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101.
102.
Eugene C. Cordero Wittaya Kessomkiat John Abatzoglou Steven A. Mauget 《Climatic change》2011,108(1-2):357-382
Regional changes in California surface temperatures over the last 80 years are analyzed using station data from the US Historical Climate Network and the National Weather Service Cooperative Network. Statistical analyses using annual and seasonal temperature data over the last 80 years show distinctly different spatial and temporal patterns in trends of maximum temperature (Tmax) compared to trends of minimum temperature (Tmin). For trends computed between 1918 and 2006, the rate of warming in Tmin is greater than that of Tmax. Trends computed since 1970 show an amplified warming rate compared to trends computed from 1918, and the rate of warming is comparable between Tmin and Tmax. This is especially true in the southern deserts, where warming trends during spring (March?CMay) are exceptionally large. While observations show coherent statewide positive trends in Tmin, trends in Tmax vary on finer spatial and temporal scales. Accompanying the observed statewide warming from 1970 to 2006, regional cooling trends in Tmax are observed during winter and summer. These signatures of regional temperature change suggest that a collection of different forcing mechanisms or feedback processes must be present to produce these responses. 相似文献
103.
The monthly variations of below- and aboveground biomass of Spartina alterniflora were documented for a south Louisiana salt marsh from March 2004 to March 2005, and in March 2006 and 2007. The annual production rate above- and belowground was 1821 and 11,676 g m?2, respectively (Smalley method), and the annual production rate per biomass belowground was 10.7 g dry weight?1, which are highs along the latitudinal distributions of the plant’s range. The average root + rhizome/shoot ratio (R&R/S) was 2.6:1, which is lower than the R&R/S ratios of 4 to 5.1 reported for Spartina sp. marshes in the northeastern US. The belowground biomass increased from July to September and fluctuated between October and November, after which it declined until February when the growing season began. The belowground biomass was dominated by rhizomes, which declined precipitously in spring and then rose to a seasonal high in the month before declining again as the late summer rise in inflorescence began. Over half of the root biomass in a 30-cm soil profile was in the upper 10 cm, and in the 10- to 20-cm profile for rhizomes. The maximum March biomass above- and belowground was four to five times that of the minimum biomass over the four sampling years. The net standing stock (NSS) of N and P in live biomass aboveground compared to that in the belowground biomass was about 1.7 times higher and equal, respectively, but the NSS of N and P for the live + dead biomass was about six times higher belowground. The average nitrogen/phosphorous molar ratios of 16:1 aboveground is in agreement with the often tested N limitation of biomass accumulation aboveground, whereas the 37:1 belowground ratio suggests that there is an influence of P on R&R foraging for P belowground. Some implications for management and restoration are, in part, that salt marshes should be evaluated and examined using information on the plant’s physiology and production both below- and aboveground. 相似文献
104.
105.
Characteristics of the ocean state simulated with the Finite-Element Sea-Ice Ocean Model (FESOM) under the normalized year
forcing of Coordinated Ocean-ice Reference Experiments (COREs; Griffies et al., Ocean Model 26:1–46, 2009) are compared with those of other models participating in COREs. In contrast to these models, FESOM is run on an unstructured
mesh (with resolution varying between 20 and 150 km). It is shown that the ocean state simulated by FESOM is in most cases
within the spread of other models, demonstrating that the unstructured mesh technology has reached the stage when it becomes
a reliable tool for studying the large-scale ocean general circulation. 相似文献
106.
Pascal Chardonnet Valery Chechetkin Lev Titarchuk 《Astrophysics and Space Science》2010,325(2):153-161
We present a model of a gamma-ray burst (GRB) related to “very massive” stars. In the framework of our model, the GRB phenomenon
is a result of helium burning in degenerate conditions in a massive star (≳130 M
⊙), in which the thermal nuclear burning occurs in the deflagration regime and has a pulsating temporal pattern. The shock
runs away from the burning (reaction) zone, which leads to the development of a coronal outflow (jet-like) structure. In our
scenario the GRB observable prompt fast rise and decay part can be a result of photon propagation through the hot corona (Comptonization
photosphere) of the star. On the other hand, the GRB afterglow is a cooling phase of the expanding and outflowing envelope.
Presumably, the X-ray part of the GRB emergent spectrum is formed due to upscattering of soft photons of outer layers of the
star off hot coronal electrons, and thus it should have a specific shape of the Comptonization spectrum. 相似文献
107.
Natalia V. Lubnina Satu Mertanen Ulf Söderlund Svetlana Bogdanova Tatiana I. Vasilieva Dmitry Frank-Kamenetsky 《Precambrian Research》2010
Palaeomagnetic and geochronological studies on mafic rocks in the Lake Ladoga region in South Russian Karelia provide a new, reliably dated Mesoproterozoic key paleopole for the East European Craton (Baltica). U–Pb dating on baddeleyite gives a crystallisation age of 1452 ± 12 Ma for one of the studied dolerite dykes. A mean palaeomagnetic pole for the Mesoproterozoic dolerite dykes, Valaam sill and Salmi basalts yields a paleopole at 15.2°N, 177.1°E, A95 = 5.5°. Positive baked contact test for the dolerite dykes and positive reversal test for the Salmi basalts and for the dykes confirm the primary nature of the magnetisation. Comparison of this Baltica palaeopole with coeval paleomagnetic data for Laurentia and Siberia provides a revised palaeoposition of these cratons. The results verify that the East European Craton, Laurentia and Siberia were part of the supercontinent Columbia from the Late Palaeoproterozoic to the Middle Neoproterozoic. 相似文献
108.
The Ereendavaa Range (north-eastern Mongolia): an additional argument for Mesozoic extension throughout eastern Asia 总被引:3,自引:0,他引:3
Yannick Daoudene Denis Gapais Patrick Ledru Alain Cocherie Sébastien Hocquet Tatiana V. Donskaya 《International Journal of Earth Sciences》2009,98(6):1381-1393
Mesozoic rift basins locally bounding metamorphic core complexes have been recognized in Transbaikalia and northern China.
Numerous basement outcrops located between these two regions, in eastern Mongolia, are considered as pre-Palaeozoic in age.
One of these, the Ereendavaa Range, appears as a gneissic core marked by amphibolite-facies metamorphic conditions. The range
is overlain to the NW by the unmetamorphosed Mesozoic Onon Basin. Below the basin, the upper part of the range consists of
a gently NW-dipping shear zone associated with top-to-the-NW motion. The structural pattern is consistent with syn-extensional
exhumation of the range. Preliminary geochronological data indicate that the shear zone is late Jurassic to early Cretaceous
in age, coeval with the Onon Basin. These new data from eastern Mongolia constitute a link between Transbaikalia and northern
China, indicating that NW–SE extensional Mesozoic tectonics occurred throughout the entire region. 相似文献
109.
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110.