International Ocean Discovery Program (IODP) Expedition 353 (29 November 2014–29 January 2015) drilled six sites in the Bay of Bengal, recovering 4280 m of sediments during 32.9 days of on-site drilling. Recovery averaged 97%, including coring with the advanced piston corer, half-length advanced piston corer, and extended core barrel systems. The primary objective of Expedition 353 is to reconstruct changes in Indian monsoon circulation since the Miocene at tectonic to centennial timescales. Analysis of the sediment sections recovered will improve our understanding of how monsoonal climates respond to changes in forcing external to the Earth’s climate system (i.e., insolation) and changes in forcing internal to the Earth’s climate system, i...
© 2022, The Author(s), under exclusive licence to Korea Institute of Ocean Science & Technology ...
We reconstructed the variability of the Earth's strongest hydrological system, the Indian monsoon, o...
The Indian summer monsoon (ISM) is a critical component of the overarching Asian monsoon system, whi...
International Ocean Discovery Program (IODP) Expedition 353 (29 November 2014–29 January 2015) drill...
International Ocean Discovery Program (IODP) Expedition 353 (29 November 2014-29 January 2015) drill...
International Ocean Discovery Program (IODP) Expedition 361 drilled six sites on the southeast Afric...
Integrated Ocean Drilling Program (IODP) Expedition 346 (29 July–27 September 2013) drilled seven si...
International Ocean Discovery Program Expedition 359 was designed to address changes in sea level an...
Asian monsoon rains provide freshwater to one of the most densely populated regions on Earth. Howeve...
International audienceThe International Ocean Discovery Program (IODP) conducted a series of expedit...
The South Asian or Indian Summer Monsoon (ISM) is an iconic reflection of land-ocean-atmosphere inte...
The South Asian Monson (SAM) is one of the most intense climatic elements yet its initiation and var...
We conducted a multidisciplinary study to provide the stratigraphic and palaeoclimatic context of mo...
The IODP-PAGES Workshop on Global Monsoon in Long-term Records was held on 7–9 September 2017, in S...
The South Asian Monsoon (SAM) drives seasonal changes in the atmospheric and ocean circulation of th...
© 2022, The Author(s), under exclusive licence to Korea Institute of Ocean Science & Technology ...
We reconstructed the variability of the Earth's strongest hydrological system, the Indian monsoon, o...
The Indian summer monsoon (ISM) is a critical component of the overarching Asian monsoon system, whi...
International Ocean Discovery Program (IODP) Expedition 353 (29 November 2014–29 January 2015) drill...
International Ocean Discovery Program (IODP) Expedition 353 (29 November 2014-29 January 2015) drill...
International Ocean Discovery Program (IODP) Expedition 361 drilled six sites on the southeast Afric...
Integrated Ocean Drilling Program (IODP) Expedition 346 (29 July–27 September 2013) drilled seven si...
International Ocean Discovery Program Expedition 359 was designed to address changes in sea level an...
Asian monsoon rains provide freshwater to one of the most densely populated regions on Earth. Howeve...
International audienceThe International Ocean Discovery Program (IODP) conducted a series of expedit...
The South Asian or Indian Summer Monsoon (ISM) is an iconic reflection of land-ocean-atmosphere inte...
The South Asian Monson (SAM) is one of the most intense climatic elements yet its initiation and var...
We conducted a multidisciplinary study to provide the stratigraphic and palaeoclimatic context of mo...
The IODP-PAGES Workshop on Global Monsoon in Long-term Records was held on 7–9 September 2017, in S...
The South Asian Monsoon (SAM) drives seasonal changes in the atmospheric and ocean circulation of th...
© 2022, The Author(s), under exclusive licence to Korea Institute of Ocean Science & Technology ...
We reconstructed the variability of the Earth's strongest hydrological system, the Indian monsoon, o...
The Indian summer monsoon (ISM) is a critical component of the overarching Asian monsoon system, whi...