Electrical Properties of the Earth's Mantle
Table 1 Earth conductivity profiles Figure File Name Apx. Depth Remarks References 1. Global Models 1939-69 LAPR39 0—1250 global Sq, Dst LAHIRI and PRICE, 1939; PRICE, 1973 RIKI50 0—1400 misc. data sources RIKITAKE. 1950; 1966 MCD057 0—2900 LAPR39 + secular change McDoNALD, 1957 CANT60 100—600 see ECKHARDT et a!. , 1963 CANTWELL, 1960 YUKU65 380—1900 ring current YUKUTAKE, 1965 BANK69 0—1700 ring current BANKS, 1969; 1972 2. Global Models 1970—74 BFRS70 100—700 Sq, Dst 27-d variations BERDICHEVSKY et a!. , 1970; 1973 PRKR70 0—3200 rework BANKS, 1969, data PARKER, 1970 SCJA72 0—1000 pulsations, bays, Sq, Dst SCHMUCKER and JANKOWSKI, 1972 BANK72 230—1250 model summary BANKS, 1972 JADY74 0—2951 Sq, 27-d, annual variations JADY, 1974 FAR074 300—1500 with BFRS70 FAINBERG and ROTANOVA, 1974 SCHM74 0—1000 see HAAK, 1980 SCHMUCKER, 1974 DMRB77 0—1450 all available data DMITRIEV et al. , 1977 Global Models 1974-1983 3. PRKN74 60-430 Sq PARKINSON, 1974 DUCM80 0—2900 annual means DUCRUIX et a!. , 1980 ISIK80 320—2020 Sq, Dst, annual, solar cycle ISIKARA, 1980 ACMC81 0—2875 secular impulse ACACHE et a!. , 1980 ROKI82 350—1200 various methods ROKITYANSKY. 1982 JAPA83 0—1200 Dst JADY and PATERSON, 1983 4. Pacific Models LAUN74 0—500 near Calif. ; see DRURY, 1978 LAUNAY, 1975 LARSEN, 1975 LAHA75 0—800 Hawaii 7-1350 FILL80 NE Pacific FILLOUX, 1980 LAW and GREENHOUSE, LWGR81 0—200 Juan de Fuca 1981 0—250 Juan de Fuca OLDENBURG et a!. , 1984 OLJA84 OLCA84 0-250 near Calif. OLDENBURG et al. , 1984 OLNC84 0—250 N. cent. Pacific OLDENBURG et ai.
1001365548
Electrical Properties of the Earth's Mantle
Table 1 Earth conductivity profiles Figure File Name Apx. Depth Remarks References 1. Global Models 1939-69 LAPR39 0—1250 global Sq, Dst LAHIRI and PRICE, 1939; PRICE, 1973 RIKI50 0—1400 misc. data sources RIKITAKE. 1950; 1966 MCD057 0—2900 LAPR39 + secular change McDoNALD, 1957 CANT60 100—600 see ECKHARDT et a!. , 1963 CANTWELL, 1960 YUKU65 380—1900 ring current YUKUTAKE, 1965 BANK69 0—1700 ring current BANKS, 1969; 1972 2. Global Models 1970—74 BFRS70 100—700 Sq, Dst 27-d variations BERDICHEVSKY et a!. , 1970; 1973 PRKR70 0—3200 rework BANKS, 1969, data PARKER, 1970 SCJA72 0—1000 pulsations, bays, Sq, Dst SCHMUCKER and JANKOWSKI, 1972 BANK72 230—1250 model summary BANKS, 1972 JADY74 0—2951 Sq, 27-d, annual variations JADY, 1974 FAR074 300—1500 with BFRS70 FAINBERG and ROTANOVA, 1974 SCHM74 0—1000 see HAAK, 1980 SCHMUCKER, 1974 DMRB77 0—1450 all available data DMITRIEV et al. , 1977 Global Models 1974-1983 3. PRKN74 60-430 Sq PARKINSON, 1974 DUCM80 0—2900 annual means DUCRUIX et a!. , 1980 ISIK80 320—2020 Sq, Dst, annual, solar cycle ISIKARA, 1980 ACMC81 0—2875 secular impulse ACACHE et a!. , 1980 ROKI82 350—1200 various methods ROKITYANSKY. 1982 JAPA83 0—1200 Dst JADY and PATERSON, 1983 4. Pacific Models LAUN74 0—500 near Calif. ; see DRURY, 1978 LAUNAY, 1975 LARSEN, 1975 LAHA75 0—800 Hawaii 7-1350 FILL80 NE Pacific FILLOUX, 1980 LAW and GREENHOUSE, LWGR81 0—200 Juan de Fuca 1981 0—250 Juan de Fuca OLDENBURG et a!. , 1984 OLJA84 OLCA84 0-250 near Calif. OLDENBURG et al. , 1984 OLNC84 0—250 N. cent. Pacific OLDENBURG et ai.
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Electrical Properties of the Earth's Mantle

