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101.
In the Upper Pliocene, during the final phase of igneous activity within the Pannonian Basin, alkali basalts were erupted. Their occurrences are restricted to two main regions in Hungary: 1) Transdanubia; 2) Nógrád County. The clinopyroxene phenocrysts of these rocks are zoned titanaugites which often have distinctive colourless or green cores. Two kinds of green cores can be distinguished: 1. olive-green cores (fassaitic augite and fassaite), and 2. grassgreen cores (salite and ferrosalite). Both types of green cores are comparatively iron-rich and they occur only in the basalts of Nógrád County. The olive-green fassaites probably precipitated from relatively evolved melts which have been mixed into their present host magmas, whereas the grassgreen salites and ferrosalites are xenocrysts derived probably from upper mantle rocks. The clinopyroxene zoning patterns suggest, that after being generated by small-degree partial melting in the mantle the Transdanubian basalts ascended to the surface with little or no modification en route, whereas those of Nógrád County had a more complex evolution, in which fractionation at depth and magma mixing played an important role.  相似文献   
102.
After a short historical review of conceptions about the Pannonian Median Massif or Tisia, the distribution of Middle-Upper Carboniferous and Lower Triassic-Liassic facies is briefly examined on the two sides of the Zagreb-Zemplin line dividing into two main segments the basement of the Carpathian basin. It shows on the one hand, that the Igal-Bükk zone (Igal-Bükk eugeosyncline ofWein, 1969), thought to establish a connection between the NW-Dinarides and the Dinaric-type Bükkium, is only a tectonic zone and could never have been a paleogeographical unit. On the other hand, the northern, marginal part of Tisia (Mecsek-Bihor crystalline belt and its sedimentary cover;Dank &Bodzay, 1971) exhibits a development and facies characteristic of the northern (northeastern) marginal complex of the Tethys. Also, facies-transitions from the foreland toward the open sea are always of N S direction. All autochthonous explanations must face the striking differences along the Zagreb-Zemplin line, which seem to exclude the possibility that the northern part of Tisia was a central, partly emerged crystalline ridge (no facies-transitions toward N!); it was rather part of the northern (northeastern) marginal complex of Tethys. Therefore allochthonous models suggesting largerscale horizontal movements give a much more plausible explanation. The style of Late Hercynian development and the distribution of Lower Triassic-Liassic facies zones suggest, that Tisia was part of the northern (northeastern) shelf of the Tethys until the end of the Liassic (in accordance with the opinion ofBleahu), then split off and was wedged in by horizontal movements between the NW-Dinarides and the Dinaric-type Bükkium by the end of the Jurassic — beginning of the Cretaceous.
Zusammenfassung Nach einem kurzgefaßten historischen Überblick zur Deutung des Pannonischen Massivs oder Tisia wird die Verteilung der Fazies von Mittel- und Oberkarbon sowie Untertrias bis Lias auf den beiden Seiten der Zagreb-Zemplin-Linie — welche den Untergrund des Karpatenbeckens in zwei Abschnitte zerteilt — kurz untersucht. Sie zeigt einerseits, daß die Igal-Bükk-Zone (die Igal-Bükk Eugeosynklinal vonWein, 1969)-welche eine Verbindung zwischen den NW Dinariden und dem dinarisch-typischen Bükkium darstellen soll — nur eine tektonische Zone ist, hingegen nie eine paleogeographische Einheit gewesen sein kann.Der nördliche, äußerste Teil des Tisia (Mecsek-Bihor kristalliner Gürtel und seine sedimentäre Decke;Dank u.Bodzay, 1971) weist eine Ausbildung und Fazies auf, welche für den nördlichen (nordöstlichen) marginalen Komplex der Tethys typisch ist. Auch Faziesübergänge vom Vorland in der Richtung der offenen See sind immer N S gerichtet. Alle Erklärungen, die eine autochthone Lage der Zonen entlang der Zagreb-Zemplin-Linie mit einbeziehen, müssen mit der Tatsache fertig werden, daß der nördliche Teil der Tisia einen zentralen Teil eines teilweise emporgehobenen Kristallinrückens darstellt (kein Faziesübergang nach Norden). Sie war eher Teil der nördlichen (nordöstlichen) marginalen Serie der Tethys. Daher erscheinen allochthone Modelle, welche horizontale Bewegungen in größerem Maßstabe andeuten, eher glaubwürdig zu sein. Der Stil der spätherzynischen Entwicklung und die Verteilung der Fazieszonen von Untertrias bis Lias deuten an, daß der Tisia Teil der nördlichen (nordöstliche) Shelf der Tethys bis Ende Lias war (übereinstimmend mit der Meinung vonBleahu 1976); dann spaltete er sich ab und keilte sich mit horizontalen Bewegungen zwischen den NW Dinariden und dem Bükkium dinarischen Types ein; dies könnte Ende Jura-Anfang Kreide stattgefunden haben.

