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171.
172.
The extreme diversity of uranium deposits   总被引:10,自引:0,他引:10  
Most available classifications of uranium deposits are based on the characteristics of the host rocks or on the morphology of the ore deposits. The aim of the present paper is to propose the basis for a genetic classification of these deposits. After a short introduction on the geochemical behavior of uranium in fluids and silicate melts and on the main uranium fractionation mechanisms operating in uranium-rich peraluminous, metaluminous, and peralkaline melts, the most recent metallogenic models of the main types of uranium deposits are shortly reviewed.  相似文献   
173.
Surfaces of planets and small bodies of our Solar System are often covered by a layer of granular material that can range from a fine regolith to a gravel-like structure of varying depths. Therefore, the dynamics of granular materials are involved in many events occurring during planetary and small-body evolution thus contributing to their geological properties.We demonstrate that the new adaptation of the parallel N-body hard-sphere code pkdgrav has the capability to model accurately the key features of the collective motion of bidisperse granular materials in a dense regime as a result of shaking. As a stringent test of the numerical code we investigate the complex collective ordering and motion of granular material by direct comparison with laboratory experiments. We demonstrate that, as experimentally observed, the scale of the collective motion increases with increasing small-particle additive concentration.We then extend our investigations to assess how self-gravity and external gravity affect collective motion. In our reduced-gravity simulations both the gravitational conditions and the frequency of the vibrations roughly match the conditions on asteroids subjected to seismic shaking, though real regolith is likely to be much more heterogeneous and less ordered than in our idealised simulations. We also show that collective motion can occur in a granular material under a wide range of inter-particle gravity conditions and in the absence of an external gravitational field. These investigations demonstrate the great interest of being able to simulate conditions that are to relevant planetary science yet unreachable by Earth-based laboratory experiments.  相似文献   
174.
Ice divide–dome behaviour is used for ice sheet mass balance studies and interpretation of ice core records. In order to characterize the historical behaviour (last 400 yr) of Dome C and Talos Dome (East Antarctica), ice velocities have been measured since 1996 using a GPS system, and the palaeo-spatial variability of snow accumulation has been surveyed using snow radar and firn cores. The snow accumulation distribution of both domes indicates distributions of accumulation that are non-symmetrical in relation to dome morphology. Changes in spatial distributions have been observed over the last few centuries, with a decrease in snow accumulation gradient along the wind direction at Talos Dome and a counter-clockwise rotation of accumulation distribution in the northern part of Dome C. Observations at Dome C reveal a significant increase in accumulation since the 1950s, which could correlate to altered snow accumulation patterns due to changes in snowfall trajectory. Snow accumulation mechanisms are different at the two domes: a wind-driven snow accumulation process operates at Talos Dome, whereas snowfall trajectory direction is the main factor at Dome C. Repeated GPS measurements made at Talos Dome have highlighted changes in ice velocity, with a deceleration in the NE portion, acceleration in the SW portion and migration of dome summit, which are apparently correlated with changes in accumulation distribution. The observed behaviour in accumulation and velocity indicates that even the most remote areas of East Antarctica have changed from a decadal to secular scale.  相似文献   
175.
The 20 km2 Galabre catchment belongs to the French network of critical zone observatories (OZCAR; Gaillardet et al., Vadose Zone Journal, 2018, 17(1), 1–24). It is representative of the sedimentary lithology and meteorological forcing found in Mediterranean and mountainous areas. Due to the presence of highly erodible and sloping badlands on various lithologies, the site was instrumented in 2007 to understand the dynamics of suspended sediments (SS) in such areas. Two meteorological stations including measurements of air temperature, wind speed and direction, air moisture, rainfall intensity, raindrop size and velocity distribution were installed both in the upper and lower part of the catchment. At the catchment outlet, a gauging station records the water level, temperature and turbidity (10 min time-step). Stream water samples are collected automatically to estimate SS concentration-turbidity relationships, allowing quantification of SS fluxes with known uncertainty. The sediment samples are further characterized by measuring their particle size distributions and by applying a low-cost sediment fingerprinting approach using spectrocolorimetric tracers. Thus, the contributions of badlands located on different lithologies to total SS flux are quantified at a high temporal resolution, providing the opportunity to better analyse the links between meteorological forcing variability and watershed hydrosedimentary response. The set of measurements was extended to the dissolved phase in 2017. Both stream water electrical conductivity and major ion concentrations are measured each week and every 3 h during storm events. This extension of measurements to the dissolved phase will allow progress in understanding both the origin of the water during the events and the partitioning between particulate and dissolved fluxes of solutes in the critical zone. All data sets are available at https://doi.osug.fr/public/DRAIXBLEONE_GAL/index.html .  相似文献   
176.
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Résumé La simplicité du calcul de la réduction au plan est une des qualités pratiques les plus importantes dans toute projection géodésique. Comme les calculs sont à l'heure actuelle entièrement effectués en coordonnés rectangulaires, la réduction au plan demande à être calculée exclusivement à partir des dits éléments: telle est bien du reste la situation en ce qui concerne la projection de Mercator Transverse, communément employée. Pour la projection conique conforme deLambert, officiellement employée pour la triangulation fran?aise, on obtient une formule commode en introduisant l'aire triangulaire comprise entre le sommet de la projection conique (image du p?le) et les stations AB à relier. Le présent acticle justifie cette formule, décrit son application par la section de Géodésie de l'Institut Géographique National, et spécifie les formules de moyenne à employer: cette note forme un ensemble avec l'article suivant deM. Dufour.
Summary Simplicity of calculation in the plane is one of the most important characteristics of any surveyor's projection. Since all calculation is today carried out in terms of rectangular coordinates, any reduction to the plane should involve only these coordinates: and this is, in fact, the situation in the commonly employed Transverse Mercator projection. For theLambert Conical orthomorphic projection, officially used for the French triangulation, a convenient formula is obtained in terms of the area of the triangle formed by the two points concerned and the vertex of the projection (which represents the pole in the plane). This paper justifies the use of the formula; describes its application by the Institut Géographique National; and discusses the different mean value formulae which are suited to the various grades of accuracy desired. This paper should be considered together with that ofM. Dufour.

