Disasters and Society: Comparing the Shang and Mycenaean Response to Natural Phenomena through Text and Archaeology
Abstract
:1. Introduction
Greece | China | ||
---|---|---|---|
ca. 3200 BC | Early Bronze Age (EBA) | ca. 2550–ca. 1950 BC | Longshan Culture |
ca. 2000/1900–ca. 1800/1700 BC | Middle Cycladic/Middle Helladic | ca. 2300–1500 BC | Qijia Culture |
ca. 1800/1700–ca. 1500 BC | Late Cycladic 1/Late Helladic 1 | ca. 1750–ca. 1200 BC | Sanxingdui Culture |
ca. 1500–ca. 1400 BC | Late Cycladic 2/Late Helladic 2 | ca. 1800–ca. 1450 BC | Yueshi Culture |
ca. 1400–ca. 1250/1200 BC | Late Helladic 3A-B | ca. 1850–ca. 1550 BC | Erlitou Culture |
ca. 1250/1200–ca. 1050 BC | Late Helladic 3C | ca. 1600–ca. 1400 BC | Erligang Culture/Early Shang Culture |
ca. 1400–ca. 1250 BC | Huanbei Culture/Middle Shang Culture | ||
ca. 1250–1046 BC | Yinxu Culture/Late Shang Culture | ||
1046–771 BC | Wesstern Zhou Culture |
2. Disasters through the Environment and Archaeology
2.1. Environmental Archaeology and Natural Disasters
2.2. Physical and Textual Evidence of Destructions
3. Early Cultural Engagement with Disasters
3.1. Mythical Destructions and Disaster Management
3.2. Prehistoric Disaster Management: Between Technology and Mythology
4. Disaster as Factor for Human Evolution
4.1. Natural Disaster to Collapse?
4.2. Archaeoseismicity: A Catalyst for Collapse and Resilience
4.3. Disaster Archaeology: The Case of China
5. Early Understanding of Disaster
5.1. Protoscience and Religion
“In the second year of the reign of King Yu l (of Chou), the western province’s three rivers shaken and their beds raised up, Poyang Fu said: ‘The dynasty of the Chou is going to perish. It is necessary that the chhi of heaven and earth should not lose their order; if they overstep their order (it is because there When the Yang is hidden and cannot come forth, or when the Yin bars its way and it cannot rise up, then there is what we call an earthquake. Now we see that the three rivers have dried up by this shaking; it is because the Yang has lost its place and the Yin has overburdened it. When the Yang has lost its rank and finds itself (subordinate to) the Yin, the springs become closed, and when this has happened the kingdom must be lost. When water and earth are propitious the people make use of them, when they are not, the people are deprived of what they need. Formerly when the rivers I and Lo dried up, the dynasty of the Hsia perished. When the Ho dried up, the dynasty of the Shang perished’. Now the virtue of the Chou is in the same state as that of these dynasties was in their decline. The Chou will be ruined before ten years are out; so it is written in the cycle of numbers.”(Sima Qian, Shiji, Annals, 36 (Translation, [113] pp. 624–625)
5.2. Epigraphic Evidence
“That it was Poseidon’s wrath that was wreaked upon these cities they allege that clear proofs are at hand: first, it is distinctly conceived that authority over earthquakes and floods belongs to this god, and also it is the ancient belief that the Peloponnese was an habitation of Poseidon; and this country is regarded as sacred in a way to Poseidon, and, speaking generally, all the cities in the Peloponnese pay honour to this god more than to any other of the immortals.”(15.49.4: Diodorus Siculus, tr. 1989 [123])
- 10,152: Crack-making on xinyou, performs yu ritual for flood damage.
- 14,407: Crack-making on xinyou, divining: performs yu ritual for flood damage, and sheep are offered for rituals.
- 72: yu ritual…for Shangjia against disasters [131].
