Review of mantle plume activity and the opening of the East African Rift
-
摘要: 东非裂谷是世界上最典型的一条大陆裂谷,通常认为由东部分支和西部分支两部分组成。在总结前人研究成果的基础上,本文从地球物理、岩石学及地球化学等方面探讨了东非裂谷的演化与地幔柱的关系,提出大型不均一地幔柱上升过程中分异出两个浅部次级地幔柱的模型,分别对应埃塞俄比亚西北和图尔卡纳具有不同地球化学性质的岩浆作用。埃塞俄比亚西北的岩浆作用具有“普通”地幔的成分,表明阿法儿地幔柱是一个典型的热柱。图尔卡纳的岩浆作用则混染了古老再循环洋壳的成分,表明肯尼亚地幔柱热柱的属性已经被破坏。Abstract: The East African Rift is the most typical continental rift in the world.Ⅰt is generally believed that the rift consists of two parts:the East Branch and the West Branch.By summing up the previous research results,this paper discusses the relationship between the evolution of the East African Rift and the mantle plume in terms of geophysics,petrology and geochemistry.The models correspond to magmatism with different geochemical properties in northwest Ethiopia and Turkana,respectively.Finally,the possible patterns of the mantle plume under the East African Rift were discussed.
-
Key words:
- mantle plume /
- geophysics /
- petrology /
- geochemistry /
- continental rift
-
-
[1] 王登红.地幔柱的概念,分类,演化与大规模成矿—对中国西南部的探讨[J].地学前缘,2001,8(3):67-72.
[2] MORGAN W J.Convection plumes in the lower mantle[J].Nature,1971,230(5288):42-43.
[3] RICHARDS M A,DUNCAN R A,COURTILLOT V E.Flood basalts and hot-spot tracks: plume heads and tails[J].Science,1989,246(4926):103-107.
[4] CAMPBELL I H,GRIFFITHS R W.Implications of mantle plume structure for the evolution of flood basalts[J].Earth and Planetary Science Letters,1990,99(1-2):79-93.
[5] HOOPER P R.The timing of crustal extension and the eruption of continental flood basalts[J].Nature,1990,345(6272):246.
[6] HILL R I.Starting plumes and continental break-up[J].Earth and Planetary Science Letters,1991,104(2-4): 398-416.
[7] GRIFFITHS R W,CAMPBELL I H.Interaction of mantle plume heads with the Earth's surface and onset of smallscale convection[J].Journal of Geophysical Research: Solid Earth,1991,96(B11):18295-18310.
[8] COURTILLOT V,JAUPART C,MANIGHETTI I,et al.On causal links between flood basalts and continental breakup[J].Earth and Planetary Science Letters,1999,166(3-4):177-195.
[9] KONTER J G,HANAN B B,BLICHERT-TOFT J,et al.One hundred million years of mantle geochemical history suggest the retiring of mantle plumes is premature[J].Earth and Planetary Science Letters,2008,275(3-4):285-295.
[10] ANDERSON D L.Hawaii,boundary layers and ambient mantle—geophysical constraints[J].Journal of Petrology,2011,52(7-8):1547-1577.
[11] CASTILLO P R,HILTON D R,HALLDÓRSSON S A.Trace element and Sr-Nd-Pb isotope geochemistry of Rungwe Volcanic Province,Tanzania: implications for a Superplume source for East Africa Rift magmatism[J].Frontiers in Earth Science,2014,2:21.
[12] EBINGER C J,SLEEP N H.Cenozoic magmatism throughout east Africa resulting from impact of a single plume[J].Nature,1998,395(6704):788.
[13] RITSEMA J,VAN HEIJST H J,WOODHOUSE J H.Complex shear wave velocity structure imaged beneath Africa and Iceland[J].Science,1999,286(5446):1925-1928.
[14] DARADICH A,MITROVICA J X,PYSKLYWEC R N,et al.Mantle flow,dynamic topography,and rift-flank uplift of Arabia[J].Geology,2003,31(10):901-904.