Résumé Après une brève revue historique des conceptions sur la »Masse médiane pannonienne« ou la »Tisia«, on examine brièvement la distribution des facies du Carbonifère moyen-supérieur et du Trias-Lias aux deux cotés de la ligne de Zagreb-Zemplin divisant le soubassement du Bassin Carpathique en deux ségments principaux.Ce qui est démontré, c'est d'une part que la zone Igal-Bükk (le »géosynclinal Igal-Bükk«, Wein, 1969), considérée comme l'établissement d'une communication entre les Dinarides du NW et le Bükkium de type dinarique, ne représente qu'une zone tectonique, mais qu'elle ne peut jamais être une unité paléogéographique. D'autre part la partie septentrionale, marginale de la »Tisia« (la ceinture crystalline de» Mecsek-Bihor« et sa couverture sédimentaire; Dank-Bodzay, 1971) présente un développement et un faciès caractéristique du complexe marginal septentrional (nordoriental) de la Téthys. Les transitions de faciès de l'avant-pays vers la mer ouverte sont également de direction N-S. Toutes les explications autochtonistes doivent faire face aux différences accentuées le long de la ligne Zagreb-Zemplin, ce qui semble exclure la possibilité que le Nord de la »Tisia« ait été une dorsale cristalline centrale, émergée (aucune transition de faciès vers le N!); elle a fait plutôt partie du complexe marginal du N (NE) de la Téthys. C'est pourquoi les modèles allochtonistes suggérant des mouvements horizontaux plus vastes donnent une explication plus plausible. Le style du développement éohercynien et la distribution des zones faciales du Trias inférieur-Lias suggèrent que la »Tisia« a fait partie du shelf septentrional (nordoriental) de la Téthys jusqu'à la fin du Lias (en accord complet avec l'opinion de Bleahu, 1976) et qu'ensuite elle s'était décollée et coinné par des mouvements horizontaux entre les Dinarides du NW et le Bükkium de type dinarique vers la fin du Jurassique et le début du Crétacé.

, , , , . , - ( - ', 1969), , , ., ( Mecsek-Bihor ; Dank u. Bodzay, 1971) , , . - . , -, , ( ). () . , , . , ( Bleahu, 1976) (-) ; ; , , — .


Because of shortage of place, only some of the most important non-Hungarian literature and the latest Hungarian works concerned with this region are listed up here: for a more detailed list of reference the reader is referred to the papers ofBalogh (1972) andKovács (1980).  相似文献   
103.
104.
Earthquake data analysis: An example from Sweden   总被引:1,自引:0,他引:1  
Markus Båth 《Earth》1983,19(3):181-303
Methods and results of earthquake data analysis are illustrated by the seismicity of Sweden in the period 1951–1976, summarizing a comprehensive research project for the past five years. Starting from the regional structural properties, methods are given for the evaluation of instrumental and macroseismic observations, including error analysis and source identification. The resulting earthquake distribution is investigated in relation to space (various types of seismicity mapping), time (periodicities) and magnitude (frequency-magnitude and energy-magnitude relations). The tectonophysical explanations of the earthquake origin are still subject to considerable uncertainty and can be treated only by way of discussions. The engineering applications, stimulated recently by the nuclear power industry, can be placed on much more reliable ground. They include calculations of seismic risk and fracture risk as well as investigations of certain phenomena of practical consequences, especially rockbursts.This review is primarily addressed to those who have use for seismological data in their work, especially geologists, tectonophysicists and engineers. It is important for them to realize how the seismological data are obtained, their reliability and their range of application. Sweden is here mainly used as an example, but the developed methods have a general applicability to any earthquake region, with proper modifications.In short, our purpose is two-fold: (1) to summarize recent research on the seismicity of Sweden: (2) to introduce all users of seismological data into methods and results.  相似文献   
105.
106.
Summary The paper treats the results of telluric measurements in the Austrian Molasse-Zone and in the Vienna Basin, supplemented with data of other geophysical methods and deep-wells. The analysis of the results shows that the telluric method supplies not only a picture with good reconnaissance proceeding from which further, especially seismic research can be planned more expediently, but can render good services in solving detailed problems too. The hypothesis concerning the anisotropy of sediments resp. its effect is verified by the results of modelexperiments too.
Zusammenfassung Die Arbeit behandelt die Ergebnisse der Tellurischen Forschungen in der österreichischen Molasse-Zone und im Wiener Becken unter Einbeziehung von Angaben anderer geophysikalischen Messungen und Tiefbohrungen. Die Analyse der Ergebnisse zeigt, dass die tellurische Methode nicht bloss eine gute geophysikalische Übersichtskarte ergibt, von der ausgehend weitere — in der Hauptsache seismische — Forschungen zweckentsprechender geplant werden können, sondern sie leistet auch recht gute Dienste bei der Lösung von Detaiproblemen. Die Hypothese über die Anisotropie der Sedimente bzw. ihr Effekt wurde auch durch die Ergebnisse von Modellversuchen bestätigt.
  相似文献   
107.
108.
109.
Some considerations about the zodiacal light brightness integral from the stand point of the theory of integral equations are made. It is shown that for observation directions confined to a plane perpendicular to the ecliptic and passing through the Sun, the Z.L. brightness integral can be formally considered as a first kind integral equation of Volterra type (V.I.E.). In a second step, this equation is transformed into a V.I.E. of the second kind, from which, and under certain assumptions, the spatial distribution of dust out of the ecliptic is obtained.  相似文献   
110.
In the paper the void is modeled as a spherical underdense region surrounded by shells changing into the Friedmannian exterior. This model is in fact a single Tolman-Bondi metric, where at the edge of the void the density need not be continuous. In principle, there may exist 72 variations. These models contain also the cases, when in the void itself there is a Minkowskian vacuum; the shell crossing is not excluded, too. Some technical results are obtained for the Tolman-Bondi metric. Using them, the questions of stability and other theoretical problems are investigated. Some observational facts concerning the voids are also used. As the key result a truncation of the possible models is obtained; only 14 models are physically reasonable. This means that the universe is either hyperbolically expanding (this possibility strengthens the proposition of Bonnor and Chamorro, (1990); (1991)), or there is a shell crossing. Thus the discovery of voids is an observational support either for the open universe or for the shell crossing scenario of galaxy formation (Mészáros, 1991), where no anisotropy of microwave background radiation is needed in a baryon dominated universe.  相似文献   
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