Magnetic anomaly inversion by means of the novel barnacles mating optimization algorithm
[ad_1]
Nykänen, V. & Raines, G. L. Quantitative evaluation of scale of aeromagnetic information raises questions on geologic-map scale. Nat. Resour. Res. 15, 213–222 (2006).
Abdelrahman, E. M., El-Araby, T. M., Soliman, Okay. S., Essa, Okay. S. & Abo-Ezz, E. R. Least-squares minimization approaches to interpret whole magnetic anomalies because of spheres. Pure Appl. Geophys. 164(5), 1045–1056 (2007).
Ekinci, Y. L. & Yiğitbaş, E. A geophysical method to the igneous rocks within the Biga Peninsula (NW Turkey) based mostly on airborne magnetic anomalies: Geological implications. Geodin. Acta 25(3–4), 267–285 (2012).
Ekinci, Y. L., Balkaya, Ç., Şeren, A., Kaya, M. A. & Lightfoot, C. Geomagnetic and geoelectrical prospection for buried archaeological stays on the higher metropolis of Amorium, a Byzantine metropolis in Midwestern Turkey. J. Geophys. Eng. 11(1), 015012 (2014).
Ekinci, Y. L. MATLAB-based algorithm to estimate depths of remoted skinny dike-like sources utilizing higher-order horizontal derivatives of magnetic anomalies. Springerplus 5, 1384 (2016).
Afshar, A., Norouzi, G. H., Moradzadeh, A. & Riahi, M. A. Utility of magnetic and gravity strategies to the exploration of sodium sulfate deposits, case examine: Garmab mine, Semnan, Iran. J. Appl. Geophys. 159, 586–596 (2018).
Essa, Okay. S., Nady, A. G., Mostafa, M. S. & Elhussein, M. Implementation of potential subject information to depict the structural lineaments of the Sinai Peninsula, Egypt. J. Afr. Earth Sci. 147, 43–53 (2018).
Ekinci, Y. L., Büyüksaraç, A., Bektaş, Ö. & Ertekin, C. Geophysical investigation of Mount Nemrut stratovolcano (Bitlis, Japanese Turkey) by means of aeromagnetic anomaly analyses. Pure Appl. Geophys. 177, 3243–3264 (2020).
Essa, Okay. S. & Elhussein, M. Interpretation of magnetic information by means of particle swarm Optimization: Mineral exploration instances research. Nat. Resour. Res. 29, 521–537 (2020).
Lu, N. et al. Utility of airborne magnetic survey in deep iron ore prospecting—A case examine of Jinling space in Shandong Province, China. Minerals 11, 1041 (2021).
Essa, Okay. S., Munschy, M., Youssef, M. A. S. & Khalaf, E. A. Aeromagnetic and radiometric information interpretation to delineate the structural components and possible precambrian mineralization zones: A case examine, Egypt. Min. Metall. Explor. https://doi.org/10.1007/s42461-022-00675-0 (2022).
Biswas, A. Inversion of supply parameters from magnetic anomalies for mineral/ore deposits exploration utilizing world optimization method and evaluation of uncertainty. Nat. Resour. Res. 27, 77–107 (2018).
Abdelrahman, E. M., El-Araby, T. M. & Essa, Okay. S. A least-squares minimisation method to depth, index parameter, and amplitude coefficient dedication from magnetic anomalies because of skinny dykes. Explor. Geophys. 34, 241–248 (2003).
Abdelrahman, E. M., Abo-Ezz, E. R. & Essa, Okay. S. Parametric inversion of residual magnetic anomalies because of easy geometric our bodies. Explor. Geophys. 43, 178–189 (2012).
Biswas, A. Interpretation of gravity and magnetic anomaly over skinny sheet-type construction utilizing very quick simulated annealing world optimization method. Mannequin. Earth Syst. Environ. 2, 30 (2016).
Essa, Okay. S. & Elhussein, M. Magnetic interpretation using a brand new inverse algorithm for assessing the parameters of the buried inclined dike-like geologic construction. Acta Geophys. 67, 533–544 (2019).
Mehanee, S., Essa, Okay. S. & Diab, Z. E. Magnetic information interpretation utilizing a brand new r-parameter imaging methodology with software to mineral exploration. Nat. Resour. Res. 30, 77–95 (2021).