[15] NYBLADE A A.The upper-mantle low-velocity anomaly beneath Ethiopia,Kenya,and Tanzania: Constraints on the origin of the African superswell in eastern Africa and plate versus plume models of mantle dynamics[J].Geological Society of America Special Papers,2011,478:37-50.
[16] HANSEN S E,NYBLADE A A,BENOIT M H.Mantle structure beneath Africa and Arabia from adaptively parameterized P-wave tomography: Implications for the origin of Cenozoic Afro-Arabian tectonism[J].Earth and Planetary Science Letters,2012,319:23-34.
[17] GRIJALVA A N,KACHINGWE M,NYBLADE A,et al.Upper mantle P-wave velocity structure beneath northern Lake Malawi and the Rungwe Volcanic Province,East Africa[C].2015.
[18] ACCARDO N J,GAHERTY J B,SHILLINGTON D J,et al.Surface wave imaging of the weakly extended Malawi Rift from ambient-noise and teleseismic Rayleigh waves from onshore and lake-bottom seismometers[J].Geophysical Journal International,2017,209(3):1892-1905.
[19] KACHINGWE M,NYBLADE A,EBINGER C J,et al.Preliminary results on crust and upper mantle structure in the Rungwe Volcanic Province,Tanzania from the SEGMeNT project[R].Thin Soild Films,2014.
[20] MASON R.Basement Tectonics 7[M].Springer Science &Business Media,1992.
[21] TEPP G,EBINGER C J,SHILLINGTON D J,et al.Seismic Anisotropy of the Upper Mantle Below the Southwestern East African Rift and the Rungwe Volcanic Province[C].2016.
[22] CHANG S,VAN DER LEE S.Mantle plumes and associated flow beneath Arabia and East Africa[J].Earth and Planetary Science Letters,2011,302(3-4):448-454.
[23] PIK R,MARTY B,HILTON D R.How many mantle plumes in Africa?The geochemical point of view[J].Chemical Geology,2006,226(3-4):100-114.
[24] FURMAN T,KALETA K M,BRYCE J G,et al.Tertiary mafic lavas of Turkana,Kenya: constraints on East African plume structure and the occurrence of high-μ volcanism in Africa[J].Journal of Petrology,2006,47(6):1221-1244.
[25] ROONEY T O,HANAN B B,GRAHAM D W,et al.Upper mantle pollution during Afar plume-continental rift interaction[J].Journal of Petrology,2011,53(2):365-389.
[26] ARMITAGE J J,FERGUSON D J,GOES S,et al.Upper mantle temperature and the onset of extension and breakup in Afar,Africa[J].Earth and Planetary Science Letters,2015,418:78-90.
[27] BAKER B T,WOHLENBERG J.Structure and evolution of the Kenya Rift Valley[J].Nature,1971,229(5286):538.
[28] MCCONNELL R B.Geological development of the rift system of eastern Africa[J].Geological Society of America Bulletin,1972,83(9):2549-2572.
[29] RING U.THE EAST AFRICAN RIFT SYSTEM.[J].Austrian Journal of Earth Sciences,2014,107(1):132-146.
[30] 郭曦泽,侯贵廷.东非裂谷系西支(湖区)油气资源潜力评价与分析[J].地球科学前沿,2004,4(2):94-103.
[31] JAKOVLEV A,RÜMPKER G,SCHMELING H,et al.Seismic images of magmatic rifting beneath the western branch of the East African rift[J].Geochemistry,Geophysics,Geosystems,2013,14(11):4906-4920.
[32] BEGG G C,GRIFFIN W L,NATAPOV L M,et al.The lithospheric architecture of Africa: Seismic tomography,mantle petrology,and tectonic evolution[J].Geosphere,2009,5(1):23-50.
[33] KAMPUNZU A B,MOHR P.Magmatic evolution and petrogenesis in the East African rift system[M].Magmatism in extensional structural settings,Springer,1991,85-136.
