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1.
ABSTRACT

Dealing with uncertainty is key in socio-hydrological analysis. As such, thinking through what uncertainties mean for whom and when is key. This discussion contribution introduces three issues related to defining uncertainties. The first issue deals with the problem of defining uncertainty as a given external reality. The second issue deals with who decides about relevant uncertainties. The third issue deals with the issue whether coupled human-hydrological systems can be seen as existing on their own. Finally, the text provides two examples of hydrological research that try to be explicit about our dealing with multiple (interpretations of) realities.  相似文献   
2.
Abstract— Marine impacts are one category of crater formation in volatile targets. At target water depths exceeding the diameter of the impactor, the zones of vaporization, melting, and excavation of the standard land‐target cratering model develop partially or entirely in the water column. The part of the crater that has a potential of being preserved (seafloor crater) may to a great extent be formed by material emplacement and excavation processes that are very different from land‐target craters. These processes include a high‐energy, water‐jet‐driven excavation flow. At greater water depths, the difference in strength of the target layers causes a concentric crater to evolve. The crater consists of a wide water cavity with a shallow excavation flow along the seabed surrounding a nested, deeper crater in the basement. The modification of the crater is likewise influenced by the water through its forceful resurge to fill the cavity in the water mass and the seafloor. The resurge flow is strongly erosive and incorporates both ejecta and rip‐up material from the seabed surrounding the excavated crater. A combination of field observations and impact experiments has helped us analyze the processes affecting the zone between the basement crater and the maximum extent of the water cavity. The resurge erosion is facilitated by fragmentation of the upper parts of the solid target caused by a) spallation and b) vibrations from the shallow excavation flow and, subsequently, c) the vertical collapse of the water cavity rim wall. In addition, poorly consolidated and saturated sediments may collapse extensively, possibly aided by a violent expansion of the pore water volume when it turns into a spray during passage of the rarefaction wave. This process may also occur at impacts into water‐saturated targets without an upper layer of seawater present. Our results have implications for impacts on both Earth and Mars, and possibly anywhere in the solar system where volatiles exist/have existed in the upper part of the target.  相似文献   
3.
For development of embryo dunes on the highly dynamic land–sea boundary, summer growth and the absence of winter erosion are essential. Other than that, however, we know little about the specific conditions that favour embryo dune development. This study explores the boundary conditions for early dune development to enable better predictions of natural dune expansion. Using a 30 year time series of aerial photographs of 33 sites along the Dutch coast, we assessed the influence of beach morphology (beach width and tidal range), meteorological conditions (storm characteristics, wind speed, growing season precipitation, and temperature), and sand nourishment on early dune development. We examined the presence and area of embryo dunes in relation to beach width and tidal range, and compared changes in embryo dune area to meteorological conditions and whether sand nourishment had been applied. We found that the presence and area of embryo dunes increased with increasing beach width. Over time, embryo dune area was negatively correlated with storm intensity and frequency. Embryo dune area was positively correlated with precipitation in the growing season and sand nourishment. Embryo dune area increased in periods of low storm frequency and in wet summers, and decreased in periods of high storm frequency or intensity. We conclude that beach morphology is highly influential in determining the potential for new dune development, and wide beaches enable development of larger embryo dune fields. Sand nourishment stimulates dune development by increasing beach width. Finally, weather conditions and non‐interrupted sequences of years without high‐intensity storms determine whether progressive dune development will take place. Copyright © 2017 John Wiley & Sons, Ltd.  相似文献   
4.
