Principles of igneous and metamorphic petrology:
"This textbook provides a basic understanding of the formative processes of igneous and metamorphic rock through quantitative applications of simple physical and chemical principles. The book encourages a deeper comprehension of the subject by explaining the petrologic principles rather than si...
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Cambridge [u.a.]
Cambridge Univ. Press
2009
|
Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Contributor biographical information Publisher description Table of contents only Inhaltsverzeichnis |
Zusammenfassung: | "This textbook provides a basic understanding of the formative processes of igneous and metamorphic rock through quantitative applications of simple physical and chemical principles. The book encourages a deeper comprehension of the subject by explaining the petrologic principles rather than simply presenting the student with petrologic facts and terminology. Assuming knowledge of only introductory college-level courses in physics, chemistry, and calculus, it lucidly outlines mathematical derivations fully and at an elementary level, and is ideal for intermediate and advanced courses in igneous and metamorphic petrology. The end-of-chapter quantitative problem sets facilitate student learning by working through simple applications. They also introduce several widely-used thermodynamic software programs for calculating igneous and metamorphic phase equilibria and image analysis software. With over 350 illustrations, this revised edition contains valuable new material on the structure of the Earth's mantle and core, the properties and behaviour of magmas, recent results from satellite imaging, and more."--BOOK JACKET. |
Beschreibung: | Hier auch später erschienene, unveränderte Nachdrucke |
Beschreibung: | XVIII, 667 S. Ill., graph. Darst., Kt. |
ISBN: | 9780521880060 |
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Datensatz im Suchindex
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adam_text | Titel: Principles of igneous and metamorphic petrology
Autor: Philpotts, Anthony R.
Jahr: 2009
Contents
Preface page xiii
Acknowledgments xvi
List of units xvii
1 Introduction l
1.1 Petrology and its scope 1
1.2 Major structural units of the Earth 2
1.3 Pressure distribution within the Earth 4
1.4 Temperature gradients and heat flow in the lithosphere 6
1.5 Heat sources in the Earth 10
1.6 Temperatures in the lithosphere: the steady-state geotherm 11
1.7 General outline of the origin of igneous and metamorphic rocks 13
1.8 Problems 17
2 Physical properties of magma 19
2.1 Introduction 19
2.2 Magmatic temperatures 19
2.3 Magma densities 21
2.4 Magma viscosities 23
2.5 Problems 26
3 Intrusion of magma 28
3.1 Introduction 28
3.2 Buoyant rise of magma 28
3.3 Volume expansion on melting 32
3.4 Vesiculation 33
3.5 Tectonic pressure on magma 35
3.6 Intrusion rates of Newtonian magma in laminar flow 35
3.7 Flow rate of a Bingham magma 39
3.8 Intrusion rates of turbulent magma 41
3.9 Flow through a porous medium 41
3.10 Channel flow 43
3.11 Diapiric intrusion of magma 45
3.12 Factors in source affecting the supply of magma 47
3.13 Evidence of flow in rocks 48
3.14 Problems 50
4 Forms of igneous bodies 52
4.1 Introduction 52
Extrusive bodies 52
4.2 Flood basalts 52
4.3 Central volcanoes 59
4.4 Pyroclastic deposits and calderas 73
Intrusive bodies 11
4.5 General statement 77
4.6 Volcanic necks 80
vii
viii Contents
4.7 Dikes and sills 80
4.8 Ring dikes, cone sheets, and caldron subsidence 86
4.9 Diatreme breccia pipes 89
4.10 Laccoliths 93
4.11 Lopoliths and layered intrusions 95
4.12 Stocks 99
4.13 Batholiths 101
4.14 Problems 108
5 Cooling of igneous bodies and other diffusion processes 111
5.1 Introduction 111
5.2 General theory of heat conduction 112
5.3 Heat conduction across a plane contact 113
5.4 Numerical analysis 117
5.5 Cooling by radiation 121
5.6 Diffusion 123
5.7 Problems 128
6 Classification of igneous rocks 130
6.1 Introduction 130
6.2 Mode and norm 133
6.3 CIPW norm calculation 134
6.4 MELTS program and normative minerals 136
