Three-dimensional Lowrank finite difference wave field numerical simulation method and device and electronic equipment
A numerical simulation and finite difference technology, applied in seismic signal processing and other directions, can solve the problem of low accuracy of elastic wave field and achieve the effect of improving accuracy
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Embodiment 1
[0084] Such as figure 1 A three-dimensional Lowrank finite-difference wavefield numerical simulation method is shown, including:
[0085] Step S101:
[0086] Obtain velocity model and grid point information;
[0087] Step S102: Construct an elastic recursive time-integration operator based on the obtained velocity model and grid point information;
[0088] Step S103: Obtain a decomposed elastic recursive time integral operator based on the elastic recursive time integral operator;
[0089] Step S104: Obtaining finite difference coefficients based on the decomposed elastic recursive time integral operator;
[0090] Step S105: Based on the finite difference coefficients and the elastic wave equation, numerical simulation of the wave field is performed to obtain the elastic wave field.
[0091] Optionally, the construction of an elastic recursive time integration operator based on the obtained velocity model and grid point information includes:
[0092] Build an elastic recu...
Embodiment 2
[0124] Such as Figure 6 As shown, a three-dimensional Lowrank finite-difference wavefield numerical simulation device includes:
[0125] Acquisition module: used to obtain velocity field and grid information;
[0126] Building block: construct an elastic recursive time integral operator based on the obtained velocity model and grid point information;
[0127] Decomposition module: an elastic recursive time integral operator for decomposing based on the elastic recursive time integral operator;
[0128] Finite difference system module: used to obtain finite difference coefficients based on the elastic recursive time integral operator of the decomposition;
[0129] Elastic wave field module: used to perform wave field numerical simulation based on the finite difference coefficients and the elastic wave equation to obtain the elastic wave field.
[0130] For detailed descriptions of this embodiment, reference may be made to corresponding descriptions in the preceding embodime...
Embodiment 3
[0132] An embodiment of the present invention provides an electronic device including a memory and a processor,
[0133] a memory storing executable instructions;
[0134] A processor, the processor runs the executable instructions in the memory to implement the three-dimensional Lowrank finite difference wavefield numerical simulation method of the embodiment.
[0135] The memory is used to store non-transitory computer readable instructions. Specifically, the memory may include one or more computer program products, which may include various forms of computer-readable storage media, such as volatile memory and / or non-volatile memory. The volatile memory may include, for example, random access memory (RAM) and / or cache memory (cache). The non-volatile memory may include, for example, a read-only memory (ROM), a hard disk, a flash memory, and the like.
[0136] The processor may be a central processing unit (CPU) or other form of processing unit having data processing capab...
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