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51.
The northern Kyushu-Palau Ridge (KPR), remnant conjugate arc of the Izu-Ogasawara (Bonin)-Mariana (IBM) active arc, is dominated by basalt-andesite except for the Komahashi-Daini Seamount where acidic plutonic rocks of 38 Ma were recovered. These mafic to intermediate volcanics are produced by the rifting volcanism in the proto-IBM arc associated with spreading of the Shikoku Basin. The HFSE and HREE contents and ratios of these volcanics indicate enriched source mantle composition compared to recent volcanic front. The LILE ratios exhibit similar characteristics to reararc volcanism of the recent Izu arc, and some enriched volcanics exhibit high abundance of sediment melt inputs. Based on these observations and compilations of the published data set, the replacement event of the wedge mantle under the IBM arc occurred two times. The first event occurred between 45 and 38 Ma, with Pacific type mantle being replaced by depleted Indian type mantle. The second event occurred between 36 and 25 Ma, enriched mantle flowed from reararc side. The slab component during the proto-IBM arc rifting was a similar characteristic to recent reararc volcanism of the Izu arc, and sediment melt added in a local area.  相似文献   
52.
We investigate the seismic structure of the western Philippine Sea using two sets of seismological observations: ScS reverberations, which provide the layering framework for a regional upper mantle model, and observations of frequency-dependent phase delays for direct S waves, surface-reflected phases (sS, SS, sSS), and surface waves (R1, G1), which constrain the velocity and anisotropy structure within the layers. The combined data set, comprising 17 discontinuity amplitudes and layer travel times from the ScS-reverberation stack and more than 1000 frequency-dependent phase delays, was inverted for a path-averaged, radially anisotropic model. Mineralogical estimates of the bulk sound velocity and density are incorporated as complementary constraints. The final model, PHB3, is characterized by a 11.5-km thick crust, an anisotropic lid bounded by a sharp negative G discontinuity at 89 km, an anisotropic low-velocity layer extending to 166 km, a subjacent high-gradient region, and transition-zone discontinuities at depths of 408 km, 520 km and 664 km. The lid is slower than in a comparable model for the Tonga–Hawaii corridor (PA5), but also significantly thicker, requiring a compositional variation between the two regions. We explore the hypothesis that the thickness of the oceanic lid is controlled by the melting depth at the spreading centers during crust formation, and that the thicker crust and lid in the Philippine Sea results from deeper melting owing to a higher potential temperature and perhaps a higher water content in the upper mantle.  相似文献   
53.
—A numerical study is conducted to simulate complicated sliding behavior and earthquake activity on a subducting plate boundary. A 2-D model of a uniform elastic half-space with a semi-infinite thrust fault is set up, and the frictional stress prescribed by a rate- and state-dependent friction law is assumed to act on the plate boundary fault. Spatial nonuniformity of friction parameters representing rate-dependence of friction and of slip-dependence of friction are introduced in the model to obtain complicated sliding behavior in the numerical simulation. Analogs of great earthquakes that break the entire seismogenic plate boundary repeatedly occur at a constant time interval. Smaller events of seismic or aseismic sliding occur during a great earthquake cycle. Regions of rate-strengthening of friction and of a large characteristic distance in slip-dependence of friction behave as barriers or asperities. Rupture propagation is often arrested in such a region and a great earthquake occurs later when the region is broken. The variety of earthquake activity observed in many regions along real plate boundaries may be explained by similar nonuniformity in friction parameters. Conversely, the friction parameters on plate boundaries might be estimated from comparison of theoretical simulations with observations of earthquake activity. Simulation results indicate that spatiotemporal variation in stress due to aseismic sliding may play an important part in generating earthquakes.  相似文献   
54.
This paper first describes the atmospheric correction algorithm for OCTS visible band data used at NASDA/EOC. Sharing a basic structure with Gordon and Wang’s Sea WiFS algorithm, it uses 10 candidate aerosol models including the “Asian dust model” introduced in consideration of the unique feature of aerosols over the east Asian waters. Based on the observations at 670 and 865 nm bands, the algorithm selects a pair of aerosol models that account best for the observed spectral reflectances, and synthesizes the aerosol reflectance used for the atmospheric correction. Two different schemes for determining the value of the parameter for the aerosol model selection are presented and their anticipated estimation error is analyzed in terms of retrieved water reflectance at 443 nm. The results of our numerical simulation show that the standard deviation of the estimation error of the “weighted average” scheme is mostly within the permissible level of ±0.002, reducing the error by 18% on average compared to the “simple average” scheme. The paper further discusses the expected error under the old CZCS-type atmospheric correction, which assumes constant aerosol optical properties throughout the given image. Although our algorithm has a better performance than the CZCS algorithm, further analysis shows that the error induced by the assumption taken in the algorithm that the water-leaving radiance at 670 nm band is negligibly small may be large in high pigment concentration waters, indicating the necessity for future improvements.  相似文献   
55.
Soil bulk density (ρb) is commonly treated as static in studies of land surface dynamics. Magnitudes of errors associated with this assumption are largely unknown. Our objectives were to (a) quantify ρb effects on soil hydrologic and thermal properties and (b) evaluate effects of ρb on surface energy balance and heat and water transfer. We evaluated 6 soil properties, volumetric heat capacity, thermal conductivity, soil thermal diffusivity, water retention characteristics, hydraulic conductivity, and vapour diffusivity, over a range of ρb, using a combination of 6 models. Thermal conductivity, water retention, hydraulic conductivity, and vapour diffusivity were most sensitive to ρb, each changing by fractions greater than the associated fractional changes in ρb. A 10% change in ρb led to 10–11% change in thermal conductivity, 6–11% change in saturated and residual water content, 49–54% change in saturated hydraulic conductivity, and 80% change in vapour diffusivity. Subsequently, 3 field seasons were simulated with a numerical model (HYDRUS‐1D) for a range of ρb values. When ρb increased 25% (from 1.2 to 1.5 Mg m?3), soil temperature variation decreased by 2.1 °C in shallow layers and increased by 1 °C in subsurface layers. Surface water content differed by 0.02 m3 m?3 for various ρb values during drying events but differences mostly disappeared in the subsurface. Matric potential varied by >100 m of water. Surface energy balance showed clear trends with ρb. Latent heat flux decreased 6%, sensible heat flux increased 9%, and magnitude of ground heat flux varied by 18% (with a 25% ρb increase). Transient ρb impacted surface conditions and fluxes, and clearly, it warrants consideration in field and modelling investigations.  相似文献   
56.
The present study addresses a layout design of rockbolts for reinforcing natural ground structures applying a special optimization method, called multiphase layout optimization. Rockbolts are used to tighten loosed natural ground, and the layout of rockbolts are determined without sufficient information about the physical properties of the ground materials. Because of this uncertainty, unexpected deformation often occurs at the excavation surface of natural ground. In that case, it is requested to determine an effective layout of the additional rockbolts promptly with respect to the actual deformation at the construction site. However, it is not easy to determine the optimal layout because of its complexity, and consequently, it has no choice but to determine the layout in an empirical way. This study introduces a numerical approach to determine an optimal layout of rockbolts with respect to arbitrarily possible deformation of natural ground. The objective is to maximize the stiffness of the overall ground structure reinforced with rockbolts. For optimization, a gradient‐based optimization scheme is applied because of its numerical efficiency. It was verified from a series of numerical examples that this method has great potential to improve the stiffness of the overall ground structure and shows a certain applicability to a practical design. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
57.
Regional structural trends within the poorly exposed metamorphic basement complex of central Chile between 39°30' and 41°30'S latitudes are evident on total intensity aeromagnetic maps. Field and laboratory measurements of magnetic susceptibility indicate that anomalies are related to relic magnetite and rare ilmenite phase concentrations in serpentinites and lower greenschist facies mafic schists.Serpentinites and mafic schists representing fragmented ophiolites are common throughout a broad, highly magnetic central zone which separates a low-magnetic metaturbidites terrain in the Northeast from a southwestern, low susceptibility, metavolcanic rich area with isolated anomalies. One of the isolated anomalies represents a polyphase deformed serpentinite emplacement overlain by coarse grained eclogitic blueschist, highly magnetic undeformed serpentinites and amphibolite boulders thought to have been transported within the ultramafic body.The trend of the regional magnetic anomaly pattern is controlled by the main foliation, a crenulation cleavage (S2), rather than by primary factors, such as emplacement pattern of the ultramafics. This structural grain was established during the early Carboniferous event which culminated pre-Andean accretion in the area. The overall zonation, however, seems to reflect the composition of slices in a composite prism accreted during oblique subduction along the margin of Gondwanaland.
Zusammenfassung Reliktische präkinematische (prä-S2) Magnetitanreicherungen kommen in Serpentiniten und Metabasiten der Grünschieferfazies des spätpaläozoischen Grundgebirges der Küstenkordillere Chiles häufig vor. Zwischen 39°30' und 41 °30' südlicher Breite wurden magnetische Messungen in situ in diesen Gesteinen durchgeführt, die deren enge räumliche Beziehung zu regionalen NW-SO streichenden Anomalien bestätigen.Die Serpentinite stellen Teile eines zerscherten Ophiolithkomplexes dar, der zwischen einer schwach-magnetischen Metaturbidit-Zone und einer schlecht aufgeschlossenen Metapyroklastit-Zone diapirartig intrudierte. Ein mehrfach deformierter Serpentinitkörper ist von Gerollen aus eklogitischem Blauschiefer überlagert, die höchstwahrscheinlich ursprünglichen tektonischen Einschlüssen entsprechen.Der regionale Trend der Anomalien ist eher vom Streichen und Einfallen der Hauptschieferung als von primären Strukturen kontrolliert. Es handelt sich um eine Krenulationsschieferung (S2) die durch eine frühkarbonische Phase entstanden ist. Sie stellt den Höhepunkt einer prä-Andinen Schrägakkretion dar. Die regionale lithologische Gliederung scheint jedoch die Zusammensetzung der einzelnen Akkretionskeile widerzuspiegeln.

Résumén Serpentinitas y esquistos máficos metamorfizados en condiciones de facies esquistos verdes baja forman parte del basamento metamorfico de la Cordillera de la Costa de Chile central entre los 39°30' y los 41°30'l.s. Mediciones in situ y en laboratorio de suceptibilidad magnética muestran que sus concentraciones de magnetita pretectonica con respecto a la foliación principal son responsables de anomalías de rumbo NW-SE.Las serpentinitas constituyen parte de una asociación »ofiolítica« fragmentada que aflora dentro de una ancha banda entre metaturbiditas débilmente magnéticas al NE y metapiroclastitas con aisladas anomalías al SW. Una serpentinita del último sector presenta evidencias de deformación polifásica y esta recubierta por bolones de esquistos azules eclogíticos y anfibolitas, los cuales podrían representar inclusiones originalmente transportadas por el cuerpo ultramáfico.El diseño regional de las anomalías magnéticas está controlado por la actitud de la foliación principal, más que por el diseño del emplazamiento original. Esta, un clivaje de crenuación S2, se originó durante un evento carbonífero temprano que representa el climax de la acreción pre-andina en el área. La zonación litológica regional, sin embargo, parece reflejar más bien la composición de lonjas individuales dentro de un prisma compuesto acrecionado mediante subducción oblicua.

- (prä-S2) . 39°30 41°30 in situ , , NW-SO. , , . , , , , , . , . (S2), . - . .
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58.
59.
l. IntroductionThe cIassicaI definition of bi--directional reflectance--distribution function (BRDF) is aderivative, distribution function, relatlng the irradiance incident from one given direction tolts contribution to the radiance renected in another direct1on (N1codemus et al., l977).f r (0,, rp,; 0,, rp, )= dL, (0,, P,; 0,, 9,; E, )/ dE, (0,, 9,) [sr-- 1 ], (l)where 0 (zenith angle) and 9 (azimuth angle) together indicate a direction, the subscr1pt i indi-cates quantities associated wi…  相似文献   
60.
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