The Lockne impact crater south of Östersund formed in the early Middle Cambrian with a diameter of 7 km. It is identified by its rim wall of crushed Precambrian basement granite, by fragments of impact melt, and by grains of shocked quartz. The exceptional preservation, in particular of the rim wall, is due to a complicated geological history, the first stage of which consisted of burial by marine sediments. This stage lasted until the Middle Ordovician, or over 50 million years. An early Caradoc lowering of the sea-level may have induced debris flows that stripped the rim wall of much of its sedimentary cover. Because normal marine sedimentation recommenced soon after this event, the structure was not seriously damaged, as it was buried again. The Caledonian orogeny emplaced an overthrust nappe as ultimate protection, which was removed by a recent erosion episode from all but the center of the structure.Structures formed by the impact of extraterrestrial bodies are very rare throughout much of Europe, because such structures are neither well preserved nor displayed in young mountain belts or sedimentary basins. However, northern Europe has several ascertained structures of this kind (Svensson &Wickman, 1965;Svensson, 1968;Bruun &Dahlman, 1982;Kala et al., 1984;Flodén et al., 1986;Wickman, 1988). Unfortunately, the hitherto known structures are either poorly preserved or hidden by younger deposits. We are reporting the discovery of a well-preserved exposed and accessible impact structure that has escaped the notice of geologists although important features of it have been described and puzzled over by generations of researchers (Wiman, 1900;Hadding, 1927;Thorslund, 1940;Lindström et al., 1983).The structure is located in the Lockne area to the south of Östersund in central Sweden. It has a diameter of 7 km and its center is near Tramsta on the northwest shore of Lake Locknesjön (Fig. 1). Its middle is covered by folded Lower to Middle Ordovician Orthoceratite Limestone with the sheared Lower Ordovician Töyen Shale at its base. This local expanse of deformed rock is the remainder after erosion of an extensive nappe of overthrust rocks emplaced during the Caledonian orogeny. The good preservation of the impact structure is due to the nappe cover, which had to be removed before erosion could attack the underlying structures.The rim of the impact crater is outlined by a wall of strongly shattered fragments of Proterozoic crystalline rocks (Fig. 2), which formed the local bedrock (Strömberg et al., 1984) at the time of impact. The rim wall is best preserved along the western part of the structure. It was referred to as »arkose-like breccia« byThorslund (1940), who interpreted it as the result of continental weathering, but the components rather show evidence of intense crushing than of weathering (Simon, 1987a). The »arkose-like breccia« does not contain components derived from the lower Palaeozoic deposits of the area.  相似文献   
5.
In this paper we discuss hydraulic behavior of irrigation infrastructure within a context of spatially distributed power relations in an Argentinean irrigation system. In the Río Dulce basin, the irrigation area known as the Proyecto Río Dulce (PRD, command area 350,000 hectares) is the main irrigated area. An interesting characteristic of the PRD is that the larger landowners are mainly situated in tail end areas. Despite this potentially disadvantageous position, downstream farmers do not encounter problems in terms of water availability. This should not be regarded as self-evident: the hydraulic properties of the canals induce a need for downstream farmers to take deliberate action to ensure proper water delivery to their farms. When upstream farmers do not irrigate, too much water can flow downstream; when they irrigate too much, or manipulate cross regulators, downstream water scarcity can be the result; when canals are not maintained, extensive plant growth will increase hydraulic resistance and decrease discharges. It is not a coincidence that the downstream farmers invest heavily in canal operation and maintenance. These investments appear to be appropriate, as larger farmers tend to irrigate much more on average, compared to the smaller farmers upstream. The Argentinean case brings up issues on the structuring effects of irrigation systems, which need stronger theoretical understanding.  相似文献   
6.
Abstract— The Lockne impact crater in central Sweden, with a diameter of about 7 km, formed in the mid‐Ordovician in a marine environment that was deeper than present shelf seas. The present dip of the so‐called sub‐Cambrian peneplain in the target area of the impact is about 0.85° toward the northwest. The peneplain is cut by a set of northwest‐striking, nearly vertical faults with a throw of up to just over 100 m, collectively. The identification of the peneplain and its deformation by faulting allows us to infer that the part of the crater that is exposed to the east of Lake Locknesjön has been lowered by about 100 m relative to parts exposed to the west of the lake and that it has, therefore, been spared from significant erosion. Therefore, the preservation of the whole crater is even better than was assumed in previous work. The peneplain extends to 600–700 m from the rim of the inner crater. Hence, the structural uplift of the rim is quite subdued compared to the craters that formed on land.  相似文献   
7.
Zusammenfassung Die Decken des Ostrandes der skandinavischen Kaledoniden wurden fast horizontal, hauptsächlich gegen SE, überschoben. Die fast horizontale Lage der Tektonite erleichtert die geometrische Analyse des regionalen Gefüges. Orientierungen von rund 20 000 Kleinstrukturen verschiedener Arten sind in 15 kleinen Gebieten längs eines Abschnittes der Gebirgskette möglichst exakt eingemessen und lokalisiert worden. Die Kleinstrukturen gruppieren sich um bestimmte Orientierungsmaxima, von denen einige mehr oder weniger häufig in sämtlichen Gebieten vertreten sind. Kleinfalten von gewissen Orientierungen vergieren nur in eine Richtung. Andere Gruppen von Kleinfalten sind bezüglich der Vergenzrichtung indifferent. Somit bestehen verschiedene Teilgefüge, die in diesem Aufsatz mittels einer Art Korrelationmatrize aufeinander bezogen werden, wodurch sie auch schärfer definiert werden können. Die tektonischen Bewegungen fanden in verschiedene, ziemlich scharf voneinander getrennte Richtungen statt.  相似文献   
8.