[34] FONTIJN K,ERNST G G,ELBURG M A,et al.Holocene explosive eruptions in the Rungwe Volcanic Province,Tanzania[J].Journal of volcanology and geothermal research,2010,196(1-2):91-110.
[35] SUN K,ZHANG L,ZHAO Z,et al.Episodic crustal growth in the Tanzania Craton: evidence from Nd isotope compositions[J].China Geology,2018,1(2):210-224.
[36] YUAN Y,LI S,PENG J,et al.An integrated ore prospecting model for the Nyasirori gold deposit in Tanzania[J].China Geology,2019,2(4):407-421.
[37] 任军平,王杰,刘晓阳,等.坦桑尼亚Nzega 绿岩带Golden Pride 金矿床研究进展[J].地质调查与研究,2013,36(1):47-53.
[38] 何胜飞,孙凯,王杰,等.坦桑尼亚西北部卡邦加铜镍硫化物矿床研究进展[J].地质调查与研究,2014,37(1):6-12.
[39] ROGERS N W,DE MULDER M,HAWKESWORTH C J.An enriched mantle source for potassic basanites: evidence from Karisimbi volcano,Virunga volcanic province,Rwanda[J].Contributions to Mineralogy and Petrology,1992,111(4):543-556.
[40] ROGERS N W,JAMES D,KELLEY S P,et al.The generation of potassic lavas from the eastern Virunga province,Rwanda[J].Journal of Petrology,1998,39(6):1223-1247.
[41] ROGERS N,MACDONALD R,FITTON J G,et al.Two mantle plumes beneath the East African rift system: Sr,Nd and Pb isotope evidence from Kenya Rift basalts[J].Earth and Planetary Science Letters,2000,176(3-4):387-400.
[42] ROGERS N W,THOMAS L E,MACDONALD R,et al.238U-230Th disequilibrium in recent basalts and dynamic melting beneath the Kenya rift[J].Chemical Geology,2006,234(1-2):148-168.
[43] FURMAN T,GRAHAM D.Erosion of lithospheric mantle beneath the East African Rift system: geochemical evidence from the Kivu volcanic province[M].Developments in Geotectonics,Elsevier,1999:24,237-262.
[44] FURMAN T.Geochemistry of East African Rift basalts: an overview[J].Journal of African Earth Sciences,2007,48(2-3):147-160.
[45] CHAKRABARTI R,BASU A R,SANTO A P,et al.Isotopic and geochemical evidence for a heterogeneous mantle plume origin of the Virunga volcanics,Western rift,East African Rift system[J].Chemical Geology,2009,259(3-4):273-289.
[46] ROSENTHAL A,FOLEY S F,PEARSON D G,et al.Petrogenesis of strongly alkaline primitive volcanic rocks at the propagating tip of the western branch of the East African Rift[J].Earth and Planetary Science Letters,2009,284(1-2):236-248.
[47] DE MOOR J M,FISCHER T P,SHARP Z D,et al.Gas chemistry and nitrogen isotope compositions of cold mantle gases from Rungwe Volcanic Province,southern Tanzania[J].Chemical Geology,2013,339:30-42.
[48] SCHILLING J G.Afar mantle plume:rare earth evidence[J].Nature Physical Science,1973,242(114):2-5.
[49] WHITE R,MCKENZIE D.Magmatism at rift zones: the generation of volcanic continental margins and flood basalts[J].Journal of Geophysical Research: Solid Earth,1989,94(B6):7685-7729.
[50] VIDAL P,DENIEL C,VELLUTINI P J,et al.Changes of mantle sources in the course of a rift evolution:the Afar case[J].Geophysical Research Letters,1991,18(10): 1913-1916.
[51] STEWART K,ROGERS N.Mantle plume and lithosphere contributions to basalts from southern Ethiopia[J].Earth and Planetary Science Letters,1996,139(1-2):195-211.
[52] HOFMANN C,COURTILLOT V,FERAUD G,et al.Timing of the Ethiopian flood basalt event and implications for plume birth and global change[J].Nature,1997,389(6653):838.
