The thermal regime of the crystalline continental crust: Implications from the KTB

被引:111
作者
Clauser, C
Giese, P
Huenges, E
Kohl, T
Lehmann, H
Rybach, L
Safanda, J
Wilhelm, H
Windloff, K
Zoth, G
机构
[1] FREE UNIV BERLIN, INST GEOL GEOPHYS & GEOINFORMAT, D-12249 BERLIN, GERMANY
[2] GEOFORSCHUNGSZENTRUM POTSDAM, D-14473 POTSDAM, GERMANY
[3] ETH HONGGERBERG, INST GEOPHYS, CH-8093 ZURICH, SWITZERLAND
[4] ACAD SCI CZECH REPUBL, INST GEOPHYS, CR-14131 PRAGUE 4, CZECH REPUBLIC
[5] UNIV KARLSRUHE, INST GEOPHYS, D-76187 KARLSRUHE, GERMANY
[6] TECH UNIV BERLIN, INST ANGEW GEOPHYS PETROL & LAGERSTATTENFORSCH, D-13355 BERLIN, GERMANY
关键词
D O I
10.1029/96JB03443
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
An extensive geothermal research program within the German Continental Deep Drilling Program (KTB) covered an almost complete spectrum of experimental and theoretical aspects. The main results and conclusions are as follows: (1)Equilibrium temperature is 118.6 degrees C at 4000 m in the KTB pilot borehole (KTB-VB) and will be around 260 degrees C at 9100 m in the KTB main borehole (KTB-HB). Time required for thermal equilibration of the KTB-HB to within 1% of the initial perturbation will be about 13-16 years. (2) The failure to predict temperature correctly for the KTB was mainly due to an unaccounted perturbation by a transient ground surface temperature history. (3) Pleistocene surface temperature variations affect the present-day crustal temperature between 1.3 to 2.7 K up to a depth of 4000 m. Accordingly, present-day heat flow density is systematically too low down to approximately 1500 m. Model simulations indicate that groundwater flow does not eliminate paleoclimatic signals, even though it may translate them to a depth incompatible with both their diffusive age and their amplitude. These results emphasize the importance of an adequate consideration of paleoclimatic effects for the interpretation of thermal data. (4) Lateral heat transport is significant when steep inclination and folding of the rock formations coincide with contrasts in thermal conductivity. This is indicated by typical variations in the vertical components of temperature gradient and heat flow density, such as in the KTB-HB. In contrast, thermally relevant advection of heat is confined to the top 500-1000 m. In the vincinity of the KTB, this is about twice the maximum difference in elevation. (5) In the deeper crust, free convection systems require permeabilities greater than 10(-17) m(2) for large rock volumes, but simple numerical models indicate that the associated temperature regimes are imcompatible with KTB borehole data. (6) Heat production rate shows no systematic with depth and is related to lithology at the KTB crystalline rock. Numerical models, using heat production rate derived from seismic velocities, yield temperatures compatible with KTB borehole data.
引用
收藏
页码:18417 / 18441
页数:25
相关论文
共 72 条
[1]  
[Anonymous], CONTINENTAL REVEALED
[2]  
[Anonymous], 1991, SCI DRILL
[3]  
ARSHAVSKAYA NI, 1987, SUPERDEEP WELL KOLA, P387
[4]  
BALLING N, 1990, NATURGAS VATTENFALL
[5]   ANALYSIS OF HEAT FLOW DATA .I. DETAILED OBSERVATIONS IN A SINGLE BOREHOLE [J].
BECK, AE ;
JUDGE, AS .
GEOPHYSICAL JOURNAL OF THE ROYAL ASTRONOMICAL SOCIETY, 1969, 18 (02) :145-&
[6]   CLIMATICALLY PERTURBED TEMPERATURE-GRADIENTS AND THEIR EFFECT ON REGIONAL AND CONTINENTAL HEAT-FLOW MEANS [J].
BECK, AE .
TECTONOPHYSICS, 1977, 41 (1-3) :17-39
[7]  
BECK AE, 1992, GLOBAL PLANET CHANGE, V98, P101
[8]   Records of climatic change in the Canadian Arctic: Towards calibrating oxygen isotope data with geothermal data [J].
Beltrami, H ;
Taylor, AE .
GLOBAL AND PLANETARY CHANGE, 1995, 11 (03) :127-138
[9]  
BENDZKO T, 1995, GEOWISSENSCHAFTEN, V13, P129
[10]   A simple method to determine heat production from gamma-ray logs [J].
Bucker, C ;
Rybach, L .
MARINE AND PETROLEUM GEOLOGY, 1996, 13 (04) :373-375