[1] |
Chen F H, Dong G H, Zhang D J, et al. Agriculture facilitated permanent human occupation of the Tibetan Plateau after 3600 B.P.[J]. Science, 2015, 347(6219): 248-250. |
[2] |
侯光良,刘峰贵. 青海东部史前文化对气候变化的响应[J]. 地理学报,2004,59(6):841-846.
Hou Guangliang, Liu Fenggui. Pre-history and climate change of eastern Qinghai[J]. Acta Geographica Sinica, 2004, 59(6): 841-846. |
[3] |
侯光良,魏海成,鄂崇毅,等. 青藏高原东北缘全新世人类活动与环境变化:以青海湖江西沟2号遗迹为例[J]. 地理学报,2013,68(3):380-388.
Hou Guangliang, Wei Haicheng, Chongyi E, et al. Human activities and environmental change in Holocene in the northeastern margin of Qinghai-Tibet Plateau: A case study of JXG2 relic site in Qinghai Lake[J]. Acta Geographica Sinica, 2013, 68(3): 380-388. |
[4] |
叶茂林. 青海民和喇家史前遗址的发掘[J]. 考古,2002(7):3-5.
Ye Maolin. Excavation of the prehistoric Lajia site in Minhe, Qinghai[J]. Archaeology, 2002(7): 3-5. |
[5] |
叶茂林. 不可思议的考古发现[J]. 成都文物,2008(1):1-10.
Ye Maolin. Incredible archaeological discovery[J]. Chengdu Cultural Relics, 2008(1): 1-10. |
[6] |
于孟洲,王倩倩,杜战伟. 喇家遗址齐家文化聚落的考古发现与思考[J]. 青海社会科学,2017(3):199-204.
Yu Mengzhou, Wang Qianqian, Du Zhanwei. Archaeological discovery and reflection on Qijia cultural settlement in Lajia ruins[J]. Qinghai Social Sciences, 2017(3): 199-204. |
[7] |
Huang Chunchang, Zhou Yali, Zhang Yuzhu, et al. Comment on “Outburst flood at 1920 BCE supports historicity of China’s Great Flood and the Xia dynasty”. Science, 2017, 355(6332): 1382-1382. |
[8] |
张信宝. 2017. 青海民和喇家遗址的古地震与古溃决洪水质疑. 山地学报,35(3): 255~256. |
[9] |
Wu W X, Dai J H, Zhou Y, et al. Comment on “Outburst flood at 1920 BCE supports historicity of China’s Great Flood and the Xia dynasty”[J]. Science, 2017, 355(6332): 1382. |
[10] |
Han J C. Comment on “Outburst flood at 1920 BCE supports historicity of China’s Great Flood and the Xia dynasty”[J]. Science, 2017, 355(6332): 1382. |
[11] |
黄春长,郭永强,张玉柱,等. 青海官亭盆地喇家遗址全新世地层序列与史前灾难研究[J]. 中国科学(D辑):地球科学,2019,49(2):434-455.
Huang Chunchang, Guo Yongqiang, Zhang Yuzhu, et al. Holocene stratigraphic sequence and prehistoric disaster in the Lajia Ruins in the Guanting Basin[J]. Science China (Seri. D): Earth Sciences, 2019, 49(2): 434-455. |
[12] |
张玉柱,黄春长,庞奖励,等. 黄河上游官亭盆地喇家遗址地层光释光测年研究[J]. 地理学报,2013,68(5):626-639.
Zhang Yuzhu, Huang Chunchang, Pang Jiangli, et al. OSL dating of the sediment stratigraphy of the Lajia Ruins in the Guanting basin in the Upper Yellow River basin[J]. Acta Geographica Sinica, 2013, 68(5): 626-639. |
[13] |
炊郁达,黄春长,庞奖励,等. 青海喇家遗址土壤序列及史前山洪泥流灾难释光测年研究[J]. 地理学报,2019,74(11):2371-2384.
Yuda Chui, Huang Chunchang, Pang Jiangli, et al. OSL dating of the pedo-stratigraphic sequence and the prehistoric flash floods and mudflows over the Lajia Ruins of Qinghai province[J]. Acta Geographica Sinica, 2019, 74(11): 2371-2384. |
[14] |
陈莹璐,黄春长,周亚利,等. 青海官亭盆地二方村遗址全新世土壤沉积物地层序列与OSL测年研究[J]. 地质学报,2019,93(11):2960-2974.
