References
- Bottinga, Y. and Weill, D.F., 1970, Densities of liquid silicate systems calculated from partial molar volumes of oxide components. American Journal of Science, 269, 169-182. https://doi.org/10.2475/ajs.269.2.169
- Cox, K.G., Bell, J.D., and Pankhurst, R.J., 1979, The Interpretation of Igneous Rocks. George Allen & Unwin, London, 450p.
- Dunlap, C.E., Gill, J.B., and Palacz, Z.A., 1992, U/Th disequilibria in the large-volume chemically-zoned eruption of Baitoushan, 1010 AD. EOS. Transactions of the American Geophysical Union 73, 611.
- Gudmundsson, A., 2014, Volcano-tectonic modelling of magma chambers, ring-faults, unrest, and eruptions in the Tianchi Volcano, China. Proposed studentship(Project description), Royal Holloway University of London.( https://www.royalholloway.ac.uk/earthsciences/documents/pdf/resops/2014/agchinavolcano.pdf)
- Guo, Z., Liu, J., Sui, S., Liu, Q., He, H., and Ni, Y., 2002, The mass estimation of volatile emission during 1199-1200AD eruption of Baitoushan Volcano and its significance, Science in China Series D: Earth Sciences, 45, 530-539. https://doi.org/10.1360/02yd9055
- Horn, S. and Schmincke, H.U., 2000, Volatile emission during the eruption of Baitoushan volcano (China/North Korea) ca. 969 AD. Bulletin of Volcanology, 61, 537-555. https://doi.org/10.1007/s004450050004
- Houghton, B.F. and Wilson, C.J.N., 1989, A vesicularity index for pyroclastic deposit. Bulletin of Volcanology, 51, 451-462. https://doi.org/10.1007/BF01078811
- Liu, R,X., Wei, H.Q., Tang, J., Song, S.R., Li, X.D., Yang, Q.F., Liu, T.S., and Wang, J.J., 1996, Progress of the study on Tianchi Volcano, Changbaishan, China. Seismological and Geomagnetic Observation and Research, 17, 2-11.
- Liu, R.X., Wei, H.Q., and Li, J.T., 1998, The Latest Eruptions from the Tianchi Volcano, Changbaishan. Science Press, Beijing, p.159 (in Chinese with English Abstract).
- Machida, H. and Arai, F., 1983, Extensive ash falls in and around the Sea of Japan from large late Quaternary eruptions. Journal of Volcanology and Geothermal Research, 18, 151-164. https://doi.org/10.1016/0377-0273(83)90007-0
- Machida, H. and Arai, F., 1992, Atlas of tephra in and around Japan. University of Tokyo Press, Tokyo. 276p. (in Japanese)
- Miyamoto, T., Nakagawa, M., Tanaka, Y., and Yoshida, M., 2004, Eruptive sequence of the 10th century Baitoushan eruption. In: Tanuguchi, H. (Eds.), 10th great eruption of Baitoushan volcano, northeast China, and its historic effect. CNEAS Monograph Series No.16, 15-43, 218p.
- Nanayama, F., Satake, K., Furukawa, R., Shimokawa, K., Atwater, B.F., Shigeno, K., and Yamaki, S., 2003, Unusually large earthquakes inferred from tsunami deposits along the Kuril trench. Nature, 424, 660-663. https://doi.org/10.1038/nature01864
- Oppenheimer, C., 2011, Eruptions that shook the World, Cambridge University Press, Cambridge, U.K., doi:10.1017/CBO9780511978012.
- Shaw, H.R., 1965, Comments on viscosity, crystal settling and convection in granitic magmas. American Journal of Science, 263, 120-153. https://doi.org/10.2475/ajs.263.2.120
- Shaw, H.R., 1972, Viscosities of magmatic silicate liquids: An empirical method of prediction. American Journal of Science, 272, 870-893. https://doi.org/10.2475/ajs.272.9.870
- Shea, T., Houghton, B.F., Gurioli, L., Cashman, K.V., Hammer, J.E., and Hobden, B.J., 2010, Textural studies of vesicles in volcanic rocks: an integrated methodology. Journal of Volcanology and Geothermal Research, 190, 271-289. https://doi.org/10.1016/j.jvolgeores.2009.12.003
- Sun, C., Plunkett, G., Liu, J., Zhao, H., Sigl, M., McConnell, J.R., and Hall, V., 2014, Ash from Changbaishan Millennium eruption recorded in Greenland ice: Implications for determining the eruption's timing and impact. Geophysical Research Letters, 41(2), 694-701. https://doi.org/10.1002/2013GL058642
- Thomas, N., Jaupart, C., and Vergniolle S., 1994, On the vesicularity of pumice. Journal of Geophysical Research, 99(B8), 15633-15644. https://doi.org/10.1029/94JB00650
- Wei, H., Sparks, R.S.J., Liu, R., Fan, Q., Wang, Y., Hong, H., Zhang, H., Chen, H., Jiang, C., Dong, J., Zheng, Y., and Pan, Y., 2003, Three active volcanoes in China and their hazards. Journal of Asian Earth Sciences, 21, 515-526. https://doi.org/10.1016/S1367-9120(02)00081-0
- Wei, H., Liu, G., and Gill, J., 2013, Review of eruptive activity at Tianchi volcano, Changbaishan, northeast China: implications for possible future eruptions. Bulletin of Volcanology, 75, 1-14.
- Xu, J.D., Pan, B., Liu, T.Z., Hajdas, I., Zhao, B., Yu, H.M., Liu, R.X., and Zhao, P., 2013, Climatic impact of the millennium eruption of Changbaishan volcano in China: new insights from high-precision radiocarbon wigglematch dating. Geophysical Research Letters, 40, 54-59. https://doi.org/10.1029/2012GL054246
- Yun, S.H., 2013, Volcanological interpretation of historic eruptions of Mt. Baekdusan volcano. Journal of Korean Earth Science Society, 34, 456-469. https://doi.org/10.5467/JKESS.2013.34.6.456
- Yun, S.H. and Lee, J.H., 2012, Analysis of unrest signs of activity at the Baegdusan volcano. Journal of Petrological Society of Korea, 21, 1-12 (in Korean with English abstract). https://doi.org/10.7854/JPSK.2012.21.1.001
- Yun, S.H., Lee, J.H., Kim, S.K., Chang, C.W., Cho, E., Yang, I.S., Kim, Y.J., Kim, S.H., Lee, K.H., Kim, S.W., and Macedonio, G., 2013, TITAN2D simulations of pyroclastic flows from small scale eruption at Mt. Baekdusan. Journal of Korean Earth Science Society, 34, 615-625 (in Korean with English abstract). https://doi.org/10.5467/JKESS.2013.34.7.615
- Yun, S.H., Lee, J.H., Kim, S.K., Cho, E., Chang, C.W., and Yang, I.S., 2014, Major element characteristics of Millennium eruption pumices at Mt. Baekdu volcano. Proceedings of the Annual Joint Conference, the Petrological Society of Korea and the Mineralogical Society of Korea(May 29-30, 2014, Busan, Korea), 4.
- Zielinski, G.A., Mayewski, P.A., Meeker, L.D., Whitlow, S., Twickler, M.S., Morrison, M., Meese, D.A., Gow, A.J., and Alley, R.B., 1994, Record of volcanism since 7000 B.C. from the GISP2 Greenland ice core and implications for the volcano-climate system. Science, 264, 948-952. https://doi.org/10.1126/science.264.5161.948