5.3. Texts and Ideas from Later Periods
6. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Ahn, S.H. Meteoric activities during the 11th century. Mon. Not. R. Astron. Soc. 2005, 358, 1105–1115. [Google Scholar] [CrossRef] [Green Version]
- Ernstson, K.; Sideris, C.; Liritzis, I.; Neumair, A. The chiemgau meteorite impact signature of the stöttham archaeological site (southeast germany). Mediterr. Archaeol. Archaeom. 2012, 12, 249–259. [Google Scholar]
- Liritzis, I. Pandemics—From ancient times to COVID-19. Some thoughts. Mediterr. Archaeol. Archaeom. 2020, 13, i–ix. [Google Scholar]
- Walsh, K. The Archaeology of Mediterranean Landscapes: Human-Environment Interaction from the Neolithic to the Roman Period; Cambridge University Press: Cambridge, UK, 2014. [Google Scholar]
- Liritzis, I.; Westra, A.; Changhong, M. Disaster GeoArchaeology and Natural Cataclysms in World Cultural Evolution: An Overview. J. Coast. Res. 2019, 35, 1307. [Google Scholar] [CrossRef]
- Bintliff, J. The Complete Archaeology of Greece: From Hunter-Gatherers to the 20th Century A.D.; Wiley-Blackwell: Oxford, UK; Chichester, UK, 2012. [Google Scholar]
- Underhill, A.P. A Companion to Chinese Archaeology; John Wiley & Sons: Chichester, UK, 2013. [Google Scholar]
- Liu, L.; Chen, X. State Formation in Early China; Duckworth: London, UK, 2003. [Google Scholar]
- Castleden, R. The Mycenaeans; Routledge: London, UK, 2005. [Google Scholar]
- Middleton, G. Introducing Collapse. In Understanding Collapse: Ancient History and Modern Myths; Cambridge University Press: Cambridge, UK, 2017; pp. 1–50. [Google Scholar]
- Wu, Q.; Zhao, Z.; Liu, L.; Granger, D.E.; Wang, H.; Cohen, D.J.; Wu, X.; Ye, M.; Bar-Yosef, O.; Lu, B.; et al. Outburst flood at 1920 BCE supports historicity of China’s Great Flood and the Xia dynasty. Science 2016, 353, 579–582. [Google Scholar] [CrossRef] [PubMed]
- Yoffee, N.; Cowgill, G.L. (Eds.) The Collapse of Ancient States and Civilizations; University of Arizona Press: Tucson, AZ, USA, 1988. [Google Scholar]
- Middleton, G.D. (Ed.) Collapse and Transformation: The Late Bronze Age to Early Iron Age in the Aegean; Oxbow Books: Oxford, UK, 2020. [Google Scholar]
- Renfrew, C. Systems collapse as social transformation. In Approaches to Social Archaeology; Harvard University Press: Cambridge, UK, 1984; pp. 366–389. [Google Scholar]
- Desborough, V.D.A. The Last Mycenaeans and Their Successors: An Archaeological Survey, c. 1200-c. 1000 bc; Wipf and Stock Publishers: Eugene, OR, USA, 2007. [Google Scholar]
- Deger-Jalkotzy, S. The Aegean Islands and the Breakdown of the Mycenaean Palaces around 1200 B.C. In Eastern Mediterranean: Cyprus–Dodecanese–Crete 16th–6th Century B.C.; Karageorghis, V., Stampolidis, N., Eds.; University of Crete: Heraklion, Greece, 1998; pp. 105–120. [Google Scholar]
- Drews, R. The End of the Bronze Age: Changes in Warfare and the Catastrophe ca. 1200 BC; Princeton University Press: Princeton, NJ, USA, 1993. [Google Scholar]
- Torrence, R.; Grattan, J. The archaeology of disasters: Past and future trends. In Natural Disasters and Cultural Change; Routledge: London, UK, 2003; pp. 17–34. [Google Scholar]
- Marinatos, S. The Volcanic Destruction of Minoan Crete. Antiquity 1939, 13, 425–439. [Google Scholar] [CrossRef]
- La Moreaux, P.E. Worldwide environmental impacts from the eruption of Thera. Environ. Geol. 1995, 26, 172–181. [Google Scholar] [CrossRef]
- Manning, S.W. A Test of Time and a Test of Time Revisited: The Volcano of Thera and the Chronology and History of the Aegean and East Mediterranean in the Mid Second Millennium BC; Oxbow Books: Oxford, UK, 2014. [Google Scholar]
- Zielinski, G.A.; Germani, M.S. New Ice-Core Evidence Challenges the 1620s BC age for the Santorini (Minoan) Eruption. J. Archaeol. Sci. 1998, 25, 279–289. [Google Scholar] [CrossRef]
