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301.
Rill development and soil erosion: a laboratory study of slope and rainfall intensity 总被引:7,自引:0,他引:7
Catherine Berger Marcel Schulze Dirk Rieke‐Zapp Fritz Schlunegger 《地球表面变化过程与地形》2010,35(12):1456-1467
A total of 15 rainfall simulation experiments were conducted in a 1 m by 2 m box varying slope (10, 20, 30%) and rainfall intensity (60, 90, 120 mm h?1). The experiments were performed to study how rill networks initiate and evolve over time under controlled conditions with regard to the treatment variables considered, and to allow for input in a computer simulation model. Runoff and sediment yield samples were collected. Digital elevation models were calculated by means of photogrammetry for several time steps of most experiments. The soil used in the experiments was a basal till derived Cambisol typical for the Swiss Plateau. While significant differences were found for sediment yield, runoff did not vary significantly with treatment combinations. Increasing rainfall intensity had a larger effect on sediment yield than increasing slope. Rill density and energy expenditure decreased with time, suggesting that energy expenditure was a useful parameter to describe the emergence of rill network at the laboratory scale. Copyright © 2010 John Wiley & Sons, Ltd. 相似文献
302.
The distribution of aquatic Heteroptera (Corixidae and Gerromorpha) in three backwater systems of the Austrian Alluvial Forest National Park differing in connectivity to the Danube River was examined at 44 locations between 1999 and 2003. The most common species were Aquarius paludum and Gerris lacustris (Gerridae).Various statistical analyses were used to define the relationship between species occurrence and 15 environmental variables and to test their influences on species distribution. Canonical correspondence analysis suggested that the main environmental gradients were the transitions from water surface richly covered with branches and Lemna and vegetated shoreline, which most species preferred, to open habitats with little shoreline vegetation, which only a few species preferred.This study shows the potential significance of heteropterans as indicator groups for paleopotamic conditions and aquatic habitats with strong terrestrialisation processes. 相似文献
303.
The Molasse Basin of Switzerland evolved through a distinct late Neogene history with initial development as a classic foredeep or foreland basin in response to loading of the lithosphere by the Alpine orogen. In the central and western foreland, the foredeep behaviour was terminated by deformation and uplift of the Jura Mountains in the distal regions of the foredeep. Following the Jura deformation the Plateau Molasse remained largely undeformed as it rode ‘piggy‐back’ style above the decollement feeding displacement into the Jura. Sediment accumulation data for the Molasse suggests that sedimentation in the Plateau Molasse region continued until the basin was inverted at about 5 Ma. We present a mechanical model for this sequence of events in which deformation jumps across much of the basin to the distal Jura because of the dip on the weak evaporitic decollement and the wedge‐shape of the foredeep basin. Subsequently, the Plateau Molasse remained largely undeformed as a result of continued sedimentation in a wedgetop basin, where the physical properties and geometry of the orogenic wedge combine to produce a critical wedge whose critical surface slope would be less than zero and thus should dip towards the Alpine interior. Accommodation space is created over this negative surface–slope segment of the wedge and sedimentation maintains this slope near zero, stabilizing the wedge. We present a simple analytical theory for the necessary conditions for such a ‘negative‐alpha basin’ to develop and be maintained. We compare this theory to the late Neogene evolution of the Alps, Molasse Basin and Jura Mountains and infer physical properties for the decollement. 相似文献
304.
P. Fritz 《Applied Geochemistry》1997,12(6):851-856
Investigations into the suitability of crystalline rock for the long-term containment of high level nuclear waste were initiated in the early 1970s. A significant task was thereby to assess fluid movements to and from potential repositories. This paper focuses on the contributions of J.N. Andrews and J.-Ch. Fontes to this problem and presents some aspects of their work on fluids in crystalline rock environments.Waste repository studies saw major progress with the initiation of the Stripa project in 1977. Andrews joined this project during the first year and participated until its closure in the late 1980s. Fontes' involvement began during the second phase of the project, after the first ideas about the geochemistry and evolution of groundwater encountered in the Stripa granite had been developed. The problems associated with dating of such hydrogeological systems, their geochemical evolution and the question of origin of dissolved salts occupied both of them and their co-workers.Those privileged to participate in the long and lively discussions will remember these times as extremely fruitful. The results are documented in a multitude of international studies where the Stripa ideas were further developed and tested—not only in Sweden. Based on the data from Swedish and other environments with crystalline rock brines, Andrews, Fontes and others had recognised the need to develop at least one additional project designed to clarify major points of uncertainty regarding the age and evolution as well as the origin of saline fluids found in most crystalline rock environments. The untimely death of these two applied geochemists is the reason why these discussions have not (yet) been concluded. 相似文献
305.
