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  • 1
    Keywords: Forschungsbericht
    Type of Medium: Online Resource
    Pages: Online Ressource, 176 p. = 29,8 Mb , ill., graphs
    Edition: [Elektronische Ressource]
    Series Statement: Aerogeophysikalische Erkundung von Altlasten TV 2
    Language: German
    Note: nIndex p. 120 - 122. - Contract BMBF 1480936 , Differences between the printed and electronic version of the document are possible , Also available as printed version , Systemvoraussetzungen: Acrobat reader.
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  • 2
    Electronic Resource
    Electronic Resource
    Oxford, UK : Blackwell Publishing Ltd
    Geophysical prospecting 36 (1988), S. 0 
    ISSN: 1365-2478
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Geosciences , Physics
    Notes: A complex transfer function c (or generalized skin depth) can be derived from data for the secondary magnetic field measured by a dipole system with small coil spacing at height h above the ground. This function has a useful property: For a uniform or layered ground, the real part of c yields the‘ centroid depth’z* of the in-phase current system as a function of frequency.This parameter can be combined with the apparent resistivity ρa derived by conventional methods. The function ρa(z*), if known over a broad frequency range, yields a smoothed approximation of the true distribution ρ(z) without an initial model. The relations between ρa(z*) and ρ(z) are studied for a number of multilayer models. An example of the application of the ρa*) algorithm to data from a groundwater survey is given.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    International journal of earth sciences 56 (1967), S. 394-408 
    ISSN: 1437-3262
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences
    Description / Table of Contents: Abstract The three methods: geomagnetic deepsounding, tellurics or E-field-measurements, and magnetotellurics are explained (Abb. 1, 2, 4 and 5). The electric field $$\overrightarrow E $$ produced by electromagnetic induction in the earth was observed following two profiles crossing the Molasse basin N of the Alps, Southern-Germany (Abb. 3). Transportable electrographs were used. The horizontal induced geoelectric field is nearly elliptically polarized. The direction of the major axes of these ellipses which approximate the vectordiagrams, is called the preference direction under special conditions. The preference directions of $$\overrightarrow E $$ are systematically orientated in the Molasse basin (Abb. 3). The intensity of $$\overrightarrow E $$ is smaller in the Molasse than it is in the area of crystalline rocks. The thickness of the sedimentary layer of good conductivity can be estimated by means of the relation wandering station / (Exo 2 + Eyo 2) basis station]. Exo and Eyo are the maximal components between the beginning and the end of an event (Abb. 6).
    Abstract: Résumé Les trois méthodes suivantes sont expliquées: le sondage magnétique en profondeur, la méthode tellurique ou mesure du champ électrique $$\overrightarrow E $$ , et la méthode magnétotellurique. Les variations du champ électrique $$\overrightarrow E $$ induit dans le sol ont été enrégistrées le long de 2 profils qui croisent la molasse bavaroise en Allemagne du Sud (Fig. 3). Des électrographes mobiles ont été utilisés. — Le champ induit horizontal montre une polarisation approximativement elliptique. La direction de l'axe principal des ellipses est appelée direction de préférence sous certaines conditions. On trouve que ces directions de préférence ont une orientation systématique dans la molasse (Fig. 3). L'intensité du champ électrique $$\overrightarrow E $$ est beaucoup plus petite dans la molasse que dans les roches ignées et métamorphiques du Massif de Bohème. L'épaisseur de la couche sédimentaire à bonne conductivité peut être estimée à l'aide du quotient station mobile/ (Exo 2 + Eyo 2) station fixe], oú Exo et Eyo désignent les composantes maximales enrégistrées dans l'intervalle d'une perturbation considérée.
    Notes: Zusammenfassung Es werden die drei Methoden: erdmagnetische Tiefensondierung, Tellurik oder E-Feld-Messung und Magnetotellurik erläutert (Abb. 1, 2, 4 und 5). Längs zweier Profile in Süddeutschland, die die Bayerische Vorlandsmolasse kreuzen, wurde die zeitliche Variation der horizontalen Komponente des im Untergrund elektromagnetisch induzierten erdelektrischen Feldes $$\overrightarrow E $$ mit transportablen Elektrographen registriert. — $$\overrightarrow E $$ ist annähernd elliptisch polarisiert; die Richtung der großen Halbachsen dieser Näherungsellipsen wird unter bestimmten Bedingungen Vorzugsrichtung genannt. Die Vorzugsrichtungen sind im Bereich des Molassetroges systematisch orientiert (Abb. 3). Die Intensität von $$\overrightarrow E $$ ist im Molassetrog bedeutend kleiner als im Kristallin am W-Rand der Böhmischen Masse (Abb. 6). Aus der räumlichen Variation von $$\overrightarrow E $$ kann unter gewissen Bedingungen die Mächtigkeit der gutleitenden Sedimentdecke abgeschätzt werden. Hierzu wurde das Verhältnis Wanderstation / (Exo 2 + Eyo 2) Basisstation] verwendet, wobei Exo und Eyo die maximalen Komponenten innerhalb einer Störung sind.
    Type of Medium: Electronic Resource
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  • 4
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    In:  EPIC3Proceedings. Jahrestagung der Deutschen Geophysikalischen Gesellschaft DGG, 62, pp. 36-38
    Publication Date: 2019-07-16
    Description: A new, extremely small helicopter-borne frequency-domain electromagnetic induction sensor (HEM bird) has been developed by Alfred-Wegener-Institute (AWI), Aerodata Systems GmbH, Ferra Dynamics Inc., and K.-P. Sengpiel for extensive surveys of sea-ice thickness. In the summer of 2001 it has been successfully operated for the first time from the German research icebreaker Polarstern over sea ice in the central Arctic. This paper describes the system and shows some results of the first deployment.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
    Format: application/pdf
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