- Chen, Y. Flood dynamics of the lower Yellow River over the last 3000 years: Characteristics and implications for geoarchaeology. Quat. Int. 2019, 521, 147–157. [Google Scholar] [CrossRef]
- Morhange, C.; Marriner, N.; Bony, G.; Carayon, N.; Flaux, C.; Shah-Hosseini, M. Coastal geoarchaeology and neocatastrophism: A dangerous liaison. Harb. Harb. Cities East. Mediterranean. Byzas 2014, 19, 705–726. [Google Scholar]
- Vitaliano, D.B. Geomythology: The impact of geologic events on history and legend with special reference to Atlantis. J. Folk. Inst. 1968, 5, 5–30. [Google Scholar] [CrossRef]
- Yang, D.; Yu, G.; Xie, Y.; Zhan, D.; Li, Z. Sedimentary records of large Holocene floods from the middle reaches of the Yellow River, China. Geomorphology 2000, 33, 73–88. [Google Scholar] [CrossRef]
- Li, K.; Gong, P.; Hu, H.; Jia, W.; Liu, X.; Gao, W. Spatial variability of human subsistence strategies during the longshan period (~4.6–~3.9 ka bp) and its possible physical environmental contexts in the yellow-huai river area, east China. Sci. Cult. 2021, 7, 105–116. [Google Scholar] [CrossRef]
- Lu, P.; Lü, J.; Zhuang, Y.; Chen, P.; Wang, H.; Tian, Y.; Mo, D.; Xu, J.; Gu, W.; Hu, Y.; et al. Evolution of Holocene alluvial landscapes in the northeastern Songshan Region, Central China: Chronology, models and socio-economic impact. Catena 2021, 197, 104956. [Google Scholar] [CrossRef]
- Wang, H. The Great Flood in Yao and Shun’s Days and the Origin of the Early State in China. J. Shaanxi Norm. Univ. (Philos. Soc. Ed.) 2005, 3, 76–86. [Google Scholar]
- Yuzhu, Z.; Chang, H.C.; Jiangli, P. A luminescence dating study of the sediment stratigraphy of the Lajia Ruins in the upper Yellow River valley. China J. Asian Earth Sci. 2014, 87, 157–164. [Google Scholar]
- Hou, Y.J. Yu the Great Subdueing the Flood. J. Anc. Books Collat. Stud. 2008, 2, 85–87+71. [Google Scholar]
- Vitaliano, D.B. Geomythology: Geological origins of myths and legends. Geol. Soc. Lond. Spec. Publ. 2007, 273, 1–7. [Google Scholar] [CrossRef]
- Marler, J. Introduction to archaeomythology. ReVision 2000, 23, 2. [Google Scholar]
- Beecroft, A. Comparisons of Greece and China. In Oxford Handbooks Online; Oxford University Press: New York, NY, USA, 2015. [Google Scholar]
- Liritzis, I.; Westra, A.J. The lower Yangtze River and Aegean Sea in the third millennium BC: Parallel cradles of civilizations. Asian Archaeol. 2022, 1–4. [Google Scholar] [CrossRef]
- Cornu, V. Qu’est ce que l’architecture? In Conférence donnée le 7 Octobre 2009 à la Maison de l’architecture; RAIC: Ottawa, ON, Canada, 2007. [Google Scholar]
- Tassios, T.P. Mycenaean Technology. In Science and Technology in Homeric Epics; Paipetis, S.A., Ed.; Springer: Dordrecht, The Netherlands, 2008; pp. 3–33. [Google Scholar]
- Glassman, R.M. The Expansion of Mycenaean Greek Civilization. In The Origins of Democracy in Tribes, City-States and Nation-States; Springer: Cham, Switzerland, 2017; pp. 759–769. [Google Scholar]
- Simpson, R.H. Identifying a Mycenaean state. Annu. Br. Sch. Athens 1957, 52, 231–259. [Google Scholar] [CrossRef]
- Nilsson, M. State Organization in Homer and in the Mycenean Age. Homer Crit. Assess. 1999, 126–148. [Google Scholar]
- Eno, R. Shang State Religion and The Pantheon Of The Oracle Texts. In Early Chinese Religion, Part One: Shang through Han (1250 BC–220 AD); Brill: Leiden, The Netherlands, 2009. [Google Scholar]
- Keightley, D.N. The late Shang state: When, where, and what? In The Origins of Chinese Civilization; Keightley, D.N., Ed.; University of California: Berkeley, CA, USA, 1983; pp. 523–564. [Google Scholar]
- Yates, R. The city-state in ancient China. In The Archaeology of City-States: Cross Cultural Approaches; Deborah, N., Thomas, C., Eds.; Smithsonian Institution Press: Washington, DC, USA, 1997; pp. 71–90. [Google Scholar]
