WO2021055152A1

Noise attenuation methods applied during simultaneous source deblending and separation

Abstract

A device may include a processor that may separate or deblend signals acquired with simultaneous source shooting, in an environment with background noise or other types of noises. The processor may expand a receiver gather before the time of source excitation. The processor may use the expanded time window (e.g., negative time window) to allocate the background noise or other types of noises after removal. The processor may use signal recovery operations to reallocate leaked or misplaced signals created during the separation iterations, including the signals inside the expanded time window, to a correct source excitation and timing. Expanding a receiver gather time window and reallocating leaked or misplaced signals may improve a deblended output used in generating a seismic image.

WO2021055152A1, drawing sheet 1
Sheet 1 of 10

Term

No projected expiry on record.

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21 claims: 3 independent, 18 dependent

  1. 1
    CLAIMSWhat is claimed is:1. A method of seismic exploration above a region of subsurface containing structural or stratigraphic features conducive to determining a presence, migration, or accumulation of hydrocarbons, the method comprising: accessing at least a portion of a seismic source survey, wherein the seismic source survey corresponds to a seismic source excitation, wherein the seismic source excitation is produced by a seismic source, and wherein the at least a portion of a seismic source survey comprises data corresponding to at least one time before a time of the seismic source excitation;separating a coherent signal from the at least a portion of a seismic source survey via a combing and deblending operation, wherein the combing and deblending operation is an iterative operation configured to predict at least a portion of weak- coherence signals caused by the seismic source excitation, and wherein the combing and deblending operation is based at least in part on a gather comprising the at least a portion of a seismic source survey corresponding to the at least one time before a time of the seismic source excitation;recovering at least a portion of leaked or misallocated signals via an attenuation of noise at least in part by allocating the noise to a time before the time of the seismic source excitation, wherein the leaked or misallocated signals are caused by a separation of primary signals;and producing a receiver gather based on the separating and the coherent signal, wherein the receiver gather is a recording of multiple source excitations on a receiver, and wherein the receiver gather is used in exploration for hydrocarbons within the region of the subsurface.
  2. 11
    A tangible, non-transitory, machine-readable media, comprising instructions configured to cause a processor to:determine a residual associated with input seismic data received from a seismic source, wherein the residual is indicative of a difference between expected input seismic data and the input seismic data, and wherein the input seismic data is configured to be combed with an expanded window such that the expanded window comprises data generated by an earlier seismic source excitation and received before a time of a seismic source excitation that generated an input seismic trace corresponding to the input seismic data;determine a deblended output based at least in part on the residual;update the deblended output based at least in part on a result from performing one or more recovery operations configured to recover coherent signals from non coherent signals of the deblended output, wherein the coherent signals comprise a matching parameter;filter the deblended output to remove a portion of the deblended output that is before the time of the seismic source excitation or before a predicted earliest arrival time of a seismic wave travelling from the seismic source to a receiver, to generate an improved deblended output comprising less noise than the deblended output;and transmit the filtered deblended output for use in generating a seismic image, wherein the seismic image represents hydrocarbons in a subsurface region of Earth or subsurface drilling hazards.
  3. 19
    A device, comprising:a first processor configured to: determine a residual associated with input seismic data received from a seismic source, wherein the residual is indicative of a difference between expected input seismic data and the input seismic data, wherein the input seismic data is configured to be combed with expanded windows such that the expanded windows comprise data generated by an earlier seismic source excitation and received before a time of a seismic source excitation that generated an input seismic trace corresponding to the input seismic data;update a value of the residual based at least in part on a separation operation that separates coherent signals from noise signals in an output associated with the residual determined to be remaining energy for separation or a sum of the residual and a primary signal estimate;extract non-coherent or weak-coherent energy from the coherent signals;in response to satisfying an end condition, determine a deblended output comprising the coherent signals;filter the deblended output to remove a portion of the deblended output that is before the time of the seismic source excitation or before a predicted earliest arrival time of a seismic wave travelling from the seismic source to a receiver, to generate a filtered deblended output comprising less noise than the deblended output;and transmit the filtered deblended output for use in generating a seismic image, wherein the seismic image represents hydrocarbons in a subsurface region of Earth or subsurface drilling hazards.