Seismic response simulation method for heterogeneous hydrate reservoir
A technology of seismic response and simulation method, applied in the field of natural gas hydrate seismic exploration
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Embodiment 1
[0077] Such as figure 1 As shown, in order to achieve the above object, the present invention provides a method for simulating the seismic response of a heterogeneous hydrate reservoir, comprising the following steps:
[0078] A. For hydrate reservoirs, free gas formations and water-bearing formations, obtain the content, elastic modulus and density of various types of mineral components in the matrix skeleton, the elastic modulus and density of hydrates, and the elastic modulus and density of formation water , the reservoir porosity;
[0079] B. Establish a non-uniform model for the vertical variation of hydrate formation saturation and the lateral variation of formation thickness, and then use the BISQ model (1993) with given input parameters to obtain the variation law of the velocity and attenuation of the gas hydrate-bearing sandstone formation with frequency ;
[0080] C. Using the White patchy saturation model (1975) to calculate the velocity dispersion characteristic...
Embodiment 2
[0138] Explained by a set of data:
[0139] A. For hydrate reservoirs, free gas formations and water-bearing formations, obtain the content, elastic modulus and density of various types of mineral components in the matrix skeleton, the elastic modulus and density of hydrates, and the elastic modulus and density of formation water , the reservoir porosity;
[0140] B. Establish a non-uniform model for the vertical variation of hydrate formation saturation and the lateral variation of formation thickness, and then use the BISQ model (1993) with given input parameters to obtain the variation law of the velocity and attenuation of the gas hydrate-bearing sandstone formation with frequency ;
[0141] Among them, the velocity and attenuation of gas hydrate-bearing sandstone formations with frequency are calculated according to the BISQ model (1993), and the compressional wave velocity, attenuation coefficient and inverse quality factor are expressed as:
[0142] in,
[0143] ...
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