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41.
In the present study, the short-term periodicities in the daily data of the sunspot numbers and areas are investigated separately
for the full disk, northern, and southern hemispheres during Solar Cycle 23 for a time interval from 1 January 2003 to 30
November 2007 corresponding to the descending and minimum phase of the cycle. The wavelet power spectrum technique exhibited
a number of quasi-periodic oscillations in all the datasets. In the high frequency range, we find a prominent period of 22 – 35
days in both sunspot indicators. Other quasi-periods in the range of 40 – 60, 70 – 90, 110 – 130, 140 – 160, and 220 – 240
days are detected in the sunspot number time series in different hemispheres at different time intervals. In the sunspot area
data, quasi-periods in the range of 50 – 80, 90 – 110, 115 – 130, 140 – 155, 160 – 190, and about 230 days were noted in different
hemispheres within the time period of analysis. The present investigation shows that the well-known “Rieger periodicity” of
150 – 160 days reappears during the descending phase of Solar Cycle 23, but this is prominent mainly in the southern part
of the Sun. Possible explanations of these observed periodicities are delivered on the basis of earlier results detected in
photospheric magnetic field time series (Knaack, Stenflo, and Berdyugina in Astron. Astrophys.
438, 1067, 2005) and solar r-mode oscillations. 相似文献
42.
Delineation of groundwater recharge zones and identification of artificial recharge sites in West Medinipur district,West Bengal,using RS,GIS and MCDM techniques 总被引:14,自引:4,他引:10
Artificial recharge plays a pivotal role in the sustainable management of groundwater resources. This study proposes a methodology
to delineate artificial recharge zones as well as to identify favorable artificial recharge sites using integrated remote
sensing (RS), geographical information system (GIS) and multi-criteria decision making (MCDM) techniques for augmenting groundwater
resources in the West Medinipur district of West Bengal, India, which has been facing water shortage problems for the past
few years. The thematic layers considered in this study are: geomorphology, geology, drainage density, slope and aquifer transmissivity,
which were prepared using IRS-1D imagery and conventional data. Different themes and their corresponding features were assigned
proper weights based on their relative contribution to groundwater recharge in the area, and normalized weights were computed
using the Saaty’s analytic hierarchy process (AHP). These thematic layers were then integrated in the GIS environment to delineate
artificial recharge zones in the study area. The artificial recharge map thus obtained divided the study area into three zones,
viz., ‘suitable,’ ‘moderately suitable’ and ‘unsuitable’ according to their suitability for artificial groundwater recharge.
It was found that about 46% of the study area falls under ‘suitable’ zone, whereas 43% falls under the ‘moderately suitable’
zone. The western portion of the study area was found to be unsuitable for artificial recharge. The artificial recharge zone
map of the study area was found to be in agreement with the map of mean groundwater depths over the area. Furthermore, forty
possible sites for artificial recharge were also identified using RS and GIS techniques. Based on the available field information,
check dams are suggested as promising artificial recharge structures. The results of this study could be used to formulate
an efficient groundwater management plan for the study area so as to ensure sustainable utilization of scarce groundwater
resources. 相似文献
43.
Colby Loucks Shannon Barber-Meyer Md. Abdullah Abraham Hossain Adam Barlow Ruhul Mohaiman Chowdhury 《Climatic change》2010,98(1-2):291-298
The Sundarbans mangrove ecosystem, shared by India and Bangladesh, is recognized as a global priority for biodiversity conservation. Sea level rise, due to climate change, threatens the long term persistence of the Sundarbans forests and its biodiversity. Among the forests’ biota is the only tiger (Panthera tigris) population in the world adapted for life in mangrove forests. Prior predictions on the impacts of sea level rise on the Sundarbans have been hampered by coarse elevation data in this low-lying region, where every centimeter counts. Using high resolution elevation data, we estimate that with a 28 cm rise above 2000 sea levels, remaining tiger habitat in Bangladesh’s Sundarbans would decline by 96% and the number of breeding individuals would be reduced to less than 20. Assuming current sea level rise predictions and local conditions do not change, a 28 cm sea level rise is likely to occur in the next 50–90 years. If actions to both limit green house gas emissions and increase resilience of the Sundarbans are not initiated soon, the tigers of the Sundarbans may join the Arctic’s polar bears (Ursus maritimus) as early victims of climate change-induced habitat loss. 相似文献
44.