Zusammenfassung Die kambro-silurische Schichtenfolge des baltischen Schildes wurde während eines großen Transgressions-Regressions-Zyklus gebildet. Das Unterkambrium besteht vorwiegend aus littoralen bis neritischen Quarziten. Die Gesamtmächtigkeit beträgt bis etwa 200m. Im Mittelkambrium breitet sich die Alaunschiefer-Fazies vom W her aus. Glaukonitische und phosphoritreiche Kondensationshorizonte können ganze Stufen vertreten. Wo dünne, bankige Kalke auftreten, enthalten diese Diskontinuitäts- (Korrosions-) Flächen. Das geringmächtige (0–16m) Oberkambrium besteht durchweg aus Alaunschiefern, schwarzen, weichen Schiefern, die sehr reich an Pyrit und organischen Verbindungen sind. Spurenelemente wie V und U können angereichert sein. Bezeichnend sind riesige Knollen von bituminösem Kalk. Die Fauna kann äußerst individuenreich sein, wobei in der Regel fast nur eine Art in einem Horizont vertreten ist. Diese Fazies ist vom nördlichsten Lappland bis Schonen verbreitet. Das Unterordovizium kann mit Alaunschiefern anfangen. Kräftige Pyritisierung und Phosphat-Anreicherung ist hier häufig. Schon im Tremadoc fing die Ablagerung kalkiger, zunächst glaukonitreicher Arthropodenschlicke an. Die Ablagerung dieser Sedimente erfolgte durchschnittlich mit bis 1 mm/1000 J., die der nicht-kalkigen Anteile um eine Zehnerpotenz langsamer. Häufige, stratigra phisch unbedeutende Sedimentationsunterbrechungen sind mit der Lithifizierung der Kalkbänke und Anreicherung verschiedener, eisenhaltiger Minerale verknüpft. Die Sedimentationsgeschwindigkeit der kalkigen und tonigen Komponenten nahm im jüngeren Mittelordovizium allmählich zu. Es treten im Caradoc isolierte Riffhügel mit Kalkalgen und reicher Fauna auf. Diese Tendenz bestand noch im Oberordovizium. Die weite Verbreitung von graptolithenführenden Schiefern und Mergeln im Llandovery deutet wohl auf eine Umkehr der Steigungstendenz. Vom jüngeren Llandovery ab dominieren neritische Sedimente. Auf Gotland lagern sich Mergel und Bioklastika mit koloniebildenden Benthonten und Kalkalgen ab. Im Ludlow fängt die Regression an. Sandsteine kommen gegen Ende des Zyklus besonders reichlich vor.
The Cambro-Silurian of the Baltic Shield was deposited during a transgressiveregressive cycle that lasted for about 175 m.y. The Lower Cambrian rests unconformably on strongly denuded Precambrian. Its lower and main part consists of up to 200 m thick quartzitic sandstone with evidence of littoral and neritic environments. Slowing deposition led to the formation of thin, more or less calcareous shales with trilobites. In the Middle Cambrian a black shale facies spread from the W. Glauconite and phosphorite occur at intervals of condensed sedimentation. There are a few thin layers of bedded limestone. The extensive Upper Cambrian of the Baltic Shield proper has a maximum thickness of about 16 m. It consists exclusively of black, bituminous shale with large spheroids of black limestone. Clay minerals may be subordinate, pyrite and organic C occur abundantly, and some levels are enriched in U and V as trace elements. The fauna may be extremely rich in individuals. However, it may be formed entirely of one or two species of olenid trilobites. There is no bioturbation. Condensation and subsolution occur at some levels. The Lower Ordovician may begin with alum shale. In some areas thin clastics are interspersed, without clear evidence of a regression. Enrichment with sulphides and phosphorite commonly occurs. The rate of sedimentation was further reduced. Calcareous arthropod oozes accumulated from the late Tremadocian to the early Caradocian at an average rate below 1 mm/1000 years. The noncalcareous components were deposited about ten times slower. Ferrugineous minerals (glauconite, hematite, chamosite, pyrite, etc.) were deposited as granules, pellets, and crusts. Subsolution and early litruncation occurred frequently. The fauna is commonly sparse in sessile benthos; much of it seems to have been pelagic. In the Middle and Upper Ordovician sedimentation speeded up somewhat. In the beds corresponding to the Caradocian and Ashgillian of the British sequence there are two generations of reef limestones in which algae are involved. These are taken as evidence of a general shallowing trend with oscillations of the sea-level. Locally, temporary emergence took place at the end of the Ordovician. The Llandoverian graptolite shales indicate renewed subsidence. The varied, calcareous neritic facies starting in the Upper Llandoverian indicates the full compensation of a considerable subsidence by sedimentation. Sessile benthos and calcareous algae were abundant during this stage, which lasted till near the end of the Silurian. The cycle ended with general regression accompanied by the formation of semi-continental sandstones.

