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TOTAL ABLATION OF THE DEBRIS FROM THE 1908 TUNGUSKA EXPLOSION

机译:1908年通哥斯加爆炸后碎片的全部烧蚀

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摘要

THE Origin of the explosion over Tunguska, central Siberia, in 1908 has long been an enigma. Models(1-3) of the disruption of solid objects entering the atmosphere indicate that the Tunguska explosion occurred at an altitude of 6-10 km, and that the source object was probably a stony asteroid(4). But important questions concerning the nature of the object remain(5,6), particularly as no fragments have been identified in the area of the explosion. Unlike smaller objects (such as meteorites), which decelerate high in the atmosphere and can thus escape complete ablation and/or pulverization(7), a Tunguska-sized object penetrates deeper into the atmosphere, where it will experience a greater aerodynamic load: the object should be disrupted into a vast number of fragments, each no larger than about 10 cm (ref. 2), which are then widely dispersed. Here I calculate the flux of radiation both inside and outside the fireball associated with the fragmenting object, and show that this is sufficient to totally ablate the dispersing fragments. The apparent absence of solid debris is therefore to be expected following the atmospheric fragmentation of a large stony asteroid. [References: 31]
机译:1908年,西伯利亚中部通古斯(Tunguska)爆炸的起源一直是谜。进入大气的固体物体破裂的模型(1-3)表明通古斯爆炸发生在6-10 km的高度,而源物体可能是石质小行星(4)。但是关于物体性质的重要问题仍然存在(5,6),特别是因为在爆炸区域没有发现碎片。与较小的物体(例如陨石)会在大气中高度减速并因此可以逃脱完全的烧蚀和/或粉碎作用不同(7),通古斯大小的物体会更深地渗透到大气中,它将承受更大的空气动力学负荷:应将物体破碎成大量碎片,每个碎片不大于10厘米(参考2),然后将其广泛散布。在这里,我计算了与碎片物体相关联的火球内部和外部的辐射通量,并表明这足以完全消散分散的碎片。因此,在大型石质小行星的大气破碎之后,预计会出现明显的固体碎片。 [参考:31]

著录项

  • 来源
    《Nature 》 |1996年第6602期| p. 697-699| 共3页
  • 作者

    Svetsov VV.;

  • 作者单位

    RUSSIAN ACAD SCI INST DYNAM GEOSPHERES 38 LENINSKII PROSPECT MOSCOW 117979 RUSSIA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论 ;
  • 关键词

    Earths atmosphere; Entry;

    机译:地球大气;进入;

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