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71.
Tropical cyclone genesis frequency over the western North Pacific simulated in medium-resolution coupled general circulation models 总被引:4,自引:0,他引:4
This study examines the tropical cyclone (TC) genesis frequency over the western North Pacific simulated in atmosphere–ocean
coupled general circulation models from the World Climate Research Programme’s Coupled Model Intercomparison Project phase
3. We first evaluate performances of eight models with atmospheric horizontal resolution of T63 or T106 by analyzing their
daily-mean atmospheric outputs of twentieth-century climate simulations available from the Program for Climate Model Diagnosis
and Intercomparison database. The genesis frequency is validated against the best-track data issued by the Japan Meteorological
Agency. Five of the eight models reproduce realistic horizontal distribution of the TC genesis with a large fraction over
the 10°–20°N, 120°–150°E area. These five high-performance models also realistically simulate the summer–winter contrast of
the frequency. However, detailed seasonal march is slightly unrealistic; four of the models overestimate the frequency in
the early season (May–June) while all of them underestimate the frequency in the mature season (July–September). Reasons for
these biases in the seasonal march for the five high-performance models are discussed using the TC genesis potential (GP)
index proposed by Emanuel and Nolan (in Am Meteor Soc, pp 240–241, 2004). The simulated GP has seasonal biases consistent with those of the TC genesis frequency. For all five models, the seasonal
biases in GP are consistent with those in environmental lower-tropospheric vorticity, vertical wind shear, and relative humidity,
which can be attributed to the simulated behavior of monsoon trough. The observed trough migrates northward from the equatorial
region to reach the 10°–20°N latitudinal band during the mature season and contributes to the TC frequency maximum, whereas
the simulated trough migrates northward too rapidly and reaches this latitude band in the early season, leading to the overestimation
of the TC genesis frequency. In the mature season, the simulated trough reaches as far as 15°–25°N, accompanied by a strong
vertical shear south of the trough, providing an unfavorable condition for TC genesis. It is concluded that an adequate simulation
of the monsoon trough behavior is essential for a better reproduction of the TC frequency seasonal march. 相似文献
72.
Motoko Igisu Yuichiro Ueno Mie Shimojima Satoru Nakashima Stanley M. Awramik Hiroyuki Ohta Shigenori Maruyama 《Precambrian Research》2009,173(1-4):19
Precambrian microbial fossils show carbonaceous cellular structure, which often resemble in shape and size cyanobacteria and other prokaryotes. Morphological taxonomy of these minute, simple, and more or less degraded fossils is, however, often not enough to determine their precise phylogenetic positions. Here we report the results of micro-FTIR spectroscopic analyses of well-preserved microfossils in 850 Ma and 1900 Ma stromatolites, together with those of 8 species of extant prokaryotes and 5 of eukaryotes for comparison. These Proterozoic fossils have low CH3/CH2 absorbance ratios (R3/2 < 0.5) of aliphatic CH moieties, suggesting selective preservation of long, straight, aliphatic carbon chains probably derived from bacterial membrane lipids. All the observed R3/2 values of coccoids, filaments and amorphous organic matter resemble lipid fractions of extant Bacteria including cyanobacteria, but not Archaea. The results indicate that Proterozoic microfossils belong to Bacteria, which is consistent with the cyanobacterial origin inferred from morphology. Moreover, the R3/2 value of fossilized cell would reflect chemical composition of its precursor membrane lipid, thus could be a useful new tracer for distinguishing Archaea, Bacteria and possibly Eucarya for fossilized and extant microorganisms. 相似文献
73.
Analysis of summertime atmospheric transport of fine particulate matter in Northeast Asia 总被引:1,自引:0,他引:1
Hikari Shimadera Hiroshi Hayami Yu Morino Toshimasa Ohara Satoru Chatani Shuichi Hasegawa Naoki Kaneyasu 《Asia-Pacific Journal of Atmospheric Sciences》2013,49(3):347-360
In Northeast Asia, the effect of long-range transport of air pollutants is generally pronounced in spring and winter, but can be important even in summer. This study analyzed summer-time atmospheric transport of elemental carbon (EC) and sulfate (SO4 2?) with the Community Multiscale Air Quality (CMAQ) model driven by the Weather Research and Forecasting (WRF) model. The WRF/CMAQ modeling system was applied to regions ranging from Northeast Asia to the Greater Tokyo Area in Japan in summer 2007. In terms of EC, while the model simulated well the effect of long-range transport, the simulation results indicated that domestic emissions in Japan dominantly contributed (85%) to EC concentrations in the Greater Tokyo. In terms of SO4 2?, the simulation results indicated that both domestic emissions (62%) and long-range transport from the other countries (38%) substantially contributed to SO4 2? concentrations in the Greater Tokyo. Distinctive transport processes of SO4 2? were associated with typical summer-time meteorological conditions in the study region. When a Pacific high-pressure system covered the main island of Japan, domestic emissions, including volcanic emission, dominantly contributed to SO4 2? concentrations in the Greater Tokyo. When a high-pressure system prevailed over the East China Sea and low-pressure systems passed north of Japan, synoptic westerly winds associated with this pressure pattern transported a large amount of SO4 2? from the continent to Japan. In addition, although heavy precipitation and strong wind decreased SO4 2? concentrations near the center of a typhoon, peripheral typhoon winds occasionally played an important role in long-range transport of SO4 2?. 相似文献
74.
