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一种制作等厚图的客观方法及其对火山灰堆积体积估算及其不确定性的影响。

An objective method for the production of isopach maps and implications for the estimation of tephra deposit volumes and their uncertainties.

作者信息

Engwell S L, Aspinall W P, Sparks R S J

机构信息

School of Earth Science, University of Bristol, Queens Road, Bristol, BS8 1RJ UK ; Istituto Nazionale di Geofisica e Vulcanologia, Sezione di Pisa, Via della Faggiola 32, 56126 Pisa, Italy.

School of Earth Science, University of Bristol, Queens Road, Bristol, BS8 1RJ UK.

出版信息

Bull Volcanol. 2015;77(7):61. doi: 10.1007/s00445-015-0942-y. Epub 2015 Jun 17.

Abstract

Characterization of explosive volcanic eruptive processes from interpretation of deposits is a key for assessing volcanic hazard and risk, particularly for infrequent large explosive eruptions and those whose deposits are transient in the geological record. While eruption size-determined by measurement and interpretation of tephra fall deposits-is of particular importance, uncertainties for such measurements and volume estimates are rarely presented. Here, tephra volume estimates are derived from isopach maps produced by modeling raw thickness data as cubic B-spline curves under tension. Isopachs are objectively determined in relation to original data and enable limitations in volume estimates from published maps to be investigated. The eruption volumes derived using spline isopachs differ from selected published estimates by 15-40 %, reflecting uncertainties in the volume estimation process. The formalized analysis enables identification of sources of uncertainty; eruptive volume uncertainties (>30 %) are much greater than thickness measurement uncertainties (~10 %). The number of measurements is a key factor in volume estimate uncertainty, regardless of method utilized for isopach production. Deposits processed using the cubic B-spline method are well described by 60 measurements distributed across each deposit; however, this figure is deposit and distribution dependent, increasing for geometrically complex deposits, such as those exhibiting bilobate dispersion.

摘要

通过对火山沉积物的解释来表征爆炸性火山喷发过程是评估火山灾害和风险的关键,特别是对于罕见的大型爆炸性喷发以及那些在地质记录中沉积物短暂的喷发。虽然喷发规模(通过火山灰降落沉积物的测量和解释来确定)尤为重要,但此类测量和体积估计的不确定性却很少被提及。在此,火山灰体积估计是通过将原始厚度数据建模为受张力的三次B样条曲线生成的等厚线图得出的。等厚线是根据原始数据客观确定的,能够对已发表地图的体积估计中的局限性进行研究。使用样条等厚线得出的喷发体积与选定的已发表估计值相差15% - 40%,这反映了体积估计过程中的不确定性。这种形式化分析能够识别不确定性的来源;喷发体积的不确定性(>30%)远大于厚度测量的不确定性(约10%)。测量次数是体积估计不确定性的一个关键因素,无论用于生成等厚线的方法如何。使用三次B样条方法处理的沉积物,通过在每个沉积物上分布60次测量能够得到很好的描述;然而,这个数字取决于沉积物和分布情况,对于几何形状复杂的沉积物(如呈现双叶状分散的沉积物)会增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c01/4498447/b1688c56c936/445_2015_942_Fig1_HTML.jpg

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