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91.
Reconstruction of paleocoastlines for the northwestern South China Sea since the Last Glacial Maximum 总被引:1,自引:0,他引:1
The range of relative sea level rise in the northwestern South China Sea since the Last Glacial Maximum was over 100 m. As
a result, lowland regions including the Northeast Vietnam coast, Beibu Gulf, and South China coast experienced an evolution
from land to sea. Based on the principle of reconstructing paleogeography and using recent digital elevation model, relative
sea level curves, and sediment accumulation data, this paper presents a series of paleogeographic scenarios back to 20 cal.
ka BP for the northwestern South China Sea. The scenarios demonstrate the entire process of coastline changes for the area
of interest. During the late glacial period from 20 to 15 cal. ka BP, coastline slowly retreated, causing a land loss of only
1×104 km2, and thus the land-sea distribution remained nearly unchanged. Later in 15–10 cal. ka BP coastline rapidly retreated and
area of land loss was up to 24×104km2, causing lowlands around Northeast Vietnam and South China soon to be underwater. Coastline retreat continued quite rapidly
during the early Holocene. From 10 to 6 cal. ka BP land area had decreased by 9×104km2, and during that process the Qiongzhou Strait completely opened up. Since the mid Holocene, main controls on coastline change
are from vertical crustal movements and sedimentation. Transgression was surpassed by regression, resulting in a land accretion
of about 10×104km2.
Supported by Key Laboratory of Marginal Sea Geology, Chinese Academy of Sciences (Grant No. MSGL0711), the Guangdong Natural
Science Foundation (Grant No. 04001309) and Open Fund of the Key Laboratory of Marine Geology and Environment, Chinese Academy
of Sciences (Grant No. MGE2007KG04) 相似文献
92.
Assessment of shallow landslides from Hurricane Mitch in central America using a physically based model 总被引:3,自引:2,他引:3
Shallow landslides induced by heavy rainfall events represent one of the most disastrous hazards in mountainous regions because
of their high frequency and rapid mobility. Recent advancements in the availability and accessibility of remote sensing data,
including topography, land cover and precipitation products, allow landslide hazard assessment to be considered at larger
spatial scales. A theoretical framework for a landslide forecasting system was prototyped in this study using several remotely
sensed and surface parameters. The applied physical model SLope-Infiltration-Distributed Equilibrium (SLIDE) takes into account
some simplified hypotheses on water infiltration and defines a direct relation between factor of safety and the rainfall depth
on an infinite slope. This prototype model is applied to a case study in Honduras during Hurricane Mitch in 1998. Two study
areas were selected where a high density of shallow landslides occurred, covering approximately 1,200 km2. The results were quantitatively evaluated using landslide inventory data compiled by the United States Geological Survey
(USGS) following Hurricane Mitch’s landfall. The agreement between the SLIDE modeling results and landslide observations demonstrates
good predictive skill and suggests that this framework could serve as a potential tool for the future early landslide warning
systems. Results show that within the two study areas, the values of rates of successful estimation of slope failure locations
reached as high as 78 and 75%, while the error indices were 35 and 49%. Despite positive model performance, the SLIDE model
is limited by several assumptions including using general parameter calibration rather than in situ tests and neglecting geologic
information. Advantages and limitations of this physically based model are discussed with respect to future applications of
landslide assessment and prediction over large scales. 相似文献
93.
In this paper, we formulate a finite element procedure for approximating the coupled fluid and mechanics in Biot’s consolidation
model of poroelasticity. Here, we approximate the pressure by a mixed finite element method and the displacements by a Galerkin
method. Theoretical convergence error estimates are derived in a continuous in-time setting for a strictly positive constrained
specific storage coefficient. Of particular interest is the case when the lowest-order Raviart–Thomas approximating space
or cell-centered finite differences are used in the mixed formulation, and continuous piecewise linear approximations are
used for displacements. This approach appears to be the one most frequently applied to existing reservoir engineering simulators. 相似文献
94.
Stabilization of Expansive Clays Using Granulated Blast Furnace Slag (GBFS) and GBFS-Cement 总被引:1,自引:0,他引:1
Expansive clays undergo swelling when subjected to water. This can cause damage, especially to light weight structures, water
conveyance canals, lined reservoirs, highways, and airport runways unless appropriate measures are taken. In this study, granulated
blast furnace slag (GBFS) and GBFS-cement (GBFSC) were utilized to overcome or to limit the expansion of an artificially prepared
expansive soil sample (sample A). GBFS and GBFSC were added to sample A in proportions of 5–25% by weight. The effects of
these stabilizers on grain size distribution, Atterberg limits, swelling percentage and rate of swell of soil samples were
determined. GBFS and GBFSC were shown to successfully decreasing the total amount of swell while increasing the rate of swell. 相似文献
95.