- Driessen, J. ‘In bulls doth the Earth-Shaker delight’–Introduction to the volume. Minoan Earthq. Break. Myth. Through Interdiscip. 2017, 5, 19. [Google Scholar]
- Schaar, K.W. Traditional Earthquake-Resistant Construction: The Mycenaean Aspect. J. Soc. Archit. Hist. 1974, 33, 80–81. [Google Scholar] [CrossRef]
- Poursoulis, G. Geological factors part in the Minoan society vulnerability process (Crete–Greece). In The Mediterranean World Environment and History; Elsevier: Paris, France, 2002; pp. 25–39. [Google Scholar]
- Papadopoulos, G.A. A Seismic History of Crete. The Hellenic Arc and Trench. Earthquakes and Tsunamis 2000 BC–2011 AD; Ocelotos Publications: Athens, Greece, 2011. [Google Scholar]
- Papadopoulos, G.A. Earthquake sources and seismotectonics in the area of Crete. In Minoan Earthquakes-Breaking the Myth through Interdisciplinarity; Jusseret, S., Sintubin, M., Eds.; Leuven University Press: Leuven, Belgium, 2017; Chapter 7; pp. 165–190. [Google Scholar]
- Poursoulis, G.; Dalongeville, R.; Helly, B. Destruction des edifices minoens et sismicité récurrente en Crète (Grèce). Géomorphologie Relief Processus Environ. 2000, 6, 253–265. [Google Scholar] [CrossRef] [Green Version]
- Stiros, S.C.; Jones, R.E. Archaeoseismology; Fitch Laboratory Occasional Paper 7; Institute of Geology and Mineral Exploration and The British School at Athens: Athens, Greece, 1996. [Google Scholar]
- Jusseret, S.; Sintubin, M. (Eds.) Minoan Earthquakes: Breaking the Myth through Interdisciplinarity; Leuven University Press: Leuven, Belgium, 2017; Volume 5. [Google Scholar]
- Shimoyama, S. Basic characteristics of disasters. In Natural Disasters and Cultural Change. One World Archaeology; Torrence, R., Grattan, J., Eds.; Routledge: London, UK; New York, NY, USA, 2002; Volume 45, pp. 19–27. [Google Scholar]
- Sintubin, M. Archaeoseismology: Past, present and future. Quat. Int. 2011, 242, 4–10. [Google Scholar] [CrossRef]
- Higgins, M.D.; Higgins, R. A Geological Companion to Greece and the Aegean; Duckworth Publishers: London, UK, 1996. [Google Scholar]
- Meier, T.; Becker, D.; Endrun, B.; Rische, M.; Bohnhoff, M.; Stöckhert, B.; Harjes, H.P. A Model for the Hellenic Subduction Zone in the area of Crete based on seismological investigations. In The Geodynamics of the Aegean and Anatolia Geological Society; Taymaz, T., Dilek, Y., Eds.; Geological Society: London, UK, 2007; pp. 183–200. [Google Scholar]
- Palyvou, C. Daidalos at Work. A Phenomenological Approach to the Study of Minoan Architecture; INSTAP Academic Press: Philadelphia, PA, USA, 2018. [Google Scholar]
- Nur, A. Apocalypse. Earthquakes, Archaeology, and the Wrath of God; Princeton University Press: Princeton, NJ, USA, 2008. [Google Scholar]
- La Rosa, V. A hypothesis on earthquakes and political power in Minoan Crete. Ann. Geophys. 1995, 38, 881–891. [Google Scholar] [CrossRef]
- Nur, A.; Cline, E.H. Poseidon’s horses: Plate tectonics and earthquake Storms in the Late Bronze age Aegean and eastern Mediterranean. J. Archaeol. Sci. 2000, 27, 43–63. [Google Scholar] [CrossRef]
- Tsakanika-Theohari, E. The constructional analysis of timber load bearing systems as a tool for interpreting Aegean Bronze Age architecture. In Proceedings of the Symposium Bronze Age Architectural Traditions in the Eastern Mediterranean. Diffusion and Diversity, Munich, Germany, 7–8 May 2008; pp. 127–142. [Google Scholar]
- Driessen, J. Earthquake–resistant construction and the wrath of “Earth–shaker”. J. Soc. Archit. Hist. 1987, 46, 171–178. [Google Scholar] [CrossRef]
- Alberti, L. Lessons from the past: Some Greek Bronze Age responses to natural disasters and their modern counterparts. Ann. Geophys. 2019, 10, 1–14. [Google Scholar] [CrossRef]
- Vanschoonwinkel, J. Earthquakes and the end of the Mycenaean palaces. Les Études Class. 2002, 70, 1–2. [Google Scholar]
