FN Archimer Export Format PT J TI Dynamic control on grain-size distribution of terrigenous sediments in the western South China Sea: Implication for East Asian monsoon evolution BT AF CHEN, GuoCheng ZHENG, HongBo LI, JianRu XIE, Xin ME, Xi AS 1:1;2:1;3:1;4:1;5:1; FF 1:;2:;3:;4:;5:; C1 Tongji Univ, State Key Lab Marine Biol, Shanghai 200092, Peoples R China. C2 UNIV TONGJI, CHINA IF 0.683 TC 13 UR https://archimer.ifremer.fr/doc/00207/31846/30290.pdf LA English DT Article CR MD 145 / KEOPS MD 147/MARCO-POLO1-IMAGESXII BO Marion Dufresne DE ;South China Sea;late Quaternary;terrigenous sediments;grain size;East Asian monsoon AB High-resolution oxygen isotope stratigraphy of Core MD05-2901, which is located off eastern Vietnam in the western South China Sea (SCS), was established and indicated that the core spans a time period of the past 450 ka. Based on the bulk density, fractional porosity and lithogenic content of the sediments, terrigenous mass accumulation rate (TMAR) was obtained, which is 4.9-6.0 g cm(-2) ka(-1) on average during interglacial stages, higher than that during glacial stages, i.e. 1.9-5.0 g cm(-2) ka(-1), which is different from northern and southern SCS which show higher TMAR in glacial stages. By principle component analysis of grain size distribution of all the samples, two main control factors (F1 and F2) were obtained, which are responsible for about 80% variance of granularity. The contents of grain size population 1.26 - 2.66 mu m% and 10.8 - 14.3 mu m% which are sensible to F1 show high-frequency fluctuation, and correlate well with the summer insolation at 15 degrees N. They exhibit a distinct cyclicity with frequencies near 23 ka and 13 ka, in contrast to a strong frequency peak near 100 ka obtained in proxies 4.24-7.42 mu m% and 30.1-43.7 mu m% controlled mainly by F2. The sedimentary character of this part of the SCS was controlled by variations of input flux from two main source areas, namely the southwest and north SCS, which were transported by different circulations of surface current forced by East Asian summer monsoon and winter monsoon respectively. We believe that the East Asian summer monsoon has fluctuated with high frequency and been forced by changes in solar insolation in low latitude associated with precession and half precession, while ice-volume forcing is probably a primary factor in determining the strength and timing of the East Asian winter monsoon but with less important insolation forcing. PY 2008 PD MAY SO Chinese Science Bulletin SN 1001-6538 PU Science Press VL 53 IS 10 UT 000255985900012 BP 1533 EP 1543 DI 10.1007/s11434-008-0078-y ID 31846 ER EF