6.5 General classification terms 137
6.6 IUGS classification of plutonic igneous rocks 137
6.7 RJGS classification of volcanic and hypabyssal rocks 139
6.8 The Irvine-Baragar classification of volcanic rocks 143
6.9 Igneous rock names 146
6.10 Chemical discriminants of rock types 147
6.11 Problems 148
7 Introduction to thermodynamics 149
7.1 Introduction 149
7.2 Energy in the form of heat and work 149
7.3 First law of thermodynamics 151
7.4 Standard heats of formation 152
7.5 Second law of thermodynamics 156
7.6 Entropy 157
7.7 Third law of thermodynamics and the measurement of entropy 158
7.8 Gibbs equation: thermodynamic potentials 159
7.9 Free energy of formation at any temperature and pressure 161
7.10 Problems 162
8 Free energy and phase equilibria 164
8.1 Introduction 164
8.2 Free energy surface in G-T-P space 164
8.3 Plotting univariant lines in P-T diagrams 166
8.4 Schreinemakers rules for intersecting surfaces in G-T-P space 168
8.5 Schreinemakers rules applied to multicomponent systems 170
8.6 Degenerate systems 176
8.7 Summary and conclusions 176
8.8 Problems 177
9 Thermodynamics of solutions 179
9.1 Introduction 179
9.2 Conservative and nonconservative components of a solution 179
9.3 Free energy of solutions 1 so
Contents ix
9.4 Free energy of ideal solutions 181
9.5 Free energy of nonideal solutions 184
9.6 Nonideal solution: the regular solution model 185
9.7 Unmixing of nonideal solutions: exsolution 187
9.8 Equilibrium constant of a reaction 189
9.9 Problems 193
10 Phase equilibria in igneous systems 194
10.1 Introduction 194
10.2 Two-component systems 194
10.3 Lever rule 197
10.4 Simple binary systems with no solid solution 197
10.5 Phase rule 200
10.6 Binary systems with binary compounds 201
10.7 Binary systems with liquid immiscibility 205
10.8 Complex binary systems with no solid solution 207
10.9 Binary systems with complete solid solution 208
10.10 Polymorphism in binary solid solutions 210
10.11 Binary systems exhibiting partial solid solution 211
10.12 Binary systems with liquidus passing through a minimum 212
10.13 Ternary systems 215
10.14 Simple ternary systems with congruently melting phases with
no solid solution 218
10.15 Ternary systems with congruently melting binary phases 220
10.16 Ternary systems with an incongruent-melting binary phase 220
10.17 Ternary systems with liquid immiscibility 223
10.18 Ternary systems with one binary solid solution without a minimum 224
10.19 Ternary systems with one binary solid solution with a minimum 226
10.20 Ternary systems with more than one solid solution series 228
10.21 Ternary systems with binary and ternary compounds 233
10.22 Quaternary systems 233
10.23 Adiabatic phase relations 236
10.24 Computer-generated phase relations 239
10.25 Problems 240
11 Effects of volatiles on melt equilibria 243
11.1 Introduction: composition of volcanic gases 243
11.2 Solubility of H20 in silicate melts 244
11.3 Solubility of C02 in silicate melts 246
11.4 Solubility of sulfur in silicate melts 247
11.5 Effect of H20 on melting in silicate systems 250
11.6 Fractional crystallization of hydrous magma 254
11.7 Effect of C02 on melting in silicate systems 259
11.8 Role of oxygen fugacity in phase equilibria 261
11.9 Problems 265
12 Crystal growth 268
12.1 Introduction 268
12.2 Nucleation 268
12.3 Crystal growth rates 271
12.4 Crystal morphology determined by rate-determining growth
processes 274
12.5 Crystal size distribution 281
12.6 Equilibrium shape of crystals 286
12.7 Surface free energy and wetting of crystals by magma 291
12.8 Problems 294
Contents
13 Isotope geochemistry related to petrology 295
13.1 Introduction 295
13.2 Radioactive decay schemes 295
13.3 Rate of radioactive decay 296
13.4 Evolution of isotopic reservoirs in the Earth 304
13.5 Stable isotopes 312
13.6 Problems 315
14 Magmatic processes 316
14.1 Introduction 316
14.2 Compositional variation in suites of volcanic rocks 317
14.3 Crystal settling in magma 321
14.4 Magma convection 323
14.5 Crystal-mush compaction 328
14.6 Igneous cumulates 332
14.7 Liquid immiscibility 340
14.8 Diffusion processes: Soret effect 345
14.9 Pneumatolitic action 346
