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21.
The 4th IPCC report highlights the increased vulnerability of the coastal areas from floods due to sea-level rise (SLR).
The existing coastal flood control structures in Bangladesh are not adequate to adapt these changes and new measures are urgently
necessary. It is important to determine the impacts of SLR on flooding to analyse the performance of the existing structures
and corresponding impact to plan for suitable adaptation and mitigation measures to reduce the impacts of floods on coastal
zone. The study aims to develop a comprehensive understanding of the possible effects of SLR on floods in the coastal zone
of Bangladesh. A hydrodynamic model, which is a combination of surface and river parts, was utilized for flood simulation.
The tool was applied under a range of future scenarios, and results indicate both spatial variability of risk and changes
in flood characteristics between now and under SLR. Estimated impact on population, infrastructure and transportation is also
exposed. These types of impact estimation would be of value to flood plain management authorities to minimize the socio-economic
impact. 相似文献
22.
Seyyed Ali Fa’al Rastegar Abdolrahim Javaherian Naser Keshavarz Farajkhah Mehrdad Soleimani Monfared Abbas Zarei 《应用地球物理》2016,13(2):353-363
We modified the common-offset–common-reflection-surface (COCRS) method to attenuate ground roll, the coherent noise typically generated by a low-velocity, low-frequency, and high-amplitude Rayleigh wave. The COCRS operator is based on hyperbolas, thus it fits events with hyperbolic traveltimes such as reflection events in prestack data. Conversely, ground roll is linear in the common-midpoint (CMP) and common-shot gathers and can be distinguished and attenuated by the COCRS operator. Thus, we search for the dip and curvature of the reflections in the common-shot gathers prior to the common-offset section. Because it is desirable to minimize the damage to the reflection amplitudes, we only stack the multicoverage data in the ground-roll areas. Searching the CS gathers before the CO section is another modification of the conventional COCRS stacking. We tested the proposed method using synthetic and real data sets from western Iran. The results of the ground-roll attenuation with the proposed method were compared with results of the f–k filtering and conventional COCRS stacking after f–k filtering. The results show that the proposed method attenuates the aliased and nonaliased ground roll better than the f–k filtering and conventional CRS stacking. However, the computation time was higher than other common methods such as f–k filtering. 相似文献
23.
咸海水位不断下降导致湖滨荒漠化加剧,尘暴频发,区域环境恶化。利用臭氧观测仪(OMI)气溶胶数据和HYSPLIT(Hybrid Single Particle Lagrangian Integrated Trajectory Model)模型,对咸海地区近期粉尘气溶胶变化及其潜在扩散特征进行了研究。结果表明:2005年以来,咸海地区粉尘活动不断增强,OMI气溶胶指数年平均值、方差、中值和最大值均呈现快速增加趋势,2013年OMI气溶胶指数平均值已经上升至1.47;OMI气溶胶指数具有明显的季节变化特征,春季(3-5月)和秋末初冬(11月-次年1月)是两个气溶胶指数峰值区;在相同时间内,春季和冬季的粉尘潜在扩散范围最大,秋季次之,夏季最小,且粉尘潜在扩散表现出明显的经向和纬向扩散特征;受气流和地形影响,粉尘潜在扩散主要有东北和西南两个方向。 相似文献
24.
Most of the present navigation sensor integration techniques are based on Kalman-filtering estimation procedures. Although
Kalman filtering represents one of the best solutions for multisensor integration, it still has some drawbacks in terms of
stability, computation load, immunity to noise effects and observability. Furthermore, Kalman filters perform adequately only
under certain predefined dynamic models. Neuron computing, a technology of artificial neural network (ANN), is a powerful
tool for solving nonlinear problems that involve mapping input data to output data without having any prior knowledge about
the mathematical process involved. This article suggests a multisensor integration approach for fusing data from an inertial
navigation system (INS) and differential global positioning system (DGPS) hardware utilizing multilayer feed-forward neural
networks with a back propagation learning algorithm. In addition, it addresses the impact of neural network (NN) parameters
and random noise on positioning accuracy.
