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The nature of energy-flux transitions during the onset of midlatitude spring has not been widely examined, despite their critical implications for global-scale biospheric measures and climate change. Further conventional assessment of these phenomena across multiple locations is restricted by satellite-derived data limitations, and the paucity of surface measurement sites. In this paper, we explore a new phenology-based strategy for evaluating the spring surface energy-balance shift that can address these concerns. Our technique can reflect native-species responses and atmospheric surface layer change at a variety of sites, using synoptic-scale first leaf and first bloom phenology models. We test the approach at three locations with diverse climates, and within a group of stations in the state of Oklahoma, which has moderate climate variations across an east-to-west gradient. The results show that the onset of spring in midlatitudes is a modally abrupt (rather than gradual) seasonal transition in terms of energy balance (sensible and latent heat levels) and carbon-flux change that can be linked directly to vegetation phenology. The consistent temporal pattern and magnitude of flux variations across diverse sites suggest that this technique has potential as a proxy for spring energy-balance change at many locations. [Key words: phenology, spring, energy balance, North America.] 相似文献
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Michael O. Schwartz 《Environmental Earth Sciences》2009,59(2):277-286
The medium-level radioactive waste deposited in the Asse 2 salt mine, Germany, has a total activity of 1.2 × 1015 Bq (1 January 2002). The waste lies in a former mining chamber on the −511 m mining level close to the contact between the
Mesozoic country rock and the Zechstein salt dome. The Mesozoic country rock is strongly faulted but the geometry of the fault
pattern is incompletely known. Two tectonic cases are considered: a pessimistic case, which assumes that the radioactive source
is linked to the surface by a single fault, and an optimistic case, which assumes that the radioactive source is not connected
to any fault at all. The potential groundwater contamination by radioactive fluids expelled from the cavity is simulated with
the TOUGH2 code for periods of up to 6,000 years, when the potential contamination reaches its greatest vertical extent. Two
types of driving forces are considered: convergence of the rock salt surrounding the cavity and generation of H2 gas by the corrosion of iron, steel and other metallic components of the waste at low O2 fugacities. Rock-salt creep has the greatest potential impact, as it leads to a radioactive plume whose 1 Bq/L activity contour
rises up to 240 m below the surface in the pessimistic tectonic case. The value of the model for the assessment of the environmental
risk is limited. The knowledge of the hydrogeological situation is incomplete and the pessimistic tectonic case may not be
pessimistic enough for a realistic worst-case scenario. 相似文献
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Sediment cores from the Great Lakes of North America and the Bodensee (Lake Constance) were analysed for purine and pyrimidine contents and total organic carbon. Lakes subject to recent cultural eutrophication showed steep increases in both organic carbon and purine and pyrimidine concentrations in the recently deposited sediments. Analytical results for Lake Huron (oligotrophic) and for a highly eutrophic area of the Bodensee (Gnadensee) appeared remarkably similar, in that only gradual, linear increases were observed in the total organic carbon curves. The curves for total purines and pyrimidines were also less steep for these cores as compared to the others studied. A possible explanation is that both areas represent lakes with no serious, recent changes in productivity. Uracil was found to decrease in concentration faster than any other purine or pyrimidine in the first few centimeters of all cores, supporting previous suggestions of more rapid turnover of this pyrimidine in sediments. 相似文献
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Slowness domain offset and traveltime approximations in layered vertical transversely isotropic media 下载免费PDF全文
Considering horizontally layered transversely isotropic media with vertical symmetry axis and all types of pure‐mode and converted waves we present a new wide‐angle series approximation for the kinematical characteristics of reflected waves: horizontal offset, intercept time, and total reflection traveltime as functions of horizontal slowness. The method is based on combining (gluing) both zero‐offset and (large) finite‐offset series coefficients. The horizontal slowness is bounded by the critical value, characterised by nearly horizontal propagation within the layer with the highest horizontal velocity. The suggested approximation uses five parameters to approximate the offset, six parameters to approximate the intercept time or the traveltime, and seven parameters to approximate any two or all three kinematical characteristics. Overall, the method is very accurate for pure‐mode compressional waves and shear waves polarised in the horizontal plane and for converted waves. The application of the method to pure‐mode shear waves polarised in the vertical plane is limited due to cusps and triplications. To demonstrate the high accuracy of the method, we consider a synthetic, multi‐layer model, and we plot the normalised errors with respect to numerical ray tracing. 相似文献