[53] PIK R,DENIEL C,COULON C,et al.Isotopic and trace element signatures of Ethiopian flood basalts: evidence for plume-lithosphere interactions[J].Geochimica et Cosmochimica Acta,1999,63(15):2263-2279.
[54] KIEFFER B,ARNDT N,LAPIERRE H,et al.Flood and shield basalts from Ethiopia: magmas from the African superswell[J].Journal of Petrology,2004,45(4):793-834.
[55] FURMAN T,BRYCE J,ROONEY T,et al.Heads and tails:30 million years of the Afar plume[J].Geological Society,London,Special Publications,2006,259(1):95-119.
[56] WHITEHEAD JR J A,LUTHER D S.Dynamics of laboratory diapir and plume models[J].Journal of Geophysical Research,1975,80(5):705-717.
[57] VAN KEKEN P.Evolution of starting mantle plumes: a comparison between numerical and laboratory models[J].Earth and Planetary Science Letters,1997,148(1-2): 1-11.
[58] VAN DER HILST R D,WIDIYANTORO S,ENGDAHL E R.Evidence for deep mantle circulation from global tomography[J].Nature,1997,386(6625):578.
[59] KENNETT B,WIDIYANTORO S,VAN DER HILST R D.Joint seismic tomography for bulk sound and shear wave speed in the Earth's mantle[J].Journal of Geophysical Research:Solid Earth,1998,103(B6):12469-12493.
[60] LAY T,WILLIAMS Q,GARNERO E J.The core-mantle boundary layer and deep Earth dynamics[J].Nature,1998,392(6675):461.
[61] NI S,TAN E,GURNIS M,et al.Sharp sides to the African superplume[J].science,2002,296(5574):1850-1852.
[62] SIMMONS N A,FORTE A M,GRAND S P.Thermochemical structure and dynamics of the African superplume[J].Geophysical Research Letters,2007,34(2):2301.
[63] GARNERO E J,LAY T,MCNAMARA A.Implications of lower-mantle structural heterogeneity for the existence and nature of whole-mantle plumes[J].Special Papers-Geological Society of America,2007,430:79.
[64] BURKE K,STEINBERGER B,TORSVIK T H,et al.Plume generation zones at the margins of large low shear velocity provinces on the core-mantle boundary[J].Earth and Planetary Science Letters,2008,265(1-2):49-60.
[65] TORSVIK T H,BURKE K,STEINBERGER B,et al.Diamonds sampled by plumes from the core-mantle boundary[J].Nature,2010,466(7304):352.
[66] DAVAILLE A,LE BARS M,CARBONNE C.Thermal convection in a heterogeneous mantle[J].Comptes Rendus Geoscience,2003,335(1):141-156.
[67] LIN S,VAN KEKEN P E.Multiple volcanic episodes of flood basalts caused by thermochemical mantle plumes[J].Nature,2005,436(7048):250.
[68] LIN S,VAN KEKEN P E.Dynamics of thermochemical plumes:1.Plume formation and entrainment of a dense layer[J].Geochemistry,Geophysics,Geosystems,2006,7(2).
[69] KUMAGAI I,DAVAILLE A,KURITA K,et al.Mantle plumes: thin,fat,successful,or failing? Constraints to explain hot spot volcanism through time and space[J].Geophysical Research Letters,2008,35(16):797-801.
[70] EBINGER C J,BECHTEL T D,FORSYTH D W,et al.Effective elastic plate thickness beneath the East African and Afar plateaus and dynamic compensation of the uplifts[J].Journal of Geophysical Research: Solid Earth,1989,94(B3):2883-2901.
[71] SIMIYU S M,KELLER G R.An integrated analysis of lithospheric structure across the East African plateau based on gravity anomalies and recent seismic studies[J].Tectonophysics,1997,278(1-4):291-313.
[72] BENOIT M H,NYBLADE A A,VANDECAR J C.Upper mantle P-wave speed variations beneath Ethiopia and the origin of the Afar hotspot[J].Geology,2006,34(5):329-332.