- Andronikos, M. E’dorike Eisvole kai ta archaiologika Euremata. Hellenika 1954, 13, 221–240. [Google Scholar]
- Hooker, J.T. New Reflexions on the Dorian Invasion. Klio 1979, 61, 353–360. [Google Scholar] [CrossRef]
- Thomas, G. The Celts: A Model for the Dorian Invasion? SMEA 1980, 21, 303–308. [Google Scholar]
- Broodbank, C. The Making of the Middle Sea: A History of the Mediterranean from the Beginning to the Emergence of the Classical World; Thames & Hudson: London, UK, 2013. [Google Scholar]
- Ambraseys, N.N. Archaeoseismology and neocatastrophism. Seismol. Res. Lett. 2005, 76, 560–564. [Google Scholar] [CrossRef]
- Ambraseys, N.N. Earthquakes and archaeology. J. Archaeol. Sci. 2006, 33, 1008–1016. [Google Scholar] [CrossRef]
- Rucker, J.D.; Niemi, T.N. Historical earthquake catalogues and archaeological data: Achieving synthesis without circular reasoning. In Ancient Earthquakes; Sintubin, M., Stewart, I.S., Niemi, T.N., Altunel, E., Eds.; Geological Society of America Special Paper; Geological Society of America: Boulder, CO, USA, 2010; Volume 471, pp. 97–106. [Google Scholar]
- Liritzis, I.; Raftopoulou, M. Argolid: Connection of prehistoric legends with geoenvironmental and archaeological evidence. TUBA-AR 1999, II, 87–99. [Google Scholar] [CrossRef] [Green Version]
- Liritzis, I.; Galloway, R.B.; Katsonopoulou, D.; Soters, D. In search of ancient Helike, Golf of Corinth, Greece. J. Coast. Res. 2001, 17, 118–123. [Google Scholar]
- Hirschfeld, Y. The crisis of the sixth century: Climatic change, natural disasters and the plague. Mediterr. Archaeol. Archaeom. 2006, 6, 19–32. [Google Scholar]
- Liritzis, I. Twelve thousand years of non-linear cultural evolution: The physics of chaos in Archaeology. SYNESIS J. Sci. Technol. Ethics Policy 2013, 4, G19–G31. [Google Scholar]
- Noller, J.S. Archaeoseismology. In Earth Sciences and Archaeology; Springer: Boston, MA, USA, 2001; pp. 143–170. [Google Scholar]
- Sintubin, M.; Stewart, I.S. A logical methodology for archaeoseismology: A proof of concept at the archaeological site of Sagalassos, Southwest Turkey. Bull. Seismol. Soc. Am. 2008, 98, 2209–2230. [Google Scholar] [CrossRef]
- Guidoboni, E. Historical seismology: The long memory of the inhabited world. In International Handbook of Earthquake and Engineering Seismology; Lee, W.H.K., Kanamori, H., Jennings, P.C., Kisslinger, C., Eds.; International Geophysics Series 81A; Academic Press: Amsterdam, The Netherlands, 2002; pp. 775–790. [Google Scholar]
- Caputo, R.; Pavlides, S.B. Earthquake Geology: Methods and Applications. In Tectonophysics; Elsevier: Amsterdam, The Netherlands, 2008; Volume 453. [Google Scholar]
- Galadini, F.; Hinzen, K.G.; Stiros, S.C. Archaeoseismology at the beginning of the 21st century. J. Seismol. 2006, 10, 395–414. [Google Scholar] [CrossRef] [Green Version]
- Jones, R.E.; Stiros, S.C. The advent of archaeoseismology in the Mediterranean. In The Archaeology of Geological Catastrophes; McGuire, W.G., Griffiths, D.R., Hancock, P.L., Stewart, I.S., Eds.; Special Publications 171; Geological Society: London, UK, 2000; pp. 25–32. [Google Scholar]
- Hinzen, K.G.; Schreiber, S.; Yerli, B. The Lycian Sarcophagus of Arttumpara, Pinara, Turkey: Testing Seismogenic and Anthropogenic damage Scenarios. Bull. Seismol. Soc. Am. 2010, 100, 3148–3164. [Google Scholar] [CrossRef] [Green Version]
- Hinzen, K.G. Simulation of Toppling columns in archaeoseismology. Bull. Seismol. Soc. Am. 2009, 99, 2855–2875. [Google Scholar] [CrossRef]
- Hinzen, K.G.; Maran, J.; Hinojosa-Prieto, H.; Damm-Meinhardt, U.; Reamer, S.K.; Tzislakis, J.; Kemna, K.; Schweppe, G.; Fleischer, C.; Demakopoulou, K. Reassessing the Mycenaean earthquake hypothesis: Results of the HERACLES project from Tiryns and Midea, Greece. Bull. Seismol. Soc. Am. 2018, 108, 1046–1070. [Google Scholar] [CrossRef] [Green Version]
