2025年6月27日 星期五
日本会沉没吗? ———地震地热说的解释
Will Japan Sink? ———The Explanation of the Seismo-Geothermics
摘要

本文采用日本的本土地震目录, 依据作者独创的地震地热说原理与工作方法, 从地震柱构造的立体图像、地震柱构造活动的独立性以及火山活动的继承性等项研究, 得出结论认为: 只要地震不灭、火山不灭、熔岩体还在, 日本的本土就不会沉没。本文在地震柱构造活动的独立性中, 初步厘清了日本及其邻区强震、火山与地震柱构造的大致关系, 有意者循着地震地热说的原理与工作方法, 凭借日本本土成熟的地震资料, 或许能够尽快找到壳内强震与地震柱型火山活动的预测方法。

Abstract

Using the local earthquake catalog of Japan, based on the author’s original Seismo-Geothermics and it’s working methods, and from the study of the stereoscopic image of seismic cone structure, the independence of seismic cone tectonic activity and the inheritance of volcanic activity, this paper draws a conclusion that the Japanese home islands will not sink as long as earthquake still exists, volcano is still active and their lava cones are still there. In this paper, based on the independence of seismic cone tectonic activities, the general relationship between strong earthquakes, volcanoes and seismic cone tectonics in Japan and its adjacent areas is preliminarily clarified. Relying on the mature seismic data in Japan, Interested parties may be able to find out the prediction methods of intracrustal strong earthquakes and seismic cone type volcanism as soon as possible through the principle and working method of Seismo-Geothermics.  