[73] GEORGE R,ROGERS N,KELLEY S.Earliest magmatism in Ethiopia: Evidence for two mantle plumes in one flood basalt province[J].Geology,1998,26(10):923-926.
[74] MARTY B,GEZAHEGN Y.Helium isotopic variations in Ethiopian plume lavas:nature of magmatic sources and limit on lower mantle contribution[J].Earth and Planetary Science Letters,1996,144(1-2):223-237.
[75] ZEYEN H,VOLKER F,WEHRLE V,et al.Styles of continental rifting: crust-mantle detachment and mantle plumes[J].Tectonophysics,1997,278(1-4):329-352.
[76] NYBLADE A A,KNOX R P,GURROLA H.Mantle transition zone thickness beneath Afar: implications for the origin of the Afar hotspot[J].Geophysical Journal International,2000,142(2):615-619.
[77] NYBLADE A A,OWENS T J,GURROLA H,et al.Seismic evidence for a deep upper mantle thermal anomaly beneath east Africa[J].Geology,2000,28(7):599-602.
[78] WEERARATNE D S,FORSYTH D W,FISCHER K M,et al.Evidence for an upper mantle plume beneath the Tanzanian craton from Rayleigh wave tomography[J].Journal of Geophysical Research:Solid Earth,2003,108(B9).
[79] BASTOW I D,NYBLADE A A,STUART G W,et al.Upper mantle seismic structure beneath the Ethiopian hot spot:Rifting at the edge of the African low-velocity anomaly[J].Geochemistry,Geophysics,Geosystems,2008,9(12).
[80] ADAMS A,NYBLADE A,WEERARATNE D.Upper mantle shear wave velocity structure beneath the East African plateau: evidence for a deep,plateauwide low velocity anomaly[J].Geophysical Journal International,2012,189(1):123-142.
[81] MONTELLI R,NOLET G,DAHLEN F A,et al.A catalogue of deep mantle plumes: New results from finite-frequency tomography[J].Geochemistry,Geophysics,Geosystems,2006,7(11).
[82] GRAND S P.Mantle shear-wave tomography and the fate of subducted slabs[J].Philosophical Transactions of the Royal Society of London.Series A: Mathematical,Physical and Engineering Sciences,2002,360(1800):2475-2491.
[83] ZHAO D.Global tomographic images of mantle plumes and subducting slabs:insight into deep Earth dynamics[J].Physics of the Earth and Planetary Interiors,2004,146(1-2):3-34.
[84] HUERTA A D,NYBLADE A A,REUSCH A M.Mantle transition zone structure beneath Kenya and Tanzania: more evidence for a deep-seated thermal upwelling in the mantle[J].Geophysical Journal International,2009,177(3):1249-1255.
[85] SUN D,HELMBERGER D,GURNIS M.A narrow,midmantle plume below southern Africa[J].Geophysical Research Letters,2010,37(9):384-397.
[86] FRIZON DE LAMOTTE D,FOURDAN B,LELEU S,et al.Style of rifting and the stages of Pangea breakup[J].Tectonics,2015,34(5):1009-1029.
[87] LI W X,LI X H,LI Z.Ca.850 Ma bimodal volcanic rocks in northeastern Jiangxi Province,South China:Initial extension during the breakup of Rodinia?[J].American Journal of Science,2010,310(9):951-980.
[88] RASCHKA H,MULLER P.Contribution to the Geochemistry of Volcanics,Afar region,Ethiopia[J].Afar Depression of Ethiopia Stuttgart(Schuleizerbart),1975.
[89] WANG X,WILDE S A,XU B,et al.Origin of arc-like continental basalts: implications for deep-Earth fluid cycling and tectonic discrimination[J].Lithos,2016,261:5-45.
[90] LYU P,LI W,WANG X,et al.Initial breakup of supercontinent Rodinia as recorded by ca 860~840 Ma bimodal volcanism along the southeastern margin of the Yangtze Block,South China[J].Precambrian Research,2017,296:148-167.
