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Yardangs in terrestrial ignimbrites: Synergistic remote and field observations on Earth with applications to Mars

机译:地面火成岩中的亚尔当:在地球上的协同远程和野外观测及其在火星上的应用

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摘要

The conditions of formation and the form of yardangs in ignimbrites in the Central Andes of Chile, Bolivia, and Argentina may be the most convincing terrestrial analog to the processes and lithology that produce the extensive yardangs of the Medusae Fossae Formation (MFF) of Mars. Through remote and field study of yardang morphologies in the Central Andes we highlight the role that variable material properties of the host lithology plays in their final form. Here, ignimbrites typically show two main facies: an indurated and jointed facies, and a weakly to poorly indurated, ash- and pumice-rich facies. Both facies are vertically arranged in large (erupted volume > 100's of km~3) ignimbrites resulting in a resistant capping layer, while smaller (10's of km~3) ignimbrites are made predominantly of the weakly indurated facies. The two facies have quite different mechanical properties; the indurated facies behaves as strong rock, fails by block collapse and supports steep/vertical cliffs, while the non-indurated facies is more easily eroded and forms gentle slopes and manifests as more subdued erosional forms. In response to aeolian action, the presence of an upper indurated facies results in large, elongate, high aspect ratio (1:20-1:40) megayardangs that form tall (100 m), thin ridges with steep to vertical walls. These are built on a broad apron of the weakly indurated facies with abundant fallen blocks from the upper indurated facies. These terrestrial megayardangs appear to be analogous to megayardangs with associated block fields seen on Mars. Smaller-volume, weakly indurated ignimbrites are sculpted into smaller, stubbier forms with aspect ratios of 1:5-1 :10 and heights rarely exceeding 10 m. Excavation of a windward basal moat suggests an erosional progression like that seen in incipient yardangs on Mars. Excavation rates of 0.007-0.003 cm/year are calculated for the weakly indurated ignimbrites. While a persistent strong unidirectional wind is the dominant parameter controlling yardang formation and orientation, a role for flow separation and vorticity is also suggested by our observations at both yardang types. While the indurated facies is commonly pervasively jointed, jointing is of secondary importance in controlling yardang orientation. Serrated margins, a common feature on Mars, result from oblique intersections of jointing with yardang flanks or scarps of ignimbrite. The processes of yardang formation we describe from ignimbrites from the Central Andes are not necessarily specific to ignimbrites, but do connote that degree and distribution of induration is a major control in yardang formation and this has implications for the lithology of the MFF on Mars.
机译:智利,玻利维亚和阿根廷中部安第斯山脉的火成岩中形成岩浆岩的条件和岩浆岩的形式可能是最令人信服的陆地模拟,类似于产生火星Medusae Fossae形成(MFF)的大量岩浆岩的过程和岩性。通过对安第斯中部的yardang形态进行远程和现场研究,我们强调了宿主岩性的可变材料特性在其最终形式中所起的作用。在这里,火成岩通常表现出两个主要相:硬结和节理相,以及弱到较差的硬结,灰分和浮石相。两种相垂直排列在较大(喷发量> 100's km〜3)的火成岩中,形成了一个有抵抗力的覆盖层,而较小的(10 km of km〜3)的火成岩则主要由微弱的硬结相组成。这两个相具有完全不同的机械性能。硬岩相表现为坚硬的岩石,由于块体塌陷而破裂,并支撑陡峭/垂直的悬崖,而非硬岩相则更容易被侵蚀并形成平缓的斜坡,并表现为更柔和的侵蚀形式。响应风沙作用,上部硬结相的存在导致大的,细长的,高长宽比(1:20-1:40)的megayardangs,形成高(100 m)的薄脊,壁陡至垂直。这些建立在较弱的硬性相的广阔围裙上,而上硬性相则有大量的塌陷块。这些陆地巨人球似乎与在火星上看到的具有相关块场的巨型人球相似。体积较小,结构较弱的火成岩被雕刻成较小的,形状更短的,长宽比为1:5-1:10且高度很少超过10 m的形式。上风向基沟的发掘表明侵蚀进展与在火星上最初的yardangs中看到的一样。计算出的硬结火成岩的开挖速率为0.007-0.003 cm /年。虽然持续的强单向风是控制yardang形成和定向的主要参数,但我们在两种yardang类型的观测中也暗示了流动分离和涡旋的作用。虽然硬结相通常无处不在,但在控制yardang方向上,接合才是次要的。锯齿状边缘是火星上的常见特征,是由于与yardang侧面或火成岩的斜角接合而形成的斜交。我们从安第斯中部地区的火成岩描述的yardang形成过程不一定特定于这些火成岩,但它确实表明硬结度和分布是yardang形成的主要控制因素,这对MFF在火星上的岩性具有影响。

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  • 来源
    《Planetary and space science 》 |2010年第4期| p.459-471| 共13页
  • 作者单位

    Department of Geosciences, Oregon State University, Wilkinson Hall 104, Corvallis, OR 97331, USA;

    rnAlaska Volcano Observatory, University of Alaska, Fairbanks, AK 99775, USA;

    rnSouthwest Research Institute, 6220 Culebra Rd, San Antonio, TX 78238, USA;

    rnInstituto GEONORTE, Universidad National de Salta, Av. Bolivia 5150, 4400 Salta, Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    yardangs; ignimbrites; andes; mars analog;

    机译:院子火成岩安第斯山脉火星模拟;

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