Homosexual, P. Commonplace curves for magnetic anomalies over lengthy horizontal cylinders. Geophysics 30, 818–828 (1965).
McGrath, P. H. & Hood, P. J. The dipping dike case: A pc curve matching methodology of magnetic interpretation. Geophysics 35, 831–848 (1970).
Nuamah, D. O. B. & Dobroka, M. Inversion-based Fourier transformation utilized in processing non-equidistantly measured magnetic information. Acta Geod. Geophys. 54, 411–424 (2019).
Dondurur, D. & Pamuku, O. A. Interpretation of magnetic anomalies from dipping dike mannequin utilizing inverse resolution, energy spectrum and Hilbert remodel strategies. J. Balk. Geophys. Soc. BGS 6, 127–139 (2003).
Asfahani, J. & Tlas, M. A sturdy nonlinear inversion for the interpretation of magnetic anomalies brought on by faults, skinny dikes and spheres like construction utilizing stochastic algorithms. Pure Appl. Geophys. 164, 2023–2042 (2007).
Abdelrahman, E. M., Soliman, Okay. S., El-Araby, T. M., Abo-Ezz, E. R. & Essa, Okay. S. A least-squares normal deviation methodology to interpret magnetic anomalies because of skinny dikes. Close to Surf. Geophys. 7, 41–46 (2009).
Abo-Ezz, E. R. & Essa, Okay. S. A least-squares minimization method for mannequin parameters estimate by utilizing a brand new magnetic anomaly formulation. Pure Appl. Geophys. 173, 1265–1278 (2016).
Reid, A. B., Ebbing, J. & Webb, S. J. Avoidable Euler errors—The use and abuse of Euler deconvolution utilized to potential fields. Geophys. Prospect. 62, 1162–1168 (2014).
Tlas, M. & Asfahani, J. The simplex algorithm for best-estimate of magnetic parameters associated to easy geometric-shaped constructions. Math. Geosci. 47, 301–316 (2015).
Ma, G., Liu, C., Xu, J. & Meng, Q. Correlation imaging methodology based mostly on native wavenumber for decoding magnetic information. J. Appl. Geophys. 138, 17–22 (2017).
Essa, Okay. S., Mehanee, S. & Elhussein, M. Magnetic information profiles interpretation for mineralized buried constructions identification making use of the variance evaluation methodology. Pure Appl. Geophys. 178, 973–993 (2021).
Abdelrahman, E. M., El-Araby, H. M., El-Araby, H. M. & Essa, Okay. S. A least-squares minimization method to depth dedication from magnetic information. Pure Appl. Geophys. 160, 1259–1271 (2003).
Essa, Okay. S. & Elhussein, M. A brand new method for the interpretation of magnetic information by a 2-D dipping dike. J. Appl. Geophys. 136, 431–443 (2017).
Kelemework, Y., Fedi, M. & Milano, M. A evaluate of spectral evaluation of magnetic information for depth estimation. Geophysics 86, J33–J58 (2021).
Ekinci, Y. L. Utility of enhanced native wave quantity method to the overall subject magnetic anomalies for computing mannequin parameters of magnetized geological constructions. Geol. Bull. Turk. 61, 163–174 (2017).
Zhdanov, M. S. Geophysical Inverse Concept and Regularization Drawback (Elsevier, 2002).
Biswas, A. & Acharya, T. A Very quick simulated annealing (VFSA) methodology for inversion of magnetic anomaly over semi-infinite vertical rod-type construction. Mannequin. Earth Syst. Environ. 2, 198 (2016).
Wang, Y. Seismic Inversion: Concept and Purposes: Seismic Inversion: Concept and Purposes (Wiley, 2016).
Ekinci, Y. L., Balkaya, Ç., Göktürkler, G. & Özyalın, Ş. Gravity information inversion for the basement aid delineation by means of world optimization: A case examine from the Aegean Graben System, Western Anatolia, Turkey. Geophys. J. Int. 224, 923–944 (2021).
Ekinci, Y. L., Balkaya, Ç. & Göktürkler, G. Parameter estimations from gravity and magnetic anomalies because of deep-seated faults: Differential evolution versus particle swarm optimization. Turk. J. Earth Sci. 28(6), 860–881 (2019).
