporarily form on the surfaces of comets Furthermore, by linking the phenomena of collisions and friction seen in space with knowledge of mechanical materials and tribology, we aim to obtain new perspectives that can be applied to materials research on Earth这项研究有助于了解太阳系的形成和物质的演化。

机电学院|助理教授

笹井遥(笹井遥)

佐井遥

9 让我们为产业和技术创新奠定基础
12 生产和消费的责任

关键字

高速碰撞
摩擦学
冰雪
小型太阳系天体
行星科学

领域/程序

研究类别

地球和行星科学
材料力学、生产工程、设计工程

研究主题

  • 阐明冰冷物体表面高速碰撞现象造成的陨石坑形成过程
  • 快速变形场可视化和固体材料力学性能建模
  • 铝轧制过程中润滑油动态稠化现象可视化

留言

夜空中可见的彗星和小行星是“时间胶囊”,可以帮助我们了解太阳系是如何诞生和变化的。我们正在研究天体之间碰撞引起的物质变化,并试图了解巨行星在早期太阳系中是如何迁移的。我们还旨在将太空中发生的碰撞和摩擦现象与地球上的机械材料和摩擦研究联系起来,应用于新材料的开发。这项研究既重视对太空的纯粹好奇心,也重视连接未来技术的可能性。