[91] WILSON B M.Igneous petrogenesis a global tectonic approach[M].Springer Science&Business Media,2007.
[92] BAKER B H.Outline of the petrology of the Kenya rift alkaline province[J].Geological Society,London,Special Publications,1987,30(1):293-311.
[93] 姚华舟,陈开旭,王建雄,等.东非裂谷系统(EARS)地幔柱成因的新生代火山作用地球化学标志[J].华南地质与矿产,2018,34(01):10-21.
[94] PIK R,DENIEL C,COULON C,et al.The northwestern Ethiopian Plateau flood basalts: classification and spatial distribution of magma types[J].Journal of Volcanology and Geothermal Research,1998,81(1-2):91-111.
[95] GEORGE R,ROGERS N.Plume dynamics beneath the African plate inferred from the geochemistry of the Tertiary basalts of southern Ethiopia[J].Contributions to Mineralogy and Petrology,2002,144(3):286-304.
[96] SCHILLING J G,KINGSLEY R H,HANAN B B,et al.Nd-Sr-Pb isotopic variations along the Gulf of Aden: Evidence for Afar mantle plume-continental lithosphere interaction[J].Journal of Geophysical Research: Solid Earth,1992,97(B7):10927-10966.
[97] HANAN B B,GRAHAM D W.Lead and helium isotope evidence from oceanic basalts for a common deep source of mantle plumes[J].Science,1996,272(5264):991-995.
[98] GELDMACHER J,HOERNLE K,HANAN B B,et al.Hafnium isotopic variations in East Atlantic intraplate volcanism[J].Contributions to Mineralogy and Petrology,2011,162(1):21-36.
[99] GRAHAM D W.Noble gas isotope geochemistry of midocean ridge and ocean island basalts: Characterization of mantle source reservoirs[J].Reviews in mineralogy and geochemistry,2002,47(1):247-317.
[100] ZINDLER A,HART S.Chemical geodynamics[J].Annual review of earth and planetary sciences,1986,14(1): 493-571.
[101] FARLEY K A,NATLAND J H,CRAIG H.Binary mixing of enriched and undegassed (primitive?) mantle components(He,Sr,Nd,Pb) in Samoan lavas[J].Earth and Planetary Science Letters,1992,111(1):183-199.
[102] CLASS C,GOLDSTEIN S L.Evolution of helium isotopes in the Earth's mantle[J].Nature,2005,436(7054):1107.
[103] DAY J M,HILTON D R.Origin of 3He/4He ratios in HIMU-type basalts constrained from Canary Island lavas[J].Earth and Planetary Science Letters,2011,305(1-2): 226-234.
[104] PARMAN S W,KURZ M D,HART S R,et al.Helium solubility in olivine and implications for high 3 He/4 He in ocean island basalts[J].Nature,2005,437(7062):1140.
[105] ALBARÈDE F.Rogue mantle helium and neon[J].Science,2008,319(5865):943-945.
[106] NELSON W R,FURMAN T,VAN KEKEN P E,et al.Os-Hf isotopic insight into mantle plume dynamics beneath the East African Rift System[J].Chemical Geology,2012,320:66-79.
[107] FURMAN T,GRAHAM D.Chemical and isotopic variations in volcanic rocks from the Rungwe Province: constraints on the development and scales of source heterogeneity beneath the African Western Rift[J].Mineralogical Magazine,1994,58(1):297-298.
[108] CLASS C,GOLDSTEIN S L,STUTE M,et al.Grand Comore Island: A well-constrained“low 3He/4He”mantle plume[J].Earth and Planetary Science Letters,2005,233(3-4):391-409.
[109] HOFMANN A W,WHITE W M.Mantle plumes from ancient oceanic crust[J].Earth and Planetary Science Letters,1982,57(2):421-436.
[110] GRAHAM D W,HUMPHRIS S E,JENKINS W J,et al.Helium isotope geochemistry of some volcanic rocks from Saint Helena[J].Earth and Planetary Science Letters,1992,110(1-4):121-131.