Electronic Publication 相似文献
25.
A combined algorithm of improving INS error modeling and sensor measurements for accurate INS/GPS navigation 总被引:1,自引:1,他引:1
Although the integrated system of a differential global positioning system (DGPS) and an inertial navigation system (INS)
had been widely used in many geodetic navigation applications, it has sometimes a major limitation. This limitation is associated
with the frequent occurrence of DGPS outages caused by GPS signal blockages in certain situations (urban areas, high trees,
tunnels, etc.). In the standard mechanization of INS/DGPS navigation, the DGPS is used for positioning while the INS is used
for attitude determination. In case of GPS signal blockages, positioning is provided using the INS instead of the GPS until
satellite signals are obtained again with sufficient accuracy. Since the INS has a very short-time accuracy, the accuracy
of the provided INS navigation parameters during these periods decreases with time. However, the obtained accuracy in these
cases is totally dependent on the INS error model and on the quality of the INS sensor data. Therefore, enhanced navigation
parameters could be obtained during DGPS outages if better inertial error models are implemented and better quality inertial
measurements are used. In this paper, it will be shown that better INS error models are obtained using autoregressive processes
for modeling inertial sensor errors instead of Gauss–Markov processes that are implemented in most of the current inertial
systems and, on the other hand, that the quality of inertial data is improved using wavelet multi-resolution techniques. The
above two methods are discussed and then a combined algorithm of both techniques is applied. The performance of each method
as well as of the combined algorithm is analyzed using land-vehicle INS/DGPS data with induced DGPS outage periods. In addition
to the considerable navigation accuracy improvement obtained from each single method, the results showed that the combined
algorithm is better than both methods by more than 30%. 相似文献
26.
As a part of Jordan’s efforts to quantify the effect of the Dead Sea level decline on the precious groundwater resources of the surrounding aquifers, the authors analyzed the historic or predevelopment inflows and outflows of the Dead Sea basin and the resulting water balance which included precipitation, evaporation, surface‐ and groundwaters. The predevelopment situation was taken as the point of departure for the sake of this study. Furthermore, the present situation was analyzed in an attempt to quantify the groundwater inflows into the Dead Sea as a result of drop in the Dead Sea level. The groundwater component and the corresponding saltwater/freshwater interface were taken as the variables to balance the levels of the sea that would have been reached without the contribution of the uncontrolled groundwater inflows as a result of the salt/freshwater interface seaward migration. The present day water balance that includes all the water diversion projects from all riparians indicates serious declines in the Dead Sea level. The effects of the present day level declines on the fresh groundwater/saltwater interface indicate that considerable amounts of groundwater are driven into the Sea as a result of the seaward migration of the freshwater/saline water interface. 相似文献
27.
In this paper the reaction of the salt‐/freshwater interface due to the changes in the Dead Sea level are elaborated at in details by using the inflows into the Dead Sea, the outflows due to evaporation losses and artificial discharges, and the hydrographic registrations of the Dead Sea level. The analyses show that the interface seaward migration resulted in a groundwater discharge of around 423 Mio m3 per meter drop in the level of the Dead Sea in the period 1994–1998 and of around 525 Mio m3/m in the period 1930–1937. The additional amount of groundwater joining the Dead Sea due to the interface seaward migration was 51 Mio m3 per one square kilometer of shrinkage in the area of the Dead Sea in the period 1930–1937 and 91 Mio m3/km2 in the period 1994–1998. The riparian states of the Dead Sea are nowadays loosing 370 Mio m3/a of freshwater to the Dead Sea through the interface readjustment mechanisms as a result of their over exploitation of waters which formerly fed the Dead Sea. 相似文献
28.