Zusammenfassung In jeder geod?tischen Projektion besteht das Haupterfordernis für eine praktische Durchführung darin, da? die Berechnung der Reduktionen auf die Ebene m?glichst einfach sei. Da gegenw?rtig alle Rechnungen mit Hilfe von rechtwinkligen Koordinaten durchgeführt werden, mu? die Reduktion auf die Ebene ausschlie?lich von den genannten Elementen ausgehen. So liegen jedenfalls die Dinge bei der gemeinhin verwendeten Transversalen Mercator-Projektion. Für die Lambertsche konforme Kegelprojektion, die amtliche Projektion für das franz?sische Dreiecksnetz, erh?lt man eine zweckdienliche Formel, wenn man die Dreiecksfl?che zwischen dem Scheitelpunkt der Kegelprojektion (Bildpunkt des Poles) und den zu verbindenden Stationen A B benutzt. Der vorliegende Artikel begründet diese Formel, beschreibt ihre Verwendung durch die Geod?tische Abteilung des Franz?sischen Instituts für Geographie (Section de Géodésie de l'Institut Géographique National) und erl?utert die zu verwendenden Mittelwert-Formeln. Der Aufsatz geh?rt mit dem folgenden vonM. Dufour geschriebenen eng zusammen.

Resumen La sencillez del cálculo de la reducción al plano es una de las condiciones prácticas más importantes en toda proyección geodésica. Como actualmente están efectuados los cálculos en coordenadas rectangulares, la reducción al plano exige ser calculada exclusivamente a partir de dichos elementos; tal es por lo demás la situación en lo que concierne a la proyección deMercator Transverse, comúnmente empleada. Para la proyección cónica conforme deLambert, oficialmente empleada para la triangulación francesa, se obtiene una fórmula cómoda introduciendo el área triangular comprendida entre el vértice de la proyección cónica (imagen del polo) y las estaciones A y B a enlazar. El presente articulo justifica esta fórmula, y describe su aplicación por la Sección de Geodesia del Instituto Geogróafico Nacional.

