稀有气体同位素在油气藏动态演化研究中的应用探讨

钟 万旭
中国石化勘探分公司勘探研究院

摘要


本研究深入调研了稀有气体同位素地球化学方法对于复杂油气藏动态演化研究的应用原理与前景。详细阐
述了地下油气系统中稀有气体同位素的不同来源及组成特征。分析了稀有气体在地下不同流体相中的物理化学特征。
基于对稀有气体元素分馏过程及特征的分析,论述了稀有气体同位素可作为研究复杂含油气盆地(例如四川盆地)
油气动态成藏的有效手段。

关键词


稀有气体同位素;油气藏动态演化;地球化学;复杂含油气盆地;油气勘探

全文:

PDF


参考


[1]魏国齐,杨威,刘满仓,等.四川盆地大气田分

布、主控因素与勘探方向[J].天然气工业,2019,39(06):

1-12.

[2]Kipfer R, Aeschbach-Hertig W, Peeters F, et al.

Noble gases in lakes and ground waters[J]. 2002.

[3]Rudnick R L, Fountain D M. Nature and

composition of the continental crust: a lower crustal

perspective[J]. Reviews of geophysics, 1995, 33(3): 267-309.

[4]Ballentine C J, Burnard P G. Production, release and

transport of noble gases in the continental crust[J]. Reviews in

mineralogy and geochemistry, 2002, 47(1): 481-538.

[5]Ozima M, Podosek F A. Noble gas geochemistry[M].

Cambridge University Press, 2002.

[6]Ballentine C J, Burgess R, Marty B. 13. Tracing

Fluid Origin, Transport and Interaction in the Crust[J]. Rev.

Mineral. Geochem, 2002, 47: 539-614.

[7]Lollar B S, Ballentine C J, Onions R K. The fate

of mantle-derived carbon in a continental sedimentary

basin: Integration of CHe relationships and stable isotope

signatures[J]. Geochimica et cosmochimica acta, 1997, 61(11):

2295-2307.

[8]Dymond J H, Smith E B. Virial coefficients of pure

gases and mixtures. A critical compilation[J]. 1980.

[9]Gray C G, Gubbins K E, Joslin C G. Theory of

Molecular Fluids: Volume 2: Applications[M]. Oxford

University Press, 2011.

[10]Smith S P, Kennedy B M. The solubility of

noble gases in water and in NaCl brine[J]. Geochimica et

Cosmochimica Acta, 1983, 47(3): 503-515.

[11]Smith S P. Noble gas solubility in water at high

temperature[J]. Eos, 1985, 66: 397.

[12]Crovetto R, Fernández‐Prini R, Japas M L.

Solubilities of inert gases and methane in H2O and in D2O

in the temperature range of 300 to 600 K[J]. The Journal of

Chemical Physics, 1982, 76(2): 1077-1086.

[13]Kharaka Y K, Specht D J. The solubility of noble

gases in crude oil at 25-100 C[J]. Applied geochemistry,

1988, 3(2): 137-144.

[14]Ballentine C J, O'Nions R K, Coleman M L. A

Magnus opus: Helium, neon, and argon isotopes in a North

Sea oilfield[J]. Geochimica et Cosmochimica Acta, 1996,

60(5): 831-849.

[15]Zhou Z, Ballentine C J, Kipfer R, et al. Noble gas

tracing of groundwater/coalbed methane interaction in the

San Juan Basin, USA[J]. Geochimica et Cosmochimica Acta,

2005, 69(23): 5413-5428.

[16]Pujol M, Van den Boorn S, Bourdon B, et al.

Physical processes occurring in tight gas reservoirs from

Western Canadian Sedimentary Basin: Noble gas signature[J].

Chemical Geology, 2018, 480: 128-138.

[17]Prinzhofer A. Noble gases in oil and gas

accumulations[J]. The noble gases as geochemical tracers,

2013: 225-247.

[18]Barry P H, Lawson M, Meurer W P, et al. Noble

gases solubility models of hydrocarbon charge mechanism in

the Sleipner Vest gas field[J]. Geochimica et Cosmochimica

Acta, 2016, 194: 291-309.

[19]Kennedy B M, Torgersen T, Van Soest M C.

Multiple atmospheric noble gas components in hydrocarbon

reservoirs: a study of the Northwest Shelf, Delaware Basin,

SE New Mexico[J]. Geochimica et cosmochimica acta, 2002,

66(16): 2807-2822.


Refbacks

  • 当前没有refback。