[111] CLASS C,ALTHERR R,VOLKER F,et al.Geochemistry of Pliocene to Quaternary alkali basalts from the Huri Hills,northern Kenya[J].Chemical Geology,1994,113(1-2):1-22.
[112] FURMAN T,BRYCE J G,KARSON J,et al.East African Rift System (EARS) plume structure: insights from Quaternary mafic lavas of Turkana,Kenya[J].Journal of Petrology,2004,45(5):1069-1088.
[113] LOCKE J A,BRYCE J G,FURMAN T,et al.Hf isotopic insights into mantle source contributions in Turkana East African Rift System[J].Geochimica et Cosmochimica Acta Supplement,2008,72:A566.
[114] GRAHAM D,FURMAN T,EBINGER C J,et al.Helium,Lead,Strontium and Neodymium Isotope Variations in Mafic Volcanic Rocks from the Western Branch of the East African Rift System[J].Eos,1995(76):686.
[115] HILTON D R,HALLDÓRSSON S A,BARRY P H,et al.Helium isotopes at Rungwe Volcanic Province,Tanzania,and the origin of East African plateaux[J].Geophysical Research Letters,2011,38(21).
[116] FURMAN T.Melting of metasomatized subcontinental lithosphere: undersaturated mafic lavas from Rungwe,Tanzania[J].Contributions to Mineralogy and Petrology,1995,122(1-2):97-115.
[117] BAKER J A,THIRLWALL M F,MENZIES M A.Sr-Nd-Pb isotopic and trace element evidence for crustal contamination of plume-derived flood basalts: Oligocene flood volcanism in western Yemen[J].Geochimica et Cosmochimica Acta,1996,60(14):2559-2581.
[118] FARNETANI C G,SAMUEL H.Beyond the thermal plume paradigm[J].Geophysical Research Letters,2005,32(7):303-341.
[119] TAN E,GURNIS M.Compressible thermochemical convection and application to lower mantle structures[J].Journal of Geophysical Research,2007,112(B6).
[120] SAMUEL H,BERCOVICI D.Oscillating and stagnating plumes in the Earth's lower mantle[J].Earth and Planetary Science Letters,2006,248(1-2):90-105.
[121] CHRISTENSEN U R,HOFMANN A W.Segregation of subducted oceanic crust in the convecting mantle[J].Journal of Geophysical Research: Solid Earth,1994,99(B10):19867-19884.
[122] BRANDENBURG J P,HAURI E H,VAN KEKEN P E,et al.A multiple-system study of the geochemical evolution of the mantle with force-balanced plates and thermochemical effects[J].Earth and Planetary Science Letters,2008,276(1-2):1-13.
[123] FAUST J,KNITTLE E.The stability and equation of state of majoritic garnet synthesized from natural basalt at mantle conditions[J].Geophysical research letters,1996,23(23):3377-3380.
[124] VAN KEKEN P E,KARATO S,YUEN D A.Rheological control of oceanic crust separation in the transition zone[J].Geophysical Research Letters,1996,23(14):1821-1824.
[125] CHRISTENSEN U.Is subducted lithosphere trapped at the 670-km discontinuity? [J].Nature,1988,336(6198):462-463.
[126] WEINSTEIN S A.Induced compositional layering in a convecting fluid layer by an endothermic phase transition[J].Earth and planetary science letters,1992,113(1-2):23-39.
[127] VAN SUMMEREN J,VAN DEN BERG A P,VAN DER HILST R D.Upwellings from a deep mantle reservoir filtered at the 660 km phase transition in thermo-chemical convection models and implications for intra-plate volcanism[J].Physics of the Earth and Planetary Interiors,2009,172(3-4):210-224.
[128] FARNETANI C G.Excess temperature of mantle plumes:the role of chemical stratification across D ″[J].Geophysical Research Letters,1997,24(13):1583-1586.
-
计量
- 文章访问数: 40
- PDF下载数: 6
- 施引文献: 0