Résumé La succession cambro-silurienne du Boucher Baltique fut déposée pendant un grand-cycle transgressif-regressif. Le cambrien inférieur consiste principalement en quartzites littoraux et néritiques. Dans le cambrien moyen un facies de schistes noirs se répand progressivement de l'Ouest. A certains horizons, la sédimentation condensée, accompagnée de glauconie et de phosphorite, représente des étages entiers. Il y a aussi de minces horizons de calcaire lité, à traces de subsolution. Le cambrien supérieur (0–16m) consiste exclusivement en schistes noirs, enrichis en pyrite et C organique. U et V sont les plus notables parmi les éléments mineurs. Il y a de très fréquents sphéroÏdes de calcaire bitumineux. La faune, excessivement riche en individus (fonction plutÔt de l'extréme lenteur de toute sédimentation abiogène), est d'autant plus spécialisée et pauvre en espèces. La distribution de ce facies monotone est vaste. L'ordovicien inférieur peut commencer avec le mÊme facies schisteux. Il comporte à sa base des horizons fortement enrichis en pyrite et phosphorite. La sédimentation des vases carbonatiques à arthropodes a commencé déjà dans le trémadocien. Ces sédiments sont fréquemment glauconieux. D'autres minéraux ferrugineux charactérisent différents niveaux de ces dépÔts. La vitesse de sédimentation des vases à arthropodes a été très lente: moins de 1 mm/1000 ans en moyenne pour les composants carbonatiques, moins encore pour les abiogènes. Le plus souvent, les couches sont séparées par de surfaces de discontinuité, formées par la dissolution sous-marine de carbonate. L'ordovicien moyen et supérieur présentent une sédimentation peu à peu accélérée. Dans le caradocien et l'ashgillien il y a deux générations de récifs à polypiers et algues. Les dépÔts llandovériens — schistes pélagiques à graptolites — indiquent le renouvellement de la tendance subsidente. Dès le llandovérien supérieur il s'y installe un facies néritique, marno-calcaire, à faune abondante et variée. Vers le fin du silurien le Bouclier Baltique fut mis à sec. Des dépÔts sableux marquent la fin du grand-cycle.

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  相似文献   
9.
Ancient Peruvian irrigation systems have been studied extensively, but much remains unknown about technical and hydrological aspects of these irrigation systems. The Pampa de Chaparrí irrigation system in Peru is used as an example to show how modeling approaches for hydrological and hydraulic features of irrigation can yield results to improve our understanding of irrigation in the area. Analysis focuses on water availability compared demand, the way available water may have been applied to crops and whether the water needed could be delivered through the canal system. Results suggest that on the Pampa some 2500 hectares may have been cultivated within certain security limits for acceptable yields. The rhythm with which the irrigation requirement was applied to crops most likely influenced yields and thus food security. Furthermore, the influence of groundwater on crop growth may have been considerable. The hydraulic behavior of the irrigation system suggests that it should not be taken for granted that theoretically required water flows could actually be diverted and/or distributed to water users. The many questions coming out of the results define important items for a joint research agenda of archeologists and irrigation scientists.  相似文献   
10.
ABSTRACT

Dealing with uncertainty is key in socio-hydrological analysis. As such, thinking through what uncertainties mean for whom and when is key. This discussion contribution introduces three issues related to defining uncertainties. The first issue deals with the problem of defining uncertainty as a given external reality. The second issue deals with who decides about relevant uncertainties. The third issue deals with the issue whether coupled human-hydrological systems can be seen as existing on their own. Finally, the text provides two examples of hydrological research that try to be explicit about our dealing with multiple (interpretations of) realities.  相似文献   
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