75.
Satoru Itoh 《GeoJournal》2000,52(3):223-235
The purpose of this paper is to clarify the diurnal variations in structure of an urban area from the viewpoint of time distance.
To accomplish this, for one entire day, and for the morning, noon, and evening periods, time maps are delineated by using
MDS; also, the indices of accessibility and circuity are computed from the time distances. As a result, the difference in
shape between the time and actual maps becomes clear especially in the morning and also in the evening. Both the accessibility
and circuity measured from the time distance show a concentrically shaped pattern where the regional disparity is especially
distinct within the morning and evening periods. The diurnal variations as described above are thought to occur against the
backdrop of the topological traffic conditions within the study area.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
76.
77.
Satoru?HaraguchiEmail author Teruaki?Ishii Jun-Ichi?Kimura Yasuhiko?Ohara 《Contributions to Mineralogy and Petrology》2003,145(2):151-168
Tonalitic rocks dredged from the Komahashi-Daini Seamount, northern Kyushu-Palau Ridge are classified as biotite-hornblende tonalites and hornblende tonalites. These rocks have radiometric ages of 37-38 Ma, indicating that felsic plutonic activity occurred during the early stages of Izu-Ogasawara (Bonin)-Mariana (IBM) arc volcanism. Therefore, this tonalite complex has great importance for understanding the initial processes of island arc and continental crust formation. These tonalitic rocks exhibit the following petrological and geochemical characteristics: (1) common lamellar twins and oscillatory zoning patterns in plagioclase phenocrysts throughout the compositional range; (2) hornblende tonalite shows parallel REE patterns and increasing total REE content with increasing SiO2, except for an increasingly strong negative Eu anomaly at higher SiO2 levels; and (3) isotopic composition remains constant over a wide silica variation. We compare this tonalite with younger tonalities of the same arc from the Tanzawa Complex (10-5 Ma), central Japan, considered to represent the lower-middle crust of the IBM arc, and find the following differences: (1) cumulate textures found in Tanzawa tonalites are not observed in samples from the Komahashi-Daini Seamount; and (2) Komahashi-Daini Seamount tonalites, unlike those from Tanzawa, exhibit linear variations of Zr and REEs vs. SiO2 plots. These data and other observations support the interpretation that tonalite in the Komahashi-Daini Seamount was produced by crystal fractionation from basaltic magma. We suggest that fractional crystallization operated during the early stage of oceanic island arc formation to produce tonalite, whereas tonalities in later stages formed largely by partial melting of basaltic lower crust, as represented by the tonalites in the Tanzawa Complex. 相似文献
78.
Equatorial behaviour of a polar-originating ionospheric current is examined by solving numerically the continuity equation on a two-dimensional spherical shell with appropriate assumptions for the ionospheric conductivity and the field-aligned source currents. The results show a clear daytime equatorial enhancement of the ionospheric currents in spite of much reduced electric field due to shielding effects of the enhanced Cowling conductivity there. The results are used for interpretation of the preliminary impulse of the geomagnetic sudden commencement. 相似文献
79.
Mobility of metamorphic fluids inferred from infrared microspectroscopy on natural fluid inclusions: the example of Tinos Island,Greece 总被引:1,自引:0,他引:1
Famin Vincent Nakashima Satoru Jolivet Laurent Philippot Pascal 《Contributions to Mineralogy and Petrology》2004,146(6):736-749
OH structure of metamorphic fluids has been studied by high temperature infrared (IR) microspectroscopy on natural fluid inclusions contained in quartz veins, over the temperature range 25–370 °C. Blueschist-facies veins from Tinos island core complex (Cyclades, Greece) display H2O–NaCl–CaCl2–CO2 inclusions whereas greenschist-facies veins contain H2O–NaCl ± CO2 inclusions. From 25 to 370 °C, peak positions of OH stretching IR absorption bands increase quasi-linearly with slopes of 0.25 and 0.50 cm–1 °C–1 for inclusions trapped under blueschist and greenschist conditions, respectively. Extrapolation to 400 °C yield peak positions of 3,475 cm–1 for blueschist inclusions and 3,585 cm–1 for greenschist inclusions. Because the smaller wave number indicates the shorter hydrogen-bond distance between water molecules, fluids involved in the greenschist event have a loose structure compared with blueschist fluids. We suggest that these properties might correspond to a low wetting angle of fluids. This would explain the high mobility of aqueous fluids suggested by structural observation and stable isotope analysis.Editorial responsibility: J. Hoefs 相似文献
80.