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Erschienen in: Rock Mechanics and Rock Engineering 4/2014

01.07.2014 | Original Paper

A Spatial Clustering Approach for Stochastic Fracture Network Modelling

verfasst von: S. Seifollahi, P. A. Dowd, C. Xu, A. Y. Fadakar

Erschienen in: Rock Mechanics and Rock Engineering | Ausgabe 4/2014

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Abstract

Fracture network modelling plays an important role in many application areas in which the behaviour of a rock mass is of interest. These areas include mining, civil, petroleum, water and environmental engineering and geothermal systems modelling. The aim is to model the fractured rock to assess fluid flow or the stability of rock blocks. One important step in fracture network modelling is to estimate the number of fractures and the properties of individual fractures such as their size and orientation. Due to the lack of data and the complexity of the problem, there are significant uncertainties associated with fracture network modelling in practice. Our primary interest is the modelling of fracture networks in geothermal systems and, in this paper, we propose a general stochastic approach to fracture network modelling for this application. We focus on using the seismic point cloud detected during the fracture stimulation of a hot dry rock reservoir to create an enhanced geothermal system; these seismic points are the conditioning data in the modelling process. The seismic points can be used to estimate the geographical extent of the reservoir, the amount of fracturing and the detailed geometries of fractures within the reservoir. The objective is to determine a fracture model from the conditioning data by minimizing the sum of the distances of the points from the fitted fracture model. Fractures are represented as line segments connecting two points in two-dimensional applications or as ellipses in three-dimensional (3D) cases. The novelty of our model is twofold: (1) it comprises a comprehensive fracture modification scheme based on simulated annealing and (2) it introduces new spatial approaches, a goodness-of-fit measure for the fitted fracture model, a measure for fracture similarity and a clustering technique for proposing a locally optimal solution for  fracture parameters. We use a simulated dataset to demonstrate the application of the proposed approach followed by a real 3D case study of the Habanero reservoir in the Cooper Basin, Australia.