Landsliding and sediment flux in the Central Swiss Alps: A photogrammetric study of the Schimbrig landslide, Entlebuch 总被引:2,自引:0,他引:2
Marco Schwab Dirk Rieke-Zapp Heinz Schneider Markus Liniger Fritz Schlunegger 《Geomorphology》2008,97(3-4):392-406
This study explores the effects of hillslope mass failure on the sediment flux in the Waldemme drainage basin, Central Swiss Alps, over decadal time scales. This area is characterized by abundant landslides affecting principally flysch units and is therefore an important sediment source. The analysis concentrates on the Schimbrig landslide that potentially contributes up to 15% to the sediment budget of the Waldemme drainage basin. Volumetric changes are quantified using high-resolution elevation models that were extracted using digital photogrammetric techniques. Sediment discharge data were used to constrain the significance of the landslide for sediment flux in the channel network. The temporal extent of the photogrammetric analysis ranges from 1962 to 1998, including an earth slide event in 1994. The analyses reveal that during periods of low slip rates of the landslide, nearly all of the displaced sediments were eroded and supplied to the channel network. In contrast, during active periods, only a fraction of the displaced landslide mass was exported to the trunk stream. Interestingly, the 1994 earth slide event did not disturb the long-term sediment discharge pattern of the channel network, nor did it influence the sediment flux at a weekly scale. However, suspended sediment pulses correlate with higher-than-average precipitation events. This was especially the case in August 2005 when a storm event (> 100 years return period) triggered several debris flows and earth flows in the whole drainage basin and in the Schimbrig area. This storm did not result in a significant increase in the slip rates of the entire landslide's main body. It is therefore proposed that debris flows and earth flows perform the connectivity between hillslope processes (e.g. landsliding) and the trunk stream during and between phases of landslide activity in this particular setting. 相似文献
306.
Tiago A. Silva Stphanie Girardclos Laura Stutenbecker Maarten Bakker Anna Costa Fritz Schlunegger Stuart N. Lane Peter Molnar Jean‐Luc Loizeau 《Sedimentology》2019,66(3):838-858
Deltas are important coastal sediment accumulation zones in both marine and lacustrine settings. However, currents derived from tides, waves or rivers can transfer that sediment into distal, deep environments, connecting terrestrial and deep marine depozones. The sediment transfer system of the Rhone River in Lake Geneva is composed of a sublacustrine delta, a deeply incised canyon and a distal lobe, which resembles, at a smaller scale, deep‐sea fan systems fed by high discharge rivers. From the comparison of two bathymetric datasets, collected in 1891 and 2014, a sediment budget was calculated for eastern Lake Geneva, based on which sediment distribution patterns were defined. During the past 125 years, sediment deposition occurred mostly in three high sedimentation rate areas: the proximal delta front, the canyon‐levée system and the distal lobe. Mean sedimentation rates in these areas vary from 0·0246 m year?1 (distal lobe) to 0·0737 m year?1 (delta front). Although the delta front–levées–distal lobe complex only comprises 17·0% of the analysed area, it stored 74·9% of the total deposited sediment. Results show that 52·5% of the total sediment stored in this complex was transported toward distal locations through the sublacustrine canyon. Namely, the canyon–levée complex stored 15·9% of the total sediment, while 36·6% was deposited in the distal lobe. The results thus show that in deltaic systems where density currents can occur regularly, a significant proportion of riverine sediment input may be transferred to the canyon‐lobe systems leading to important distal sediment accumulation zones. 相似文献
307.
308.
309.
Slug tests performed using mini‐piezometers with internal diameters as small as 0.43 cm can provide a cost effective tool for hydraulic characterization. We evaluated the hydraulic properties of the apparatus in a laboratory environment and compared those results with field tests of mini‐piezometers installed into locations with varying hydraulic properties. Based on our evaluation, slug tests conducted in mini‐piezometers using the fabrication and installation approach described here are effective within formations where the hydraulic conductivity is less than 1 × 10?3 cm/s. While these constraints limit the potential application of this method, the benefits to this approach are that the installation, measurement, and analysis is cost effective, and the installation can be completed in areas where other (larger diameter) methods might not be possible. Additionally, this methodology could be applied to existing mini‐piezometers previously installed for other purposes. Such analysis of existing installations could be beneficial in interpreting previously collected data (e.g., water‐quality data or hydraulic head data). 相似文献
310.
Ian McCallum Wolfgang Wagner Christiane Schmullius Anatoly Shvidenko Michael Obersteiner Steffen Fritz Sten Nilsson 《Carbon balance and management》2009,4(1):8-14
Production efficiency models (PEMs) are based on the theory of light use efficiency (LUE) which states that a relatively constant
relationship exists between photosynthetic carbon uptake and radiation receipt at the canopy level. Challenges remain however
in the application of the PEM methodology to global net primary productivity (NPP) monitoring. The objectives of this review
are as follows: 1) to describe the general functioning of six PEMs (CASA; GLO-PEM; TURC; C-Fix; MOD17; and BEAMS) identified
in the literature; 2) to review each model to determine potential improvements to the general PEM methodology; 3) to review
the related literature on satellite-based gross primary productivity (GPP) and NPP modeling for additional possibilities for
improvement; and 4) based on this review, propose items for coordinated research. 相似文献