Sommario La semplicità del calcolo delle riduzioni al piano è una delle qualià pratiche più importanti in ogni proiezione geodetica. Poichè attualmente tutti i calcoli di una triangolazione vengono effettuati sul piano, in coordinate rettangolari, è essenziale che tali riduzioni possano avvenire facendo ricorso ai soli elementi piani; come accade in particolare per la proiezione trasversa di Mercatore. Per la proiezione conica conforme diLambert, usata ufficialmente uella triangolazione francese, si ottiene una formula comoda per la riduzione alla corda introducendo l'area del triangolo formalo dall' immagine del polo, e dai due punti da collegare. L'articolo giustifica questa formula, ne descrive la sua applicazione da parte della Sezione Geodetica dell' Istituto Geografico Nazionale, e precisa le formule da impiegare. Esso è collegato con l'articolo seguente del sig.Dufour, col quale forma un tutto unico.
  相似文献   
178.
Defining temperature at depth to identify geothermal resources relies on the evaluation of the Earth heat flow based on equilibrium temperature measurements as well as thermal conductivity and heat generation rate assessment. Such high-quality geothermal data can be sparse over the region of interest. This is the case of the St. Lawrence Lowlands sedimentary basin covering 20,000 km2 to the south of Québec, Canada, and enclosing only three wells up to a depth of 500 m with equilibrium heat flow measurements. However, more than 250 oil and gas exploration wells have been drilled in this area, providing for this study (parce que c'est 93 sinon) 81 locations with bottom-hole temperature up to a depth of 4300 m, however, not at equilibrium. Analyzing these data with respect to the deep geothermal resource potential of this sedimentary basin requires evaluating the thermal conductivity and heat generation rate of its geological units to properly extrapolate temperature downward. This was done by compiling literature and recent thermal conductivity measurements in outcrop and core samples as well as new heat generation rate estimates from spectral gamma ray logs to establish a first thermal assessment of geological units deep down into the basin. The mean thermal conductivity of the thermal units varies from 2.5 to 6.3 W/m·K, with peak values in the basal sandstones, while the heat generation rate varies from 1.6 to 0.3 µW/m3, decreasing from the upper caprocks toward the base of the sequence. After correcting the bottom-hole temperatures for drilling disturbance with the Harrison correction and subsequently for paleoclimate variations, results indicate a mean geothermal gradient of 23.1 °C/km, varying from 14 to 40 °C/km. Evaluating the basin thermal state from oil and gas data is a significant challenge facilitated by an understanding of its thermal properties.  相似文献   
179.
This article shows the potential impact on global GHG emissions in 2030, if all countries were to implement sectoral climate policies similar to successful examples already implemented elsewhere. This assessment was represented in the IMAGE and GLOBIOM/G4M models by replicating the impact of successful national policies at the sector level in all world regions. The first step was to select successful policies in nine policy areas. In the second step, the impact on the energy and land-use systems or GHG emissions was identified and translated into model parameters, assuming that it would be possible to translate the impacts of the policies to other countries. As a result, projected annual GHG emission levels would be about 50 GtCO2e by 2030 (2% above 2010 levels), compared to the 60 GtCO2e in the ‘current policies’ scenario. Most reductions are achieved in the electricity sector through expanding renewable energy, followed by the reduction of fluorinated gases, reducing venting and flaring in oil and gas production, and improving industry efficiency. Materializing the calculated mitigation potential might not be as straightforward given different country priorities, policy preferences and circumstances.

Key policy insights

  • Considerable emissions reductions globally would be possible, if a selection of successful policies were replicated and implemented in all countries worldwide.

  • This would significantly reduce, but not close, the emissions gap with a 2°C pathway.

  • From the selection of successful policies evaluated in this study, those implemented in the sector ‘electricity supply’ have the highest impact on global emissions compared to the ‘current policies’ scenario.

  • Replicating the impact of these policies worldwide could lead to emission and energy trends in the renewable electricity, passenger transport, industry (including fluorinated gases) and buildings sector, that are close to those in a 2°C scenario.

  • Using successful policies and translating these to policy impact per sector is a more reality-based alternative to most mitigation pathways, which need to make theoretical assumptions on policy cost-effectiveness.

  相似文献   
180.
Light element nucleosynthesis is an important chapter of nuclear astrophysics. Specifically, the rare and fragile light nuclei Lithium, Beryllium and Boron (LiBeB) are not generated in the normal course of stellar nucleosynthesis (except 7Li) and are, in fact, destroyed in stellar interiors. This characteristic is reflected in the low abundance of these simple species. Up to recently, the most plausible interpretation was that Galactic Cosmic Rays (GCR) interact with interstellar CNO to form LiBeB. Other origins have been also identified: primordial and stellar (7Li) and supernova neutrino spallation (7Li and 11B). In contrast, 9Be, 10B and 6Li are pure spallative products. This last isotope presents a special interest since the 6Li/7Li ratio has been measured recently in a few halo stars offering a new constraint on the early galactic evolution of light elements. Optical measurements of the beryllium and boron abundances in halo stars have been achieved by the 10 meter KECK telescope and the Hubble Space Telescope. These observations indicate a quasi linear correlation between Be and B vs Fe, at least at low metallicity, which, at first sight, is contradictory to a dominating GCR origin of the light elements which predicts a quadratic relationship. As a consequence, the theory of the origin and evolution of LiBeB nuclei has to be refined. Aside GCRs, which are accelerated in the general interstellar medium (ISM) and create LiBeB through the break up of CNO by fast protons and alphas, Wolf-Rayet stars (WR) and core collapse supernovae (SNII) grouped in superbubbles could produce copious amounts of light elements via the fragmentation in flight of rapid carbon and oxygen nuclei colliding with H and He in the ISM. In this case, LiBeB would be produced independently of the interstellar medium chemical composition and thus a primary origin is expected. These different processes are discussed in the framework of a galactic evolutionary model. More spectroscopic observations (specifically of O, Fe, Li, Be, B) in halo stars are required for a better understanding of the relative contribution of the various mechanisms. Future tests on the injection and acceleration of nuclei by supernovae and Wolf Rayet relying on gamma-ray line astronomy will be invoked in the perspective of the European INTEGRAL satellite. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   
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