Earth's climate system is complex and inherently nonlinear, which can induce some extraneous cycles in paleoclimatic proxies at orbital time scales. The paleoenvironmental …
S Wu, L Chen, M Xiong, X Chen, G Wang… - Marine and Petroleum …, 2024 - Elsevier
The shale lithofacies shows obvious heterogeneity during the Late Ordovician-Early Silurian in the Upper Yangtze area, SW China. To elucidate the Wufeng-Longmaxi shale lithofacies' …
Z Zhang, Y Huang, M Li, X Li, P Ju, C Wang - Earth and Planetary Science …, 2022 - Elsevier
The mechanisms of short-term (10 5–10 6 years) and high-magnitude (> 20 m) sea-level oscillations have long been debated involving glacio-and aquifer-eustasy, largely owing to …
T Zhang, Y Li, T Fan, AC Da Silva, J Shi, Q Gao… - Earth and Planetary …, 2022 - Elsevier
The early Cambrian was a critical period of Earth history, marked by explosive diversification of metazoans and several profound changes in Earth's surface environments and global …
The linkages between the astronomical forcing of sea-level oscillations, the environment, and climate change during the Late Paleozoic Ice Age (LPIA) add to our understanding of …
Lake hydrological change and its driving mechanisms in the Eocene warmhouse climate are important to evaluating environmental and ecological changes induced by global warming …
Orbital forcing affects climate system by regulating the amount of solar radiation received at the Earth's surface, which is vital for global hydrological cycles. However, a systematic …