The textural and mineralogical characteristics of the dust fallout along with the potential effect on human health were investigated
at 12 locations in Kuwait City and suburbs during March 2006–February 2007. Mineralogically, the dust comprises mostly calcite
and quartz with grain size ranging from 1 to 25 μm. Chemically, elements such as Ca, Fe, Mg, and Al are the dominant ones
with the highest amount of average percentage concentration 12.89% for Ca. Results showed that humans in the 12 sites are
being exposed to different ranges of average percentage concentrations of minerals such as calcite (15.00–51.80%), quartz
(26.40–66.9%), albite (6.30–17.30%), dolomite (1.20–10.20%), and gypsum (0.00–6.4%), where site K3 recorded the lowest average
concentrations for calcite, dolomite, and gypsum and the highest for quartz, and albite. The elements Ca, Fe, Mg, Al, K, Zn,
Na, Cr, and Cd recorded ranges of (5.845–12.890%), (0.946–3.141%), (0.752–2.513%), (0.545–2.261%), (0.059–0.307%), (0.004–0.792%),
(0.003–0.018%), (0.001–0.005%) and <0.0004%, respectively. Inhalation of such concentrations of calcite particles may cause
coughing, sneezing, and nasal irritation, and in cases of chronic exposure to excessive oral doses of calcite may produce
alkalosis and hypercalcemia. Quartz can have potentially serious respiratory effects following long-term exposure (1 year
or more) which is the case here in our study. Comparing with international and local standards, it is highly likely that harmful
and hazardous effects on the human body are being experienced by long-term exposure to dust fallout in Kuwait. 相似文献
29.
Active and online prediction of BOD5 in river systems using reduced-order support vector machine 总被引:1,自引:1,他引:0
Roohollah Noori Abdulreza Karbassi Khosro Ashrafi Mojtaba Ardestani Naser Mehrdadi Gholam-Reza Nabi Bidhendi 《Environmental Earth Sciences》2012,67(1):141-149
Due to the limitations of hardware sensors for online measurement of the water quality parameters such as 5-day biochemical oxygen demand (BOD5), the recent research efforts have focused on the software sensors for the rapid prediction of such parameters. The main objective in this research is to develop a reduced-order support vector machine (ROSVM) model based on the proper orthogonal decomposition to solve the time-consuming problem of the BOD5 measurements. The performance of the newly developed methodology is tested on the Sefidrood River Basin, Iran. Subsequently, the predicted values of BOD5, resulted from the selected developed ROSVM model, are compared with the results of support vector machine (SVM) model. According to the obtained results, selected ROSVM model seems to be more accurate, showing Person correlation coefficient (R) and root mean square error (RMSE) equal to 0.97 and 6.94, respectively. Further, the investigations based on developed discrepancy ratio (DDR) statistic for selection of the optimum model between the best accurate ROSVM and SVM models are carried out. Results of DDR statistic indicated superior performance of the selected ROSVM model comparing to the SVM technique for online prediction of BOD5 in the Sefidrood River. 相似文献
30.
Hazardous waste landfill site selection in Khorasan Razavi Province, Northeastern Iran 总被引:2,自引:0,他引:2
The disposal is the final step of any hazardous waste management plan. An inappropriate landfill site may have negative environmental, economical, and ecological impacts. Therefore, landfills should be sited carefully by taking into account various rules, regulations, factors, and constraints. In this study, candidate sites for hazardous landfills in the northeastern Khorasan Razavi province are determined using the integration of geographic information system and landfill susceptibility zonation methods. For this, the inappropriate areas were first removed from the model, and the suitability of remaining regions were evaluated using 15 different criteria in two steps. With this done, nine candidate sites were selected as the most suitable locations. Finally, the selected landfill sites were proposed based on environmental impact assessment (Leopold matrix) and economical studies. This study shows that Maasumabad, Kheirabad, Mayamey, and Yonsi are the best locations for the constitution of landfill in Khorasan Razavi province, respectively. 相似文献