This paper addresses temporal variability in bottom hypoxia in broad shallow areas of Mobile Bay, Alabama. Time-series data
collected in the summer of 2004 from one station (mean depth of 4 m) exhibit bottom dissolved oxygen (DO) variations associated
with various time scales of hours to days. Despite a large velocity shear, stratification was strong enough to suppress vertical
mixing most of the time. Bottom DO was closely related to the vertical salinity gradient (ΔS). Hypoxia seldom occurred when
ΔS (over 2.5 m) was <2 psu and occurred almost all the time when ΔS was >8 psu in the absence of extreme events like hurricanes.
Oxygen balance between vertical mixing and total oxygen demand was considered for bottom water from which oxygen demand and
diffusive oxygen flux were estimated. The estimated decay rates at 20°C ranging between 0.175–0.322 d−1 and the corresponding oxygen consumption as large as 7.4 g O2 m−2 d−1 fall at the upper limit of previously reported ranges. The diffusive oxygen flux and the corresponding vertical diffusivity
estimated for well mixed conditions range between 8.6–9.5 g O2 m−2 d−1 and 2.6–2.9 m2 d−1, respectively. Mobile Bay hypoxia is likely to be associated with a large oxygen demand, supported by both water column and
sediment oxygen demands, so that oxygen supply from surface water during destratification events would be quickly exhausted
to return to hypoxic conditions within a few hours to days after destratification events are terminated. 相似文献
96.
Christophe Martin Gabriele Ameri David Baumont David Carbon Gloria Senfaute Jean-Michel Thiry Ezio Faccioli Jean Savy 《Bulletin of Earthquake Engineering》2018,16(6):2477-2511
The accurate evaluation and appropriate treatment of uncertainties is of primary importance in modern probabilistic seismic hazard assessment (PSHA). One of the objectives of the SIGMA project was to establish a framework to improve knowledge and data on two target regions characterized by low-to-moderate seismic activity. In this paper, for South-Eastern France, we present the final PSHA performed within the SIGMA project. A new earthquake catalogue for France covering instrumental and historical periods was used for the calculation of the magnitude-frequency distributions. The hazard model incorporates area sources, smoothed seismicity and a 3D faults model. A set of recently developed ground motion prediction equations (GMPEs) from global and regional data, evaluated as adequately representing the ground motion characteristics in the region, was used to calculate the hazard. The magnitude-frequency distributions, maximum magnitude, faults slip rate and style-of-faulting are considered as additional source of epistemic uncertainties. The hazard results for generic rock condition (Vs30 = 800 m/s) are displayed for 20 sites in terms of uniform hazard spectra at two return periods (475 years and 10,000 years). The contributions of the epistemic uncertainties in the ground motion characterizations and in the seismic source characterization to the total hazard uncertainties are analyzed. Finally, we compare the results with existing models developed at national scale in the framework of the first generation of models supporting the Eurocode 8 enforcement, (MEDD 2002 and AFPS06) and at the European scale (within the SHARE project), highlighting significant discrepancies at short return periods. 相似文献
97.
Ali Aydin 《Pure and Applied Geophysics》2007,164(11):2329-2344
The Normalized Full Gradient (NFG) method which was put forward about 50 years ago has been used for downward continuation
of gravity potential data, especially in the former Union of Soviet Socialist Republics. This method nullifies perturbations
due to the passage of mass depth during downward continuation. The method depends on the downwards analytical continuation
of normalized full gradient values of gravity data. Analytical continuation discriminates certain structural anomalies which
cannot be distinguished in the observed gravity field. This method has been used in various petroleum and tectonic studies.
The Trapeze method was used for the determination of Fourier coefficients during the application of this method. No other
techniques for calculating these coefficients have been used. However, the Filon method was used for the determination of
Fourier coefficients during the application of the NFG method in this work. This method, rather than the Trapeze method, should
be preferred for indicating abnormal mass resources at the lower harmonics. In this study, the NFG method using the Filon
method has been applied the first time to theoretical models of gravity profiles as example field at the Hasankale-Horasan
petroleum exploration province where successful results were achieved. Hydrocarbon presence was shown on the NFG sections
by the application of NFG downward continuation operations on theoretical models. Important signs of hydrocarbon structure
on the NFG section for field and model data at low harmonics are obtained more effectively using this method. 相似文献
98.
