Magmatism in SE China was dormant during 204–180 Ma, but was reactivated in 180–170 Ma (early J2), and then became more and more intensive towards the end of early Cretaceous. The small-scale early J2 magmatism is the incipience to long-term and large-scale magmatism in this region. A near east-west (EW) trend volcanic belt
was distributed across south Hunan, south Jiangxi and southwest Fujian was formed during early J2 time. Along this belt from the inland toward the coast, the lithology of basalts changes from alkali into tholeiite, and
the amount of erupted volcanic rocks and the proportions of rhyolites coexisting with the basalts increase. On the basis of
geochemical characteristics of these basalts, we infer that the melting degree of source rocks and the extent of fractional
crystallization and crustal contamination all increased whereas the depth of mantle source decreased from the inland to the
coast, which led to the variations of geological characteristics of the volcanic belt. In early J2, the western spreading Pacific plate began to subduct underneath SE China continental block, reactivating near EW trend deep
fault that was originally formed during the Indosinian event. The stress of the western spreading Pacific plate and the extent
of asthenosphere upwelling increased from the inland to the coast, which is consistent with the generation and evolution of
early J2 basalts. 相似文献
This paper presents evidence for long-term optical variability and colour behaviour of the blazar 3C 345 (1641+399, z=0.595). Our results show that the amplitude of the optical variations of 3C 345 has been only about 3 magnitudes from its
photometric history; existent significant correlation between brightness and colours is found for 3C 345. Our recent CCD photometry
of 3C 345 in May 1996 and May 1997 showed that they are in good agreement with our prediction of the optical variability period
of about 10 years (see Zhang et al., 1998; Webb et al., 1988).
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
Strata behaviors are mainly affected by regional geodynamic background. The influence of rock mass stress and energy distribution on strata behaviors in the Tongxin mine is studied in terms of regional tectonic movement, seismic activity and tectonic stress field. The results show that the extrusion lifting movement of Kouquan fault adjacent to the Tongxin mine results in the stress concentration in the rock of the Carboniferous coal bed and accumulation of a large amount of elastic energy and forms structural background of Tongxin mine. Due to various seismic activities in the mine area, the strain energy is known to reach much higher levels, up to 0.5×108J1/2. Since the stratigraphic structure is sensitive to the mining operation, the strain energy could cause strong strata behaviors. A special geological structure model of the Tongxin mine is established based on the geodynamic division method. The distribution of regional structure stress field is determined by the rock mass stress analysis system. Based on this model, Tongxin mine is divided into five areas with high stress, eight areas with low stress and eight areas with gradient stress. The strong strata behaviors mostly occur in high stress areas. These results could provide guidance to predict the strength of regional or mine pressure and control strata behavior in different areas. 相似文献