- Rao, G.; Cheng, Y.; Lin, A.; Yan, B. Relationship between landslides and active normal faulting in the epicentral area of the AD 1556 M~ 8.5 Huaxian Earthquake, SE Weihe Graben (Central China). J. Earth Sci. 2017, 28, 545–554. [Google Scholar] [CrossRef]
- Xia, Z.; Zhang, X.; Chu, X.; Zhang, J. Discovery and significance of buried paleoearthquake of the early Shang Dynasty (1260–1520 BC) in Xuecun, Xingyang, Henan Province, China. Chin. Sci. Bull. 2009, 55, 1186–1192. [Google Scholar] [CrossRef]
- Jaquin, P.A.; Augarde, C.E.; Gerrard, C.M. Chronological Description of the Spatial Development of Rammed Earth Techniques. Int. J. Archit. Herit. Conserv. Anal. Restor. 2008, 2, 377–400. [Google Scholar] [CrossRef] [Green Version]
- Warren, J. Earthen Architecture: The Conservation of Brick and Earth Structures. A Handbook; ICOMOS: Paris, France, 1993. [Google Scholar]
- Sui Pheng, L. Construction of dwellings and structures in ancient China. Struct. Surv. 2001, 19, 262–274. [Google Scholar] [CrossRef]
- Qin, Z. Exploring the early anthropocene: Implications from the long-term human–climate interactions in early China. Mediterr. Archaeol. Archaeom. 2021, 21, 133–148. [Google Scholar]
- Bai, Y. On the Early City and the Beginning of the State in Ancient China. In The Humanities Studies; Chinese Academy of Social Sciences: Beijing, China, 2003. [Google Scholar]
- Liu, L.; Chen, X. The Archaeology of China: From the Late Paleolithic to the Early Bronze Age; Cambridge University Press: Cambridge, UK, 2012. [Google Scholar]
- Houben, H.; Guillaud, H. Earthen Architecture: A Comprehensive Guide; Intermediate Technology Development Group: London, UK, 1994. [Google Scholar]
- Shen, C. Early urbanisation in the Eastern Zhou in China (770–221 BC): An archaeological view. Antiquity 1994, 68, 724–744. [Google Scholar] [CrossRef]
- Sui Pheng, L. Techniques for environmental control and structural integrity of buildings in ancient China. Struct. Surv. 2004, 22, 271–281. [Google Scholar] [CrossRef]
- Wei, N.; Li, X.; Wang, Y.; Dahowski, R.T.; Davidson, C.L.; Bromhal, G.S. A preliminary sub-basin scale evaluation framework of site suitability for onshore aquifer-based CO2 storage in China. Int. J. Greenh. Gas Control. 2013, 12, 231–246. [Google Scholar] [CrossRef]
- Huang, C.C.; Pang, J.; Zhou, Y.; Su, H.; Zhang, Y.; Wang, L. Palaeoenvironmental implications of the prehistorical catastrophes in relation to the Lajia Ruins within the Guanting Basin along the Upper Yellow River, China. Holocene 2013, 23, 1584–1595. [Google Scholar] [CrossRef]
- Wang, H.; Huang, C.C.; Pang, J.; Zhou, Y.; Cuan, Y.; Guo, Y.; Zhang, Y.; Zhou, Q.; Rong, X.; Shang, R. Catastrophic flashflood and mudflow events in the pre-historical Lajia Ruins at the northeast margin of the Chinese Tibetan Plateau. Quat. Sci. Rev. 2021, 251, 106737. [Google Scholar] [CrossRef]
- Zhang, J.; Xia, Z. Deposition Evidences of the 4ka BP Flood Events in Central China Plains. Quat. Sci. 2003, 6, 667–674. [Google Scholar]
- Zhang, Y.; Huang, C.C.; Pang, J.; Guo, Y.; Zhou, Q. Identification of the prehistoric catastrophes at the Lajia Ruins using micromorphological analysis within the Guanting Basin, Minhe County, Qinghai Province. Archaeol. Anthropol. Sci. 2018, 10, 711–723. [Google Scholar] [CrossRef]
- Zhao, H.; Huang, C.C.; Zheng, Z.; Hu, Y.; Zhang, Y.; Guo, Y.; Zhou, Q. New evidence for the catastrophic demise of a prehistoric settlement (the Lajia Ruins) in the Guanting Basin, upper Yellow River, NW China. J. Asian Earth Sci. 2017, 146, 134–141. [Google Scholar] [CrossRef]
- Huang, C.C.; Pang, J.; Li, P. Abruptly increased climatic aridity and its social impact on the Loess Plateau of China at 3100 a BP. J. Arid. Environ. 2002, 52, 87–99. [Google Scholar] [CrossRef]