Chen Yinglu, Huang Chunchang, Zhou Yali, et al. Holocene pedo-stratigraphic sequence and OSL chronology of the Erfangcun ruins in the Guanting basin of Qinghai province[J]. Acta Geologica Sinica, 2019, 93(11): 2960-2974. |
[15] |
袁道阳,张培震,雷中生,等. 青海拉脊山断裂带新活动特征的初步研究[J]. 中国地震,2005,21(1):93-102.
Yuan Daoyang, Zhang Peizhen, Lei Zhongsheng, et al. A preliminary study on the new activity features of the Lajishan mountain fault zone in Qinghai province[J]. Earthquake Research in China, 2005, 21(1): 93-102. |
[16] |
殷志强. 黄河上游滑坡泥石流时空演化及触发机制[M]. 北京:科学出版社,2016:177-189.
Yin Zhiqiang. Landslide and debris flow in the upper Yellow river: Evolution and triggering mechanism[M]. Beijing: Science Press, 2016: 177-189. |
[17] |
Zhang, Yuzhu, Huang Chunchang, James Shulmeister, et al. Formation and evolution of the Holocene massive landslide-dammed lakes in the Jishixia Gorges along the upper Yellow River: No relation to China's Great Flood and the Xia Dynasty. .Quaternary Science Reviews218(2019):267-280. |
[18] |
刘秀铭,刘东生,Shaw J. 中国黄土磁性矿物特征及其古气候意义[J]. 第四纪研究,1993(3):281-287.
Liu Xiuming, Liu Tungsheng, Shaw J. Magnetic mineral characteristics of Chinese loess and its palaeoclimatic significance[J]. Quaternary Sciences, 1993(3): 281-287. |
[19] |
鹿化煜,安芷生. 黄土高原黄土粒度组成的古气候意义[J]. 中国科学(D辑):地球科学,1998,28(3):278-283.
Lu Huayu, An Zhisheng. Paleoclimatic significance of grain size of loess-palaeosol deposit in Chinese Loess Plateau[J]. Science China (Seri. D): Earth Sciences, 1998, 28(3): 278-283. |
[20] |
鹿化煜,安芷生. 洛川黄土粒度组成的古气候意义[J]. 科学通报,1997,42(1):67-69.
Lu Huayu, An Zhisheng. Grain size distribution of Luochuan loess and its paleoclimate implication[J]. Chinese Science Bulletin, 1997, 42(1): 67-69. |
[21] |
Zhang Y Z, Huang C C, Pang J L, et al. A luminescence dating study of the sediment stratigraphy of the Lajia Ruins in the upper Yellow River valley, China[J]. Journal of Asian Earth Sciences, 2014, 87: 157-164. |
[22] |
Huang C C, Pang J L, Zhao J B. Chinese loess and the evolution of the east Asian monsoon[J]. Progress in Physical Geography, 2000, 24(1): 75-96. |
[23] |
Huang C C, Pang J L, Su H X, et al. The Ustic Isohumisol (Chernozem) distributed over the Chinese Loess Plateau: Modern soil or palaeosol?[J]. Geoderma, 2009, 150(3/4): 344-358. |
[24] |
夏正楷,杨晓燕,叶茂林. 青海喇家遗址史前灾难事件[J]. 科学通报,2003,48(11):1200-1204.
Xia Zhengkai, Yang Xiaoyan, Ye Maolin. Prehistoric disasters at Lajia site, Qinghai, China[J]. Chinese Science Bulletin, 2003, 48(11): 1200-1204. |
[25] |
任小燕,王国道,蔡林海,等. 青海民和县喇家遗址2000年发掘简报[J]. 考古,2002(12):12-25.
Ren Xiaoyan, Wang Guodao, Cai Linhai, et al. Excavation on the Lajia Site in Minhe county, Qinghai, in 2000[J]. Archaeology, 2002(12): 12-25. |
[26] |
Patterson III W A, Edwards K J, Maguire D J. Microscopic charcoal as a fossil indicator of fire[J]. Quaternary Science Reviews, 1987, 6(1): 3-23. |