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Literatur
Zurück zum Zitat Baisch S, Weidler R, Vörös R, Wyborn D, de Graaf L (2006) Induced seismicity during the stimulation of a geothermal HFR reservoir in the Cooper Basin, Australia. Bull Seismol Soc Am 96(6):2242–2256CrossRef Baisch S, Weidler R, Vörös R, Wyborn D, de Graaf L  (2006) Induced seismicity during the stimulation of a geothermal HFR reservoir in the Cooper Basin, Australia. Bull Seismol Soc Am 96(6):2242–2256CrossRef
Zurück zum Zitat Billaux D, Chiles JP, Hestir K, Long J (1989) Three-dimensional statistical modelling of a fractured rock mass—an example from the Fanay-Augères mine. Int J Rock Mech Min Sci Geomech Abstr 26(3/4):281–299CrossRef Billaux D, Chiles JP, Hestir K, Long J (1989) Three-dimensional statistical modelling of a fractured rock mass—an example from the Fanay-Augères mine. Int J Rock Mech Min Sci Geomech Abstr 26(3/4):281–299CrossRef
Zurück zum Zitat Chilès JP, Delfiner P (1999) Geostatistics: modeling spatial uncertainty. Wiley, New York, p 695CrossRef Chilès JP, Delfiner P (1999) Geostatistics: modeling spatial uncertainty. Wiley, New York, p 695CrossRef
Zurück zum Zitat Dershowitz WS, Einstein HH (1988) Characterizing rock joint geometry with joint system models. Rock Mech Rock Eng 21:21–51CrossRef Dershowitz WS, Einstein HH (1988) Characterizing rock joint geometry with joint system models. Rock Mech Rock Eng 21:21–51CrossRef
Zurück zum Zitat Dowd PA, Xu C, Mardia KV, Fowell RJ (2007) A comparison of methods for the simulation of rock fractures. Math Geol 39:697–714CrossRef Dowd PA, Xu C, Mardia KV, Fowell RJ (2007) A comparison of methods for the simulation of rock fractures. Math Geol 39:697–714CrossRef
Zurück zum Zitat Eisner L, Williams-Stroud S, Hill A, Duncan P, Thornton M (2010) Beyond the dots in the box: microseismicity-constrained fracture models for reservoir simulation. Lead Edge 29(3):326–333. doi:10.1190/1.3353730 CrossRef Eisner L, Williams-Stroud S, Hill A, Duncan P, Thornton M (2010) Beyond the dots in the box: microseismicity-constrained fracture models for reservoir simulation. Lead Edge 29(3):326–333. doi:10.​1190/​1.​3353730 CrossRef
Zurück zum Zitat Gringarten E (1997) 3D geometric description of fractured reservoirs. In: Baafi EY, Schofield NA (eds) Geostatistics Wollongong’96, vol 1. Kluwer Academic, Dordrecht, pp 424–432 Gringarten E (1997) 3D geometric description of fractured reservoirs. In: Baafi EY, Schofield NA (eds) Geostatistics Wollongong’96, vol 1. Kluwer Academic, Dordrecht, pp 424–432
Zurück zum Zitat Kirkpatrick S, Gelatt CD, Vecchi MP (1983) Optimization by simulated annealing. Science 220:671–680CrossRef Kirkpatrick S, Gelatt CD, Vecchi MP (1983) Optimization by simulated annealing. Science 220:671–680CrossRef
Zurück zum Zitat Kulatilake PHSW, Wathugala DN, Stephansson O (1993) Joint network modelling with a validation exercise in Stripa Mine, Sweden. Int J Rock Mech Min Sci 30:503–526CrossRef Kulatilake PHSW, Wathugala DN, Stephansson O (1993) Joint network modelling with a validation exercise in Stripa Mine, Sweden. Int J Rock Mech Min Sci 30:503–526CrossRef
Zurück zum Zitat Lantuéjoul C (2002) Geostatistical simulation, models and algorithms. Springer, BerlinCrossRef Lantuéjoul C (2002) Geostatistical simulation, models and algorithms. Springer, BerlinCrossRef
Zurück zum Zitat Lee JS, Veneziano D, Einstein HH (1990) Hierarchical fracture trace model. In: Hustrulid W, Johnson GA (eds) Rock contributions and challenges, proceeding. 31st US Rock Mechanics Symposium, Balkema, Rotterdam, pp 261–268 Lee JS, Veneziano D, Einstein HH (1990) Hierarchical fracture trace model. In: Hustrulid W, Johnson GA (eds) Rock contributions and challenges, proceeding. 31st US Rock Mechanics Symposium, Balkema, Rotterdam, pp 261–268
Zurück zum Zitat Mardia KV, Nyirongo VB, Walder AN, Xu C, Dowd PA, Fowell RJ, Kent JT (2007a) Markov chain Monte Carlo implementation of rock fracture modelling. Math Geol 39:355–381CrossRef Mardia KV, Nyirongo VB, Walder AN, Xu C, Dowd PA, Fowell RJ, Kent JT (2007a) Markov chain Monte Carlo implementation of rock fracture modelling. Math Geol 39:355–381CrossRef
