返回
Gravity inversion for heterogeneous sedimentary basin with b-spline polynomial approximation using differential evolution algorithm
DOI:10.1190/GEO2019-0779.1.png)
摘要
En 中文
We have developed a MATLAB-based inversion program, b-spline polynomial approximation using the differential evolution algorithm (SPODEA), to recover the concealed basement geometry under heterogeneous sedimentary basins. Earlier inversion techniques used the discretized subsurface interface topography into a grid of juxtaposed elementary prisms to estimate the basement depth of a basin. Such discretization leads to the failure of the depth profile continuity and requires a higher number of inversion parameters for achieving the desired accuracy. The novel approach of SPODEA overcomes such limitations of earlier inversion techniques. SPODEA is based on the segment-wise b-spline optimization technique to estimate the basement depth by using high-order polynomials. Moreover, it can achieve an optimal misfit with minimal parametric information, which reduces the computational expense. Our inversion approach uses the differential evolution algorithm, which provides real parametric optimization and uses b-splines for accurate estimation of continuous depth profiles. The efficiency of our algorithm was determined with two complex synthetic sedimentary basin models comprised of constant and depth-varying density distributions. Furthermore, the uncertainty analysis of our inversion technique is evaluated by incorporating white Gaussian noise into the synthetic models. Finally, the utility of SPODEA is evaluated by inverting gravity anomalies for two different real sedimentary basins. It produces geologically reasonable outcomes that are in close agreement with basement structures from previously reported results.
Keyword:
PARTICLE SWARM OPTIMIZATION
BASEMENT RELIEF
DENSITY CONTRAST
WAVELET TRANSFORM
3-D INVERSION
ANOMALIES
FIELD
UNCERTAINTY
COMPUTATION
EXPRESSION
期刊
IF:
3.2
论文数:
8.4K
被引数:
3.3W
机构
引用论文
Effect of neoadjuvant treatment combined with radical gastrectomy on postoperative complications and prognosis of gastric cancer patients新辅助治疗联合根治性胃切除术对胃癌患者术后并发症及预后的影响
Interpretation of residual gravity anomaly caused by simple shaped bodies using very fast simulated annealing global optimization
GEOSCIENCE FRONTIERS
IF8.9
Stable inversion of gravity anomalies of sedimentary basins with nonsmooth basement reliefs and arbitrary density contrast variations
GEOPHYSICS
IF3.2
Application of Cauchy-type integrals in developing effective methods for depth-to-basement inversion of gravity and gravity gradiometry data
GEOPHYSICS
IF3.2
2-D gravity modeling with analytically defined geometry and quadratic polynomial density functions
GEOPHYSICS
IF3.2
Characterization of geological boundaries using 1-D wavelet transform on gravity data: Theory and application to the Himalayas
GEOPHYSICS
IF3.2