- O’Brien, S.R.; Mayewski, P.A.; Meeker, L.D.; Meese, D.A.; Twickler, M.S.; Whitlow, S.I. Complexity of Holocene climate as reconstructed from a Greenland ice core. Science 1995, 270, 1962–1964. [Google Scholar] [CrossRef]
- Biscaye, P.E.; Grousset, F.E.; Revel, M.; Van der Gaast, S.; Zielinsky, G.A.; Vaars, A.; Kukla, G. Asian provenance of last glacial maximum dust in the GISP2 ice core, summit, Greenland. J. Geophys. Res. 1997, 102, 26765–26781. [Google Scholar] [CrossRef]
- Wang, S.M.; Feng, M. Environmental change recorded in the Daihai Lake and its relationship with the change in strength of the southeast monsoon. Sci. China 1991, 21, 759–768. (In Chinese) [Google Scholar]
- Yang, Z.Y. Holocene climatic variations recorded in the Diaojiaohaizi Lake of the Daqingshan Mts. Geogr. Res. 1998, 17, 138–144. (In Chinese) [Google Scholar]
- Xu, S.H. Development of Shang culture in Middle Yangtze River region on case study on Panlongcheng. Jianghan Archaeol. 2003, 86, 40–44. (In Chinese) [Google Scholar]
- Dou, H. A discussion on the relationship between the Shang Dynasty remains of Yangtze River Plain in Anhui Province and neighbor areas. Jianghan Archaeol. 2012, 124, 69–80. (In Chinese) [Google Scholar]
- Guo, Y.; Mo, D.; Mao, L.; Jin, Y.; Guo, W.; Mudie, P.J. Settlement distribution and its relationship with environmental changes from the Paleolithic to Shang–Zhou period in Liyang Plain, China. Quat. Int. 2014, 321, 29–36. [Google Scholar] [CrossRef]
- Stewart, I.S.; Hancock, P.L. Normal fault zone evolution and fault scarp degradation in the Aegean region. Basin Res. 1988, 1, 139–153. [Google Scholar] [CrossRef]
- Wang, C.; Wang, S.M. The precipitation change in the Yellow River basin during the last 5000 years. Sci. China 1987, 1, 104–112. (In Chinese) [Google Scholar]
- Wang, J.; Lin, G.; Zhang, Z. Methodology to determine the parameters of historical earthquakes in China. Geosci. Lett. 2017, 4, 4. [Google Scholar] [CrossRef] [Green Version]
- Li, S.; Wu, H.; Guo, Z.; Mei, S.; Min, Z. The Catalogue of Chinese Earthquakes; Science and Technology Publish House: Beijing, China, 1960; pp. 1–399. (In Chinese) [Google Scholar]
- Needham, J.; Wang, L. Science and Civilisation in China; Cambridge University Press: Cambridge, UK, 1995; Volume 3. [Google Scholar]
- Palaima, T.; Linear, B.; Cline, E.H. The Oxford Handbook of the Bronze Age Aegean; Oxford University Press: Oxford, UK, 2010; pp. 356–372. [Google Scholar]
- Rougemont, F. Les noms des dieux dans les tablettes inscrites en Linéaire B. In Nommer les Dieux: Théonymes, Épithètes, Épiclèses dans L’antiquité; Bylache, N., Brulé, P., Freyburger, G., Lehmann, Y., Pernot, L., Prost, L., Eds.; Brepols: Rennes, France, 2005; pp. 325–388. [Google Scholar]
- Gulizio, J.; Pluta, K.; Palaima, T. Religion in the Room of the Chariot Tablets. In POTNIA: Deities and Religion in the Aegean Bronze Age; Laffineur, R., Hägg, R., Eds.; Aegaeum: Göteborg, Sweden, 2001; Volume 22, pp. 453–461. [Google Scholar]
- Palaima, T. Appendix One: Linear B sources of Greek religion. In Anthology of Classical Myth: Primary Sources in Translation; Trzaskoma, S.M., Smith, R.S., Brunet, S., Eds.; Hackett Publishing Company: Indianapolis, Indiana, 2004; pp. 439–454. [Google Scholar]
- Konsolaki, E. A Mycenaean sanctuary on Methana. Pelopon. Sanctuaries Cults 2002, 25–36. [Google Scholar]
- Vermeule, E. Götterkult, Archaeologia Homerica III; Chapter V: Der mykenische Kult nach den Linear B-Dokumenten; Vandenhoeck & Ruprecht: Göttingen, Germany, 1974; pp. 59–72. [Google Scholar]
- Chirassi, I. Poseidon-Enesidaon nel pantheon miceneo. In Atti e Memorie del Primo Congress Internazionale di Micenologie, 27 Settembre–3 Ottobre 1967; Incunabula Graeca 25; Ateneo: Rome, Italy, 1974; pp. 945–991. Available online: https://www.maremagnum.com/libri-antichi/atti-e-memorie-del-1-congresso-internazionale-di-micenologia/150946723 (accessed on 10 June 2022).