14.10 Magmatic assimilation and assimilation and fractional
crystallization (AFC) 347
14.11 Mixing of magmas 350
14.12 Trace element fractionation by magmas 356
14.13 Problems 361
15 Igneous rock associations 365
15.1 Introduction 365
15.2 Igneous rocks of oceanic regions 365
15.3 Igneous rocks associated with convergent plate boundaries 374
15.4 Continental flood basalts and large igneous provinces 380
15.5 Large layered igneous complexes 384
15.6 Continental alkaline rocks 390
15.7 Ultra-alkaline and silica-poor alkaline rocks 394
15.8 Special Precambrian associations 397
15.9 Meteorite-impact-generated rocks 405
15.10 Problems 411
16 Metamorphism and metamorphic fades 414
16.1 Introduction 414
16.2 Metamorphic volatiles 415
16.3 Metamorphic grade 417
16.4 Metamorphic facies 419
16.5 Petrogenetic grids 424
16.6 Ultrahigh-pressure and ultrahigh-temperature metamorphism 425
16.7 Problems 427
17 Deformation and textures of metamorphic rocks 428
17.1 Introduction 428
17.2 Metamorphic foliation 428
17.3 Porphyroblasts 435
17.4 Interpretation of porphyroblast-inclusion relations 436
17.5 Metamorphic textures in shear zones 440
17.6 Problems 444
18 Graphical analysis of metamorphic mineral assemblages 447
18.1 Introduction 447
18.2 Model metamorphic terrane 447
Contents xi
18.3 Interpretation and representation of mineral assemblages 448
18.4 Metamorphic mineral assemblages 451
18.5 Simple petrogenetic grid 452
18.6 ACF and AKF diagrams 454
18.7 Representation of solid solutions 457
18.8 Graphical representation of mineral assemblages in systems of four
or more components 457
18.9 Variance in metapelitic mineral assemblages 460
18.10 Isograds in metapelitic rocks 462
18.11 Effect of P and Ton reactions among solid solution phases 465
18.12 Petrogenetic grid for metapelitic rocks 467
18.13 Application: regional pressure estimation 469
18.14 Problems 470
19 Geothermometry, geobarometry, and mineral reactions
among solid solutions 473
19.1 Introduction 473
19.2 Solid solutions and thermobarometry 473
19.3 Thermobarometry and multiple reactions 476
19.4 Trace element thermometry 478
19.5 Solvus thermometry 478
19.6 Oxygen isotope thermometry 479
19.7 Mineral zoning and thermobarometry 480
19.8 Introduction to pseudosections 482
19.9 Field examples 485
19.10 Problems 487
20 Mineral reactions involving H20 and C02 490
20.1 Introduction 490
20.2 P-V-T behavior of fluids 490
20.3 Carbonaceous organic matter 493
20.4 Metamorphosed siliceous carbonate rocks 493
20.5 Thermodynamics of mineral reactions with H20-C02 fluids 497
20.6 Reaction progress and fluid infiltration 504
20.7 Problems 508
21 Material transport during metamorphism 511
21.1 Introduction 511
21.2 Porosity 512
21.3 Fluid flow 514
21.4 Diffusion 517
21.5 Mechanical dispersion 518
21.6 Dissolution of minerals in supercritical H20 519
21.7 Mass transfer mechanisms at a metamorphic isograd 521
21.8 Metasomatic zonation 522
21.9 Estimating fluid fluxes during metamorphism using geochemical fronts 525
21.10 Fluid fluxes along gradients in temperature and pressure 530
21.11 Reaction kinetics 533
21.12 Multidimensional transport and reaction 540
21.13 Determining changes in composition and volume using mass balance 550
21.14 Regional fluid transport through the crust 555
21.15 Problems 556
22 Pressure-temperature-time paths and heat transfer
during metamorphism 560
22.1 Introduction 560
22.2 Preservation of metamorphic mineral assemblages 560
xii Contents
22.3 Metamorphic field gradients 562
22.4 Calculation of pressure-temperature-time paths 563
22.5 Heat advection by fluids and magmas 569
22.6 Effects of reaction 574
22.7 Observed P-T-t paths 575
22.8 Problems 580
23 Origin of rocks 584
23.1 Introduction 584
23.2 Advective heat transfer in the Earth 585
23.3 Conditions necessary for rock generation 591
23.4 Generation and accumulation of melts 599
23.5 Composition of the source of magmas 601
23.6 Partial melting in the source region 604
23.7 Summary and conclusions 612
23.8 Problems 612
Answers to selected numerical problems 615
References 618
Index 645
|
