Preseismic anomalies in soil-gas radon associated with 2016 M 6.6 Meinong earthquake, Southern Taiwan

Taiwan is tectonically situated in a terrain resulting from the oblique collision between the Philippine Sea plate and the continental margin of the Asiatic plate, with a continuous stress causing the density of strong-moderate earthquakes and regional active faults. The continuous time series of so...

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Main Authors: Ching-Chou Fu, Vivek Walia, Tsanyao Frank Yang, Lou-Chuang Lee, Tsung-Kwei Liu, Cheng-Hong Chen, Arvind Kumar, Shih-Jung Lin, Tzu-Hua Lai, Kuo-Liang Wen
Format: Article
Language:English
Published: Chinese Geoscience Union 2017-01-01
Series:Terrestrial, Atmospheric and Oceanic Sciences
Online Access: http://tao.cgu.org.tw/media/k2/attachments/v285p787.pdf
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spelling doaj-e18ef3fa4d4f48f893872b304abadaf92020-11-25T00:16:48ZengChinese Geoscience UnionTerrestrial, Atmospheric and Oceanic Sciences1017-08392311-76802017-01-0128578779810.3319/TAO.2017.03.22.01Preseismic anomalies in soil-gas radon associated with 2016 M 6.6 Meinong earthquake, Southern TaiwanChing-Chou FuVivek WaliaTsanyao Frank YangLou-Chuang LeeTsung-Kwei LiuCheng-Hong ChenArvind KumarShih-Jung LinTzu-Hua LaiKuo-Liang WenTaiwan is tectonically situated in a terrain resulting from the oblique collision between the Philippine Sea plate and the continental margin of the Asiatic plate, with a continuous stress causing the density of strong-moderate earthquakes and regional active faults. The continuous time series of soil radon for earthquake studies have been recorded and some significant variations associated with strong earthquakes have been observed. Earthquake prediction is not still operative but these correlations should be added to the literature about seismo-geochemical transients associated to strong earthquakes. Rain-pore pressure related variations, crustal weakness at the studied faults system is consistent with the simultaneous radon anomalies observed. During the observations, a significant increase of soil radon concentrations was observed at Chunglun-T1 (CL-T1), Hsinhua (HH), Pingtung (PT), and Chihshan (CS) stations approximately two weeks before the Meinong earthquake (ML = 6.6, 6 February 2016) in Southern Taiwan. The precursory changes in a multi-stations array may reflect the preparation stage of a large earthquake. Precursory signals are observed simultaneously and it can apply certain algorithms the approximate location and magnitude of the impending earthquake. http://tao.cgu.org.tw/media/k2/attachments/v285p787.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Ching-Chou Fu
Vivek Walia
Tsanyao Frank Yang
Lou-Chuang Lee
Tsung-Kwei Liu
Cheng-Hong Chen
Arvind Kumar
Shih-Jung Lin
Tzu-Hua Lai
Kuo-Liang Wen
spellingShingle Ching-Chou Fu
Vivek Walia
Tsanyao Frank Yang
Lou-Chuang Lee
Tsung-Kwei Liu
Cheng-Hong Chen
Arvind Kumar
Shih-Jung Lin
Tzu-Hua Lai
Kuo-Liang Wen
Preseismic anomalies in soil-gas radon associated with 2016 M 6.6 Meinong earthquake, Southern Taiwan
Terrestrial, Atmospheric and Oceanic Sciences
author_facet Ching-Chou Fu
Vivek Walia
Tsanyao Frank Yang
Lou-Chuang Lee
Tsung-Kwei Liu
Cheng-Hong Chen
Arvind Kumar
Shih-Jung Lin
Tzu-Hua Lai
Kuo-Liang Wen
author_sort Ching-Chou Fu
title Preseismic anomalies in soil-gas radon associated with 2016 M 6.6 Meinong earthquake, Southern Taiwan
title_short Preseismic anomalies in soil-gas radon associated with 2016 M 6.6 Meinong earthquake, Southern Taiwan
title_full Preseismic anomalies in soil-gas radon associated with 2016 M 6.6 Meinong earthquake, Southern Taiwan
title_fullStr Preseismic anomalies in soil-gas radon associated with 2016 M 6.6 Meinong earthquake, Southern Taiwan
title_full_unstemmed Preseismic anomalies in soil-gas radon associated with 2016 M 6.6 Meinong earthquake, Southern Taiwan
title_sort preseismic anomalies in soil-gas radon associated with 2016 m 6.6 meinong earthquake, southern taiwan
publisher Chinese Geoscience Union
series Terrestrial, Atmospheric and Oceanic Sciences
issn 1017-0839
2311-7680
publishDate 2017-01-01
description Taiwan is tectonically situated in a terrain resulting from the oblique collision between the Philippine Sea plate and the continental margin of the Asiatic plate, with a continuous stress causing the density of strong-moderate earthquakes and regional active faults. The continuous time series of soil radon for earthquake studies have been recorded and some significant variations associated with strong earthquakes have been observed. Earthquake prediction is not still operative but these correlations should be added to the literature about seismo-geochemical transients associated to strong earthquakes. Rain-pore pressure related variations, crustal weakness at the studied faults system is consistent with the simultaneous radon anomalies observed. During the observations, a significant increase of soil radon concentrations was observed at Chunglun-T1 (CL-T1), Hsinhua (HH), Pingtung (PT), and Chihshan (CS) stations approximately two weeks before the Meinong earthquake (ML = 6.6, 6 February 2016) in Southern Taiwan. The precursory changes in a multi-stations array may reflect the preparation stage of a large earthquake. Precursory signals are observed simultaneously and it can apply certain algorithms the approximate location and magnitude of the impending earthquake.
url http://tao.cgu.org.tw/media/k2/attachments/v285p787.pdf
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