- Duhoux, Y.; Davies, A.M. (Eds.) A Companion to Linear B: Mycenaean Greek Texts and Their World; Peeters: Louvain-la-Neuve, Belgium, 2008; Volume 1. [Google Scholar]
- Konsolaki-Yannopoulou, E. Mycenaean religious architecture: The archaeological evidence from Ayios Konstantinos, Methana. In Celebrations: Selected papers and Discussions from the Tenth Anniversary Symposium of the Norwegian Institute at Athens, 12–16 May 1999; Wedde, M., Norske Institutt i Athen for Klassiske Studier, Arkeologi og Kulturhistorie, Eds.; The Norwegian Institute at Athens: Bergen, Norway, 2004. [Google Scholar]
- Diodorus, S. Diodorus of Sicily in Twelve Volumes with an English Translation by C. H. Oldfather; Harvard University Press: Cambridge, MA, USA; William Heinemann, Ltd.: London, UK, 1989; Volumes 4–8. [Google Scholar]
- Schmandt-Besserat, D. Before Writing; University of Texas Press: Austin, TX, USA, 1992; Volume I, pp. 184–194. [Google Scholar]
- Goldin, P.R.; University of Pennsylvania. Some Shang Antecedents of Later Chinese Ideology and Culture. J. Am. Orient. Soc. 2017, 137, 121–127. [Google Scholar] [CrossRef]
- Bagley, R.W. Anyang Writing and the Origin of the Chinese Writing System. In The First Writing: Script Invention as History and Process; Stephen, D.H., Ed.; Cambridge University Press: Cambridge, UK, 2004. [Google Scholar]
- Chang, K.-C. Shang Civilization; Yale University Press: New Haven, CT, USA, 1980. [Google Scholar]
- Keightley, D.N. The religious commitment: Shang theology and the genesis of Chinese political culture. Hist. Relig. 1978, 17, 211–225. [Google Scholar] [CrossRef]
- Kalinowski, M. Diviners and Astrologers under the Eastern Zhou: Transmitted Texts and Recent Archaeological Discoveries. In Early Chinese Religion, Part One: Shang through Han (1250 BC–220 AD); John, L., Marc, K., Handbuch der, O., Eds.; Brill: Leiden, The Netherlands, 2009; pp. 349–354. [Google Scholar]
- Raphals, L. Divination and Prediction in Early China and Ancient Greece; Cambridge University Press: Cambridge, UK, 2013; pp. 129–131. [Google Scholar]
- Eun-hee, K.; Hyeok, K. A study on character forms and sentence samples of “yu” in oracle bone inscriptions. J. Chin. Writ. Syst. 2019, 3, 11–18. [Google Scholar] [CrossRef]
- Keightley, D.N. The Ancestral Landscape: Time, Space and Community in Late Shang China (ca. 1200–1045 B.C.); Institute of East Asian Studies; University of California: Berkley, CA, USA, 2000. [Google Scholar]
- Michiharu, I.; Ken-ichi, T. Religion and Society. In Studies in Early Chinese Civilization: Religion, Society, Language, and Palaeography; Gary, F.A., Ed.; Kansai Gaidai University: Osaka, Japan, 1996; Volume I, pp. 100–104. [Google Scholar]
- Anderson, M. An Investigation of Orthographic Variance in Shang Writing. Sino-Platonic Pap. 2011, 215, 1–16. [Google Scholar]
- Allan, S. On the Identity of Shang Di and the Origin of the Concept of a Celestial Mandate (TIAN MING). Early China 2007, 31, 1–46. [Google Scholar] [CrossRef]
- Lloyd, G.E.R. Adversaries and Authorities: Investigations into Ancient Greek and Chinese Science; Cambridge University Press: Cambridge, UK, 1996; Volume 42. [Google Scholar]
- Tanner, J. Ancient Greece, early China: Sino-Hellenic studies and comparative approaches to the classical world. A review article. J. Hell. Stud. 2009, 129, 89–109. [Google Scholar] [CrossRef]
- Raphals, L. Which Gods if Any: Gods, Cosmologies, and Their Implications for Chinese and Greek Divination. In Ancient Divination and Experience; Oxford University Press: Oxford, UK, 2019; pp. 253–276. [Google Scholar]
- Guo, L.; Gao, J.; Yan, W. A Comparative Study of earthquake data in Early World History. Earthq. Res. Shanxi 1992, 2, 15–28. (In Chinese) [Google Scholar]
- Ichirô, K. Rituals for the Earth. In Early Chinese Religion, Part One: Shang through Han (1250 BC–220 AD)(2 vols.); Brill: Leiden, The Netherlands, 2009; pp. 201–234. [Google Scholar]
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Westra, A.J.D.; Miao, C.; Liritzis, I.; Stefanakis, M. Disasters and Society: Comparing the Shang and Mycenaean Response to Natural Phenomena through Text and Archaeology. Quaternary 2022, 5, 33. https://doi.org/10.3390/quat5030033
Westra AJD, Miao C, Liritzis I, Stefanakis M. Disasters and Society: Comparing the Shang and Mycenaean Response to Natural Phenomena through Text and Archaeology. Quaternary. 2022; 5(3):33. https://doi.org/10.3390/quat5030033
Chicago/Turabian StyleWestra, Alexander Jan Dimitris, Changhong Miao, Ioannis Liritzis, and Manolis Stefanakis. 2022. "Disasters and Society: Comparing the Shang and Mycenaean Response to Natural Phenomena through Text and Archaeology" Quaternary 5, no. 3: 33. https://doi.org/10.3390/quat5030033