Relative paleointensities are obtained from a 6-m sediment core from Lake St. Croix, Minnesota, spanning the time range from 445 to 1740 years B.P. To normalize the natural remanent magnetization (NRM) for variations in the magnetic content, a laboratory-induced remanence is chosen, whose alternating field (AF) demagnetization curves most closely resemble the NRM demagnetization curves. By plotting the ratio of the NRM to the normalizing remanence versus AF demagnetizing field, HAF, for samples of the same sediment horizon, as well as for samples from different horizons, estimates are obtained for expected uncertainties in the relative paleointensities. For the Lake St. Croix sediments the anhysteretic remanence (ARM) demagnetization curves are very similar to those of the NRM's, and ARM is therefore used as the normalization parameter. Because the sediment exhibits homogeneous remanence properties throughout, and HAF = 100Oe is the optimum “cleaning” field for the entire core, NRM100/ARM100 is evaluated to represent the fluctuations of the relative paleointensity. Our relative paleointensity data exhibit the same general features as obtained from archeomagnetic studies. The intensity increases as one goes back in time with a peak near 800 years B.P., representing an increase in the intensity of up to 60%. Apparent periodicities in the intensity of 300–400 years are observed. 相似文献
45.
AQUIPRO, a PC-based method, was used to assess aquifer vulnerability using digital water well logs. The AQUIPRO model is a parameter/factor weighting system for rating the pollution potential of an aquifer. This method uses the well depth, as well as the clay and partial clay thickness in a well, to generate pollution potential scores. In this model, aquifer protection increases as the AQUIPRO vulnerability scores increase and ground water pollution potential decreases. Computerized water well records of 2435 domestic wells with partial chemistry data were used to determine the ground water pollution potential of Kalamazoo County, Michigan. Theoretically, low AQUIPRO pollution potential scores should have more frequent occurrences of ground water contamination events than areas with high AQUIPRO scores with similar land-use, well construction, and well densities. The relative AQUIPRO scores were compared with the frequency of occurrences of nitrate-N in ground water wells. The average nitrate-N concentrations within each relative AQUIPRO vulnerability scores category were also compared. The results indicate that domestic wells containing 5 mg/L or more nitrate-N showed a positive correlation between the frequency of occurrences of nitrate-N and relative decrease of AQUIPRO (r2 = 0.99) vulnerability scores. In other words, as the ground water pollution potential increases, the occurrence frequency of nitrate-N also increases. Furthermore, the results show that as the relative AQUIPRO (r2 = 0.96) vulnerability scores decrease, the mean nitrate-N concentrations also increase. 相似文献
46.
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48.
Summary Crop drought or moisture stress is a function of the difference between actual evapotranspiration and evapotranspiration requirements of the crop under given atmospheric conditions.In the present work the climatic water balance approach is utilized to develop a crop moisture index for the kharif crop season over India.The difference between actual and climatologically derived evapotranspiration have been accumulated for different consecutive weeks of the crop season and made comparable in time and space through suitable weights. The lowest weighted deficit values have then been used for successive weeks to evolve the Crop Moisture Index. This index enables detection of degree of moisture stress experienced by the crop and can be used in drought monitoring.
With 2 Figures 相似文献
Zusammenfassung Dürre oder Feuchtestreß ist eine Funktion der Differenz zwischen tatsächlicher Verdunstung und dem Verdunstungsbedarf für bestimmte Kulturpflanzen unter gegebenen atmosphärischen Bedingungen. In vorliegender Studie wird die klimatische Wasserbilanz verwendet, um einen Feuchtigkeitsindex für die Kharif-Anbauzeit in Indien zu erstellen.Die Differenz zwischen aktueller und klimatologisch errechneter Verdunstung wurde für einige aufeinanderfolgende Wochen der Erntezeit aufsummiert und durch geeignete Gewichtungen in Zeit und Raum vergleichbar gemacht. Die am wenigsten veränderten Defizitwerte wurden dann für aufeinanderfolgende Wochen zur Errechnung eines Feuchtigkeitsindex herangezogen. Dieser Index ermöglicht die Quantifizierung des für die Pflanzen relevanten Feuchtestresses und kann für die Aufzeichnung von Dürren verwendet werden.
With 2 Figures 相似文献
49.
50.
K. Vinod Kumar Arup SPaltt A. K. Chakrabortt S. K. Bhan B. Chowdhury T. Sanyal 《Journal of the Indian Society of Remote Sensing》1994,22(1):1-7
River estuarine environment constitutes a highly dynamic fluvio-morphological setting where processes of accretion and deposition are active. Hooghly estuary, being one of the largest of estuaries in the east coast of India, needs constant monitoring. Multidate satellite images of IRS-1A L1SS-I and Landsat MSS for 1975–1991 period are studied to detect long term morphological changes in this estuary. The study reveals that the estuarine islands like Sagar, Ghorarmara and Suparbhanga are eroding whereas Lohachara islands has completely eroded off Nayachara island near Haldia due to its shape and size bifurcates the river into two channels. The island as revealed from Satellite images is in accretional phase where the total surface area has increased. The study, therefore, indicates that constant monitoring of spatial and temporal changes in this type of environment would help to understand physical processes. 相似文献