Biswas, A., Rao, Okay. & Mondal, T. S. Inverse modeling and uncertainty evaluation of magnetic information from 2D thick dipping dyke and software for mineral exploration. J. Appl. Geophys. https://doi.org/10.1016/j.jappgeo.2022.104848 (2022).
Sörensen, Okay., Sevaux, M. & Glover, F. A historical past of metaheuristics. In Handbook of Heuristics (eds. Martí, R., Panos, P., Resende, M.) (Springer, 2018).
Sörensen, Okay. & Glover, F. W. Metaheuristics. In Encyclopedia of Operations Analysis and Administration Science, 663 third ed. (eds. Gass, S. I. & Fu, M. C.) 960–970 (2013).
Tempo, F., Santilano, A. & Godio, A. A evaluate of geophysical modeling based mostly on Particle Swarm Optimization. Surv. Geophys. 42, 505–549 (2021).
Yuan, S., Wang, S. & Tian, N. Swarm intelligence optimization and its software in geophysical information inversion. Appl. Geophys. 6, 166–174 (2009).
Fernández Martínez, J. L., García Gonzalo, E., Fernández Álvarez, J. P., Kuzma, H. A. & Menéndez Pérez, C. O. PSO: A strong algorithm to unravel geophysical inverse issues. J. Appl. Geophys. 71, 13–25 (2010).
Track, X., Tang, L., Lv, X., Fang, H. & Gu, H. Utility of particle swarm optimization to interpret Rayleigh wave dispersion curves. J. Appl. Geophys. 84, 1–13 (2012).
Tempo, F., Godio, A., Santilano, A. & Comina, C. Joint optimization of geophysical information utilizing multi-objective swarm intelligence. Geophys. J. Int. 218, 1502–1521 (2019).
Abdelrahman, E. M., Abo-Ezz, E. R., Soliman, Okay. S., El-Araby, T. M. & Essa, Okay. S. A least-squares window curves methodology for interpretation of magnetic anomalies brought on by dipping dikes. Pure Appl. Geophys 164, 1027–1044 (2007).
Srivastava, S., Datta, D., Agarwal, B. N. P. & Mehta, S. Purposes of ant colony optimization in dedication of supply parameters from whole gradient of potential fields. Close to Surf. Geophys. 12, 373–390 (2014).
Kaftan, İ. Interpretation of magnetic anomalies utilizing a genetic algorithm. Acta Geophys. 65, 627–634 (2017).
Ekinci, Y. L., Özyalın, Ş, Sındırgı, P., Balkaya, G. & Göktürkler, G. Amplitude inversion of 2D analytic sign of magnetic anomalies by means of differential evolution algorithm. J. Geophys. Eng. 14(6), 1492–1508 (2017).
Agarwal, A., Chandra, A., Shalivahan, S. & Singh, R. Okay. Gray wolf optimizer: A brand new technique to invert geophysical information units. Geophys. Prospect. 66, 1215–1226 (2018).
Essa, Okay. S. & Elhussein, M. PSO (particle swarm optimization) for interpretation of magnetic anomalies brought on by easy geometrical constructions. Pure Appl. Geophys. 175, 3539–3553 (2018).
Di Maio, R., Milano, L. & Piegari, E. Modeling of magnetic anomalies generated by easy geological constructions by means of Genetic-Worth inversion algorithm. Phys. Earth Planet. Interiors 305, 106520 (2020).
Essa, Okay. S. & Diab, Z. E. An computerized inversion method for magnetic information making use of the worldwide bat optimization algorithm (GBOA): Utility to ore deposits and basement rock intrusion. Geomech. Geophys. Geo-energ. Geo-resour. 8, 185 (2022).
Balkaya, A. & Kaftan, I. Inverse modelling through differential search algorithm for decoding magnetic anomalies brought on by 2D dyke-shaped our bodies. J. Earth Syst. Sci. 130, 135 (2021).
Du, W., Cheng, L. & Li, Y. lp Norm easy inversion of magnetic anomaly based mostly on improved Adaptive Differential Evolution. Appl. Sci. 11, 1072 (2021).