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author | Philpotts, Anthony R. 1938- Ague, Jay J. |
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indexdate | 2024-07-09T21:30:05Z |
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publisher | Cambridge Univ. Press |
record_format | marc |
spelling | Philpotts, Anthony R. 1938- Verfasser (DE-588)140035486 aut Principles of igneous and metamorphic petrology Anthony R. Philpotts ; Jay J. Ague 2. ed. Cambridge [u.a.] Cambridge Univ. Press 2009 XVIII, 667 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Hier auch später erschienene, unveränderte Nachdrucke "This textbook provides a basic understanding of the formative processes of igneous and metamorphic rock through quantitative applications of simple physical and chemical principles. The book encourages a deeper comprehension of the subject by explaining the petrologic principles rather than simply presenting the student with petrologic facts and terminology. Assuming knowledge of only introductory college-level courses in physics, chemistry, and calculus, it lucidly outlines mathematical derivations fully and at an elementary level, and is ideal for intermediate and advanced courses in igneous and metamorphic petrology. The end-of-chapter quantitative problem sets facilitate student learning by working through simple applications. They also introduce several widely-used thermodynamic software programs for calculating igneous and metamorphic phase equilibria and image analysis software. With over 350 illustrations, this revised edition contains valuable new material on the structure of the Earth's mantle and core, the properties and behaviour of magmas, recent results from satellite imaging, and more."--BOOK JACKET. Rocks, Igneous Rocks, Metamorphic Petrology Metamorphes Gestein (DE-588)4114576-8 gnd rswk-swf Gesteinskunde (DE-588)4020740-7 gnd rswk-swf Magmatisches Gestein (DE-588)4036974-2 gnd rswk-swf Magmatisches Gestein (DE-588)4036974-2 s Gesteinskunde (DE-588)4020740-7 s DE-604 Metamorphes Gestein (DE-588)4114576-8 s Ague, Jay J. Verfasser (DE-588)1081662786 aut http://www.loc.gov/catdir/enhancements/fy0901/2008040943-b.html Contributor biographical information http://www.loc.gov/catdir/enhancements/fy0901/2008040943-d.html Publisher description http://www.loc.gov/catdir/enhancements/fy0901/2008040943-t.html Table of contents only HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017075908&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Philpotts, Anthony R. 1938- Ague, Jay J. Principles of igneous and metamorphic petrology Rocks, Igneous Rocks, Metamorphic Petrology Metamorphes Gestein (DE-588)4114576-8 gnd Gesteinskunde (DE-588)4020740-7 gnd Magmatisches Gestein (DE-588)4036974-2 gnd |
subject_GND | (DE-588)4114576-8 (DE-588)4020740-7 (DE-588)4036974-2 |
title | Principles of igneous and metamorphic petrology |
title_auth | Principles of igneous and metamorphic petrology |
title_exact_search | Principles of igneous and metamorphic petrology |
title_full | Principles of igneous and metamorphic petrology Anthony R. Philpotts ; Jay J. Ague |
title_fullStr | Principles of igneous and metamorphic petrology Anthony R. Philpotts ; Jay J. Ague |
title_full_unstemmed | Principles of igneous and metamorphic petrology Anthony R. Philpotts ; Jay J. Ague |
title_short | Principles of igneous and metamorphic petrology |
title_sort | principles of igneous and metamorphic petrology |
topic | Rocks, Igneous Rocks, Metamorphic Petrology Metamorphes Gestein (DE-588)4114576-8 gnd Gesteinskunde (DE-588)4020740-7 gnd Magmatisches Gestein (DE-588)4036974-2 gnd |
topic_facet | Rocks, Igneous Rocks, Metamorphic Petrology Metamorphes Gestein Gesteinskunde Magmatisches Gestein |
url | http://www.loc.gov/catdir/enhancements/fy0901/2008040943-b.html http://www.loc.gov/catdir/enhancements/fy0901/2008040943-d.html http://www.loc.gov/catdir/enhancements/fy0901/2008040943-t.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017075908&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT philpottsanthonyr principlesofigneousandmetamorphicpetrology AT aguejayj principlesofigneousandmetamorphicpetrology |