Electrical Properties of the Earth's Mantle

by CAMPBELL
Electrical Properties of the Earth's Mantle

Electrical Properties of the Earth's Mantle

by CAMPBELL

Paperback(Softcover reprint of the original 1st ed. 1987)

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Overview

Table 1 Earth conductivity profiles Figure File Name Apx. Depth Remarks References 1. Global Models 1939-69 LAPR39 0—1250 global Sq, Dst LAHIRI and PRICE, 1939; PRICE, 1973 RIKI50 0—1400 misc. data sources RIKITAKE. 1950; 1966 MCD057 0—2900 LAPR39 + secular change McDoNALD, 1957 CANT60 100—600 see ECKHARDT et a!. , 1963 CANTWELL, 1960 YUKU65 380—1900 ring current YUKUTAKE, 1965 BANK69 0—1700 ring current BANKS, 1969; 1972 2. Global Models 1970—74 BFRS70 100—700 Sq, Dst 27-d variations BERDICHEVSKY et a!. , 1970; 1973 PRKR70 0—3200 rework BANKS, 1969, data PARKER, 1970 SCJA72 0—1000 pulsations, bays, Sq, Dst SCHMUCKER and JANKOWSKI, 1972 BANK72 230—1250 model summary BANKS, 1972 JADY74 0—2951 Sq, 27-d, annual variations JADY, 1974 FAR074 300—1500 with BFRS70 FAINBERG and ROTANOVA, 1974 SCHM74 0—1000 see HAAK, 1980 SCHMUCKER, 1974 DMRB77 0—1450 all available data DMITRIEV et al. , 1977 Global Models 1974-1983 3. PRKN74 60-430 Sq PARKINSON, 1974 DUCM80 0—2900 annual means DUCRUIX et a!. , 1980 ISIK80 320—2020 Sq, Dst, annual, solar cycle ISIKARA, 1980 ACMC81 0—2875 secular impulse ACACHE et a!. , 1980 ROKI82 350—1200 various methods ROKITYANSKY. 1982 JAPA83 0—1200 Dst JADY and PATERSON, 1983 4. Pacific Models LAUN74 0—500 near Calif. ; see DRURY, 1978 LAUNAY, 1975 LARSEN, 1975 LAHA75 0—800 Hawaii 7-1350 FILL80 NE Pacific FILLOUX, 1980 LAW and GREENHOUSE, LWGR81 0—200 Juan de Fuca 1981 0—250 Juan de Fuca OLDENBURG et a!. , 1984 OLJA84 OLCA84 0-250 near Calif. OLDENBURG et al. , 1984 OLNC84 0—250 N. cent. Pacific OLDENBURG et ai.

Product Details

ISBN-13: 9783034873758
Publisher: Birkhäuser Basel
Publication date: 11/25/2012
Series: Pageoph Topical Volumes
Edition description: Softcover reprint of the original 1st ed. 1987
Pages: 306
Product dimensions: 0.00(w) x 0.00(h) x 0.03(d)

Table of Contents

to Electrical Properties of the Earth ’s Mantle.- Crustal and upper mantle structure of stable continental regions in North America and Northern Europe.- Properties of the lithosphere-asthenosphere system in Europe with a view toward Earth conductivity.- Temperature profiles in the Earth of importance to deep electrical conductivity models.- Analyzing electromagnetic induction data: Suggestions from laboratory measurements.- Appreciation of spherically symmetric models of electrical conductivity.- Upper mantle lateral heterogeneities and magnetotelluric daily variation data.- Substitute conductors for electromagnetic response estimates.- The planetary scale distribution of telluric currents and the effect of the equatorial electrojet: An investigation by canonical GDS.- Conductivity profiles from global data.- Models of deep electrical conductivity obtained from data on global magnetic variational sounding,.- The upper mantle conductivity analysis method using observatory records of the geomagnetic field.- Limitations in the use of spherical harmonic methods for deep conductivity determinations.- MTS studies on the upper mantle conductivity in China.- Application of space analysis of electromagnetic fields to investigation of the geoelectrical structure of the Earth.
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