Essa, Okay. S. & Diab, Z. E. Magnetic information interpretation for 2D dikes by the metaheuristic bat algorithm: Sustainable improvement instances. Sci. Rep. 12, 14206 (2022).
Ben, U. C. et al. Interpretation of magnetic anomalies by easy geometrical constructions utilizing the manta-ray foraging optimization. Entrance. Earth Sci. 10, 849079 (2022).
Ben, U. C., Akpan, A. E., Urang, J. G., Akaerue, E. I. & Obianwu, V. I. Novel methodology for the geophysical interpretation of magnetic anomalies because of easy geometrical our bodies utilizing social spider optimization (SSO) algorithm. Heliyon 8, e09027 (2022).
Sohouli, A. N., Molhem, H. & Zare-Dehnavi, N. Hybrid PSO-GA algorithm for estimation of magnetic anomaly parameters because of easy geometric constructions. Pure Appl. Geophys. 179, 2231–2254 (2022).
Rao, P. T. Okay. S. & Subrahmanyam, M. Attribute curves for inversion of magnetic anomalies of spherical ore our bodies. Pure Appl. Geophys. 126, 69–83 (1988).
Rao, B. S. R., Rao, T. Okay. S. P. & Murthy, A. S. Okay. A notice on magnetized spheres. Geophys. Prospect. 25, 746–757 (2006).
Rao, T., Subrahmanyam, M. & Murthy, A. S. Nomogram for the direct interpretation of magnetic anomalies because of lengthy horizontal cylinders. Geophysics 51, 2156–2159 (1986).
Homosexual, P. Commonplace curves for interpretation of magnetic anomalies over lengthy tabular our bodies. Geophysics 28, 161–200 (1963).
Atchuta Rao, D., Ram Babu, H. V. & Sankar Narayan, P. V. Relationship of magnetic anomalies because of floor options and the interpretation of sloping contacts. Geophysics 45, 32–36 (1980).
Sulaiman, M. H., Mustaffa, Z., Saari, M. M. & Daniyal, H. Barnacles Mating Optimizer: A brand new bio-inspired algorithm for fixing engineering optimization issues. Eng. Appl. Artif. Intell. 87, 103330 (2020).
Zwickl, D. J. Genetic algorithm approaches for the phylogenetic evaluation of enormous organic sequence datasets underneath the utmost probability criterion. PhD Thesis. The College of Texas at Austin, 115 (2006).
Worth, Okay., Storn, R. M. & Lampinen, J. A. Differential Evolution: A Sensible Method to World Optimization 1st edn. (Springer, 2005).
Crow, J. F. H. Weinberg and language impediments. Genetics 152, 821–825 (1999).
Jia, H. & Solar, Okay. Improved barnacles mating optimizer algorithm for characteristic choice and assist vector machine optimization. Sample Anal. Appl. 24, 1249–1274 (2021).
Ekinci, Y. L., Balkaya, Ç. & Göktürkler, G. Backtracking Search Optimization: A novel world optimization algorithm for the inversion of gravity anomalies. Pure Appl. Geophys. 178, 4507–4527 (2021).
Balkaya, Ç., Ekinci, Y. L., Göktürkler, G. & Turan, S. 3D non-linear inversion of magnetic anomalies brought on by prismatic our bodies utilizing differential evolution algorithm. J. Appl. Geophys. 136, 372–386 (2017).
Deb, Okay. & Gupta, H. Introducing robustness in multi-objective optimization. Evol. Comput. 14, 463–494 (2006).
Ray, T. Constrained strong optimum design utilizing a multiobjective evolutionary algorithm. In Proceedings of the 2002 IEEE Congress on Evolutionary Computation, vol. 1 419–424 (IEEE Press, 2002).
Mirjalili, S. & Lewis, A. Obstacles and difficulties for strong benchmark issues: A novel penalty-based strong optimisation methodology. Inf. Sci. 328, 485–509 (2016).
Ekinci, Y. L., Balkaya, Ç., Göktürkler, G. & Turan, S. Mannequin parameter estimations from residual gravity anomalies because of simple-shaped sources utilizing differential evolution algorithm. J. Appl. Geophys. 129, 133–147 (2016).
Mandal, