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81.
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Zusammenfassung Es werden Gründe erläutert, die zur Äusserung einer auf dem Begriff der Ergodizität beruhenden Definition der Turbulenz führen. Wir gehen von der Theorie der Unstabilität der Strömung bei Wirkung einer Störung der endlichen Amplitude aus. Es wird das Ergodenproblem im Landauschen Modell der entwickelten Turbulenz behandelt und einige mit der Ergodenhypothese zusammenhängende Folgen erörtert. Als ein Anfangselement gilt für uns der Begriff der Transitivität. Wir beachten auch die Beziehung zwischen der metrischen Transitivität und der Eigenschaft des Durchmischens der Bewegungen sowie die Relation zwischen dem energetischen Storungsspektrum und der Ergodenhypothese. 相似文献
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85.
Sensitivity of MM5 and WRF mesoscale model predictions of surface winds in a typhoon to planetary boundary layer parameterizations 总被引:1,自引:1,他引:1
Sea surface winds and coastal winds, which have a significant influence on the ocean environment, are very difficult to predict.
Although most planetary boundary layer (PBL) parameterizations have demonstrated the capability to represent many meteorological
phenomena, little attention has been paid to the precise prediction of winds at the lowest PBL level. In this study, the ability
to simulate sea winds of two widely used mesoscale models, fifth-generation mesoscale model (MM5) and weather research and
forecasting model (WRF), were compared. In addition, PBL sensitivity experiments were performed using Medium-Range Forecasts
(MRF), Eta, Blackadar, Yonsei University (YSU), and Mellor–Yamada–Janjic (MYJ) during Typhoon Ewiniar in 2006 to investigate
the optimal PBL parameterizations for predicting sea winds accurately. The horizontal distributions of winds were analyzed
to discover the spatial features. The time-series analysis of wind speed from five sensitivity experimental cases was compared
by correlation analysis with surface observations. For the verification of sea surface winds, QuikSCAT satellite 10-m daily
mean wind data were used in root-mean-square error (RMSE) and bias error (BE) analysis. The MRF PBL using MM5 produced relatively
smaller wind speeds, whereas YSU and MYJ using WRF produced relatively greater wind speeds. The hourly surface observations
revealed increasingly strong winds after 0300 UTC, July 10, with most of the experiments reproducing observations reliably.
YSU and MYJ using WRF showed the best agreements with observations. However, MRF using MM5 demonstrated underestimated winds.
The conclusions from the correlation analysis and the RMSE and BE analysis were compatible with the above-mentioned results.
However, some shortcomings were identified in the improvements of wind prediction. The data assimilation of topographical
data and asynoptic observations along coast lines and satellite data in sparsely observed ocean areas should make it possible
to improve the accuracy of sea surface wind predictions. 相似文献
86.
87.
Spatial and temporal analysis of global seismological data 1964–2005 reveals a distinct teleseismic earthquake activity producing
a columnar-like formation in the continental wedge between the Krakatau volcano at the surface and the subducting slab of
the Indo-Australian plate. These earthquakes occur continuously in time, are in the body-wave (m
b) magnitude range 4.5–5.3 and in the depth range 1–100 km. The Krakatau earthquake cluster is vertical and elongated in the
azimuth N30°E, suggesting existence of a deep-rooted fault zone cutting the Sunda Strait in the SSW-NNE direction. Possible
continuation of the fault zone in the SW direction was activated by an intensive 2002/2003 aftershock sequence, elongated
in the azimuth of N55°E. Beneath the Krakatau earthquake cluster, an aseismic gap exists in the Wadati-Benioff zone of the
subducting plate at the depths 100–120 km. We interpret this aseismic gap as a consequence of partial melting inhibiting stress
concentration necessary to generate stronger earthquakes, whereas the numerous earthquakes observed in the overlying lithospheric
wedge beneath the volcano probably reflect magma ascent in the recent plumbing system of the Krakatau volcano. Focal depth
of the deepest events (~100 km) of the Krakatau cluster constrains the location of the primary magma generation to greater
depths. The ascending magmatic fluids stress fault segments within the Sunda Strait fault zone and change their friction parameters
inducing the observed tectonic earthquakes beneath Krakatau. 相似文献
88.
常见于泥微晶碳酸盐岩中的毫米级水平纹层是低能沉积环境特有的相标志.川东北地区长兴组-飞仙关组碳酸盐岩地层无岩芯钻探的岩屑中,通过岩石薄片鉴定发现该层段岩屑样品中,大量岩屑出现纹层构造,甚至水动力条件下不可能形成水平纹层构造的颗粒碳酸盐岩、结晶碳酸盐岩中也有出现,通过对这些现象的薄片鉴定、电子探针及Kα元素面分布等分析手段证实其为非沉积成因、非构造成因的"假纹层构造",研究后将其归因为钻探工艺所使用的钻头(PDC型).为准确对岩石薄片进行鉴定并提升无岩芯钻井地质剖面的解释质量,针对沉积动力学、构造动力学和制片工艺学都无法解释的"假纹层构造"的成因分析具有十分重要的现实意义. 相似文献
89.
ZHANG Jiaming WU Xiaodong HAN Guoqing ZHANG Kai WANG Jingyao ZHANG Ji WANG Bo CHEN Zhangxing 《《地质学报》英文版》2015,89(Z1):215-216
<正>The performances of the formation damage are permeability decreasing,skin factor increasing and productivity index decreasing.Generally,formation damage is not reversible.This phenomenon is known as reverse funnel effect(Porter 1989).People have been trying to find effective ways to remedy the reservoir damage.Stimulation and hydraulic fracture are traditional 相似文献
90.
A growing body of field evidence indicates that hypersolidus fabrics preserved in syntectonic plutons are likely to have formed
in highly crystallized ‘rigid sponge’ magma. This paper demonstrates that such magma could be idealized as a rheological solid
and that the development of non-coaxial fabrics in plutonic rocks can very conveniently be modeled in the framework of solid
mechanics. Using the finite element method (FEM), we modeled two strain regimes of small magnitudes (plane-strain horizontal
simple shear with the shear strain γ of up to 0.30 and plane-strain pure shear of up to 15% shortening) superposed onto vertically
oriented and variously spaced elastic phenocrysts set in the viscoelastic matrix. In the simple shear regime, the phenocrysts
slightly rotate toward the shear plane, while the principal strain directions in the matrix are instantaneously oriented at
an angle of about 45° or less to the phenocryst fabric. Simple shear thus can only lead to the formation of oblique phenocryst
and matrix fabrics. By contrast, the vertical phenocryst fabric is maintained in the pure shear regime, and a new horizontal
fabric can develop almost instantaneously in the matrix even for small amounts of superposed shortening (5% shortening after
10 ky in our model). We conclude that such a mechanism can easily produce perpendicular hypersolidus fabrics in plutonic rocks
and that only a very short time span (first thousands of years) is required to develop magmatic fabric in a pluton for ‘normal’
rates (10−15 to 10−13 s−1) of tectonic deformation. 相似文献