DOI10.48014/kcst.20240401003
文章类型科普性研究论文
收稿日期2024-04-01
接收日期2024-06-15
出版日期2024-06-28
关键词地震地热说, 地震柱构造, 壳下地震, 壳内强震, 火山
KeywordsSeismo-gethermics, seismic cone tectonic, subcrastal earthquake, intracrustal strong earthquake, volcano
作者陈立军
AuthorCHEN Lijun
所在单位湖南省地震局, 长沙 410007
CompanyHunan Earthquake Agency, Changsha 410007, China
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下载量137
参考文献[1] 陈立军. 中国地震震源深度与强震活动状态研究[J]. 地震地质, 2000, 22(4): 360-370.
https://doi.org/10.3969/j.issn.0253-4967.2000.04.004
[2] 陈立军. 地震地热说原理与应用[J]. 内陆地震, 2012, 26(2): 108-122.
https://doi.org/10.3969/j.issn.1001-8956.2012.02.002
[3] 陈立军. 地震柱的概念及其基本特征[J]. 华南地震, 2013, 33(1): 1-14.
https://doi.org/10.13512/j.hndz.2013.01.003
[4] 陈立军, 胡奉湘, 陈晓逢. 全球地震柱的地震层析成像证据[J]. 华南地震, 2013, 33(4): 1-10.
https://doi.org/10.13512/j.hndz.2013.04.001
[5] 陈立军. 青藏高原的地震构造与地震活动[J]. 地震研究, 2013, 36(1): 123-131.
[6] 陈立军. 北半球表面露出的主要构造带及上地幔的地震柱构造简化图———地震地热说编图说明[J]. 自然科学, 2020, 8(3): 142-157.
https://doi.org/10.12677/OJNS.2020.83020
[7] 陈立军. 2012年0419预测卡片(3年期)的试验总结—地震地热说的壳内强震与火山预测方法介绍[J]. 自然科学, 2015, 3(4): 147-164.
https://doi.org/10.12677/OJNS.2015.34019
[8] 陈立军. 2013年巴基斯坦7. 7级地震与兴都库什的地震构造[J]. 内陆地震, 2015, 29(1): 15-27.
https://doi.org/10.16256/j.issn.101-8956.2015.01.002
[9] Chen L J. Study on the Seismogenic Mechanism of the Earthquake Mw6. 9 in 2014 in the Aegean Sea Seismic Cone. International Journal of Geosciences, 2016, 7(5): 669-684.
https://doi.org/10.4236/ijg.2016.75052
[10] 陈立军. 爱琴海地震柱2014年6. 9地震的孕震机理研究(中文版)[EB/OL].
http://blog.sina.com.cn/s/blog_41478bf40102wgwq.html,2016-05-24
[11] 陈立军. 厄瓜多尔地震柱的构造与地震和火山的预测研究[J]. 自然科学, 2016, 4(3): 292-306.
https://doi.org/10.12677/OJNS.2016.43035
[12] 陈立军. 吉林松原地震活动与珲春地震柱构造[J]. 自然科学, 2019, 7(5): 429-438.
https://doi.org/10.12677/OJNS.2019.75052
[13] 陈立军. 伊朗地区的地震活动与地震柱构造[J]. 自然科学, 2019, 7(6): 494-514.
https://doi.org/10.12677/OJNS.2019.76060
[14] Chen L J. Seismic Activity and Seismic Cone Tectonics on the West Coast of the United States[J]. Journal of Geoscience and Environment Protection, 2019, 7(11): 92-112.
https://doi.org/10.4236/gep.2019.711007
[15] Chen L J, Chen X F, Shao L. Method Research of Earthquake Prediction and Volcano Prediction in Italy. International Journal of Geosciences, 2015, 6(9): 963-971.
https://doi.org/10.4236/ijg.2015.69076
[16] 陈立军, 陈晓逢, 邵磊. 意大利地震与火山预测方法的研究(中文版)[EB/OL].
http://www.360doc.com/content/20/0710/14/3572959_923367950.shtml,2015-9-14
[17] 陈立军. 美国西海岸的地震活动与地震柱构造(中文版)[EB/OL].
http://blog.sina.com.cn/s/blog_41478bf40102yv2k.html.2019-11-25
[18] 陈立军. 粤桂琼地区地震活动环境与北流5. 2 级地震———地震地热说的解释[J]. 自然科学, 2020, 8(3): 112-135.
https://doi.org/10.12677/OJNS.2020.83018
[19] 陈立军. 白话2023年2月6日土耳其M7.8地震成因[EB/OL].
http://www.360doc.com/content/23/0228/16/3572959_1069835207.shtml
[20] 陈立军. 西班牙拉帕尔玛岛火山喷发的成因及其预测的可能性———地震地热说的解释[EB/OL].
http://www.360doc.com/showweb/0/0/1026790914.aspx
[21] Chen L J, Chen X F, Wan F F, et al. Comparative Study of Global Seismicity on the Hot Engine Belt and the Cooling Seismic Belt—Improvement on Research Ideas of Earthquake Prediction. International Journal of Geosciences, 2015, 6(7): 741-749.
https://doi.org/10.4236/ijg.2015.67060
[22] 陈立军. 全球热机带和冷机带火山活动的比较研究———兼论对热机带火山预测研究思路的改进[J]. 地球科学前沿, 2015. 10. Vol. 5 No. 5.
https://doi.org/10.12677/AG.2015.55034
[23] 陈立军. 西北太平洋滨海地区的地震活动与地震柱构造[J]. 地球科学前沿, 2016, 6(3): 214-238.
https://doi.org/10.12677/AG.2016.63024
[24] 陈立军. 全球火山活动成因及其分类研究[M/OL]. 汉斯预印本, 2016.
https://doi.org/10.12677/HANSPrePrints.2016.11020
[25] 陈立军. 地震柱型火山喷发特征[EB/OL]. 2016-06-11.
http://www.360doc.com/content/20/0710/08/3572959_923305925.shtml
[26] 陈立军. 地幔柱型火山喷发特征[EB/OL]. 2016-06-02.
http://www.360doc.com/content/20/0710/07/3572959_923303287.shtml
[27] 陈立军. 1963—2022年间全球地震与火山活动状态研究———地震地热说的解释[EB/OL].
http://www.360doc.com/content/22/0411/15/3572959_1026004505.shtml
[28] 陈立军. 壳下地震活动的研究(6)地幔的年代际振荡和年际振荡(MDO)[EB/OL]. 2013.
http://www.360doc.com/content/20/0720/10/3572959_925502948.shtml
[29] Chen L J. Mantle Decadal Oscillation(MDO)[EB/ OL]. 2013.
http://www.360doc.com/content/20/0720/10/3572959_925505951.shtml
[30] Brennen C E. Cavitation and bubble dynamics[M]. Oxford University Press Inc. , New York, 1995.
引用本文陈立军. 日本会沉没吗? ———地震地热说的解释[J]. 中国科技知识, 2024, 1(1): 1-10.
CitationCHEN Lijun. Will Japan sink? ———The explanation of the Seismo-Geothermics[J]. Knowledge of Chinese Science and Technology, 2024, 1(1): 1-10.