Mark B. Edlund Laura D. Triplett Mark D. Tomasek Kathy Bartilson 《Journal of Paleolimnology》2009,41(4):679-689
Paleolimnological studies show that phosphorus (P) loads to the federally protected St. Croix River, a tributary of the Upper
Mississippi River, have increased about threefold over the last century. Ongoing management efforts to protect and restore
the river hinge on the question of whether the increased nutrient load results from point-source discharges or nonpoint runoff
from agricultural intensification and urban expansion. Here we determine the historical contribution of point source phosphorus
(P) loads to the St. Croix watershed from 1900–2000 A.D. Historical point source loads were estimated based on discharge volumes,
demographics, industrial sources, wastewater technologies, and facility discharge records, where available. Sewering in the
basin began in 1905, and since that time, there have been as many as 169 permitted point source dischargers basinwide, including
municipal, industrial, and agricultural facilities. Early wastewater management typically discharged untreated sewage; technological
advances had secondary treatment in place at most facilities by the 1960s–1970s and much of the municipal population was served
by tertiary treatment by the 1990s. Peak nutrient discharges from point sources occurred in the 1960s–1970s. Detergent phosphorus
bans instituted in the late 1970s for Minnesota and Wisconsin, greater use of land and groundwater effluent disposal, and
improvements in treatment technology brought about decreases in P loads in the 1980s and 1990s. Point-source discharges were
compared to historical total phosphorus loads estimated in a whole-basin phosphorus mass balance to calculate the historical
contribution of point sources, anthropogenic nonpoint sources, and natural or background sources. We estimated 1990s point
source loads at 48 t P yr−1, which represents about 10% of the total phosphorus load (459 t P yr−1, flow-corrected to 412 t P yr−1) to the basin. Without further controls on nutrient inputs to the St. Croix River, annual flow-corrected P loads are projected
to increase to 498 t P yr−1 by the 2020s with point source phosphorus loading contributions at 65 t P yr−1 or 13% of the total load. However, if we exclude background P loads to the St. Croix (166 t P yr−1), recent nutrient loads are primarily from anthropogenic nonpoint sources. Point sources also contribute over 19% of the
current and future phosphorus load that can be attributed to human activities in the watershed. Interstate and federal efforts
to decrease P loading to the St. Croix River by 20% will need to target both point and nonpoint sources.
This is one of eight papers dedicated to the “Recent Environmental History of the Upper Mississippi River” published in this
special issue of the Journal of Paleolimnology. D.R. Engstrom served as guest editor of the special issue. 相似文献
99.
正Convection and its ensuing severe weather,such as heavy rainfall,hail,tornado,and high wind,have significant impacts on our society and economy(e.g.,Cao et al.,2004;Fritsch and Carbone,2004;Verbout et al.,2006;Ashley and Black,2008;Cao,2008;Cao and Ma,2009;Zhang et al.,2014).Due to its localized and transient nature,the initiation of convection or convective initiation remains one of the least 相似文献
100.
Parameterization of Sheared Convective Entrainment in the First-Order Jump Model: Evaluation Through Large-Eddy Simulation 总被引:2,自引:0,他引:2
In this note, two different approaches are used to estimate the entrainment-flux to surface-flux ratio for a sheared convective
boundary layer (CBL); both are derived under the framework of the first-order jump model (FOM). That suggested by Sun and
Wang (SW approach) has the advantage that there is no empirical constant included, though the dynamics are described in an
implicit manner. The second, which was proposed by Kim et al. and Pino et al. (KP approach), explicitly characterizes the
dynamics of the sheared entrainment, but uncertainties are induced through the empirical constants. Their performances in
parameterizing the CBL growth rate are compared and discussed, and a new value of the parameter A
3 in the KP approach is suggested. Large-eddy simulation (LES) data are employed to test both approaches: simulations are conducted
for the CBL growing under varying conditions of surface roughness, free-atmospheric stratification, and wind shear, and data
used when the turbulence is in steady state. The predicted entrainment rates in each case are tested against the LES data.
The results show that the SW approach describes the evolution of the sheared CBL quite well, and the KP approach also reproduces
the growth of the CBL reasonably, so long as the value of A
3 is modified to 0.6. 相似文献