Zurück zum Zitat Mardia KV, Walder AN, Xu C, Dowd PA, Fowell RJ, Nyirongo VB, Kent JT (2007b) A line finding assignment problem and rock fracture modelling. In: Upadhaya SK, Singh U, Dey DK (eds) Bayesian statistics and its applications. Anamaya Pubs, New Delhi, pp 319–330 Mardia KV, Walder AN, Xu C, Dowd PA, Fowell RJ, Nyirongo VB, Kent JT (2007b) A line finding assignment problem and rock fracture modelling. In: Upadhaya SK, Singh U, Dey DK (eds) Bayesian statistics and its applications. Anamaya Pubs, New Delhi, pp 319–330
Zurück zum Zitat Metropolis N, Rosenbluth AW, Rosenbluth MN, Teller AH, Teller E (1953) Equation of state calculations by fast computing machines. J Chem Phys 21(6):1087CrossRef Metropolis N, Rosenbluth AW, Rosenbluth MN, Teller AH, Teller E (1953) Equation of state calculations by fast computing machines. J Chem Phys 21(6):1087CrossRef
Zurück zum Zitat Meyer T, Einstein HH (2002) Geologic stochastic modeling and connectivity assessment of fracture systems in the Boston area. Rock Mech Rock Eng 35(1):23–44CrossRef Meyer T, Einstein HH (2002) Geologic stochastic modeling and connectivity assessment of fracture systems in the Boston area. Rock Mech Rock Eng 35(1):23–44CrossRef
Zurück zum Zitat Oda M, Hatsuyama Y, Ohnishi Y (1987) Numerical experiments on permeability tensor and its application to jointed granite at Stripa mine, Sweden. J Geophys Res 92:8037–8048CrossRef Oda M, Hatsuyama Y, Ohnishi Y (1987) Numerical experiments on permeability tensor and its application to jointed granite at Stripa mine, Sweden. J Geophys Res 92:8037–8048CrossRef
Zurück zum Zitat Rawnsley K, Wei L (2001) Evaluation of a new method to build geological models of fractured reservoirs calibrated to production data. Pet Geosci 7:23–33CrossRef Rawnsley K, Wei L (2001) Evaluation of a new method to build geological models of fractured reservoirs calibrated to production data. Pet Geosci 7:23–33CrossRef
Zurück zum Zitat Sausse J, Dezayes C, Dorbath L, Genter A, Place J (2010) 3D model of fracture zones at Soultz-sous-Forêts based on geological data, image logs, induced microseismicity and vertical seismic profiles. Comptes Rendus Geosci 342:531–545CrossRef Sausse J, Dezayes C, Dorbath L, Genter A, Place J (2010) 3D model of fracture zones at Soultz-sous-Forêts based on geological data, image logs, induced microseismicity and vertical seismic profiles. Comptes Rendus Geosci 342:531–545CrossRef
Zurück zum Zitat Stoyan D, Kendall W, Mecke J (1995) Stochastic geometry and its applications, 2nd edn. Wiley, Chichester Stoyan D, Kendall W, Mecke J (1995) Stochastic geometry and its applications, 2nd edn. Wiley, Chichester
Zurück zum Zitat Wen R, Sinding-Larsen R (1997) Stochastic modelling and simulation of small faults by marked point processes and kriging. In: Baafi EY, Schofield NA (eds) Geostatistics Wollongong’96, vol 1. Kluwer Acad, Dordrecht, p 643 Wen R, Sinding-Larsen R (1997) Stochastic modelling and simulation of small faults by marked point processes and kriging. In: Baafi EY, Schofield NA (eds) Geostatistics Wollongong’96, vol 1. Kluwer Acad, Dordrecht, p 643
Zurück zum Zitat Xu C, Dowd PA, Mardia KV, Fowell RJ, Taylor CC (2007) Simulating correlated marked point processes. J Appl Statistics 34:1125–1134CrossRef Xu C, Dowd PA, Mardia KV, Fowell RJ, Taylor CC (2007) Simulating correlated marked point processes. J Appl Statistics 34:1125–1134CrossRef
Metadaten
Titel
A Spatial Clustering Approach for Stochastic Fracture Network Modelling
verfasst von
S. Seifollahi
P. A. Dowd
C. Xu
A. Y. Fadakar
Publikationsdatum
01.07.2014
Verlag
Springer Vienna
Erschienen in
Rock Mechanics and Rock Engineering / Ausgabe 4/2014
Print ISSN: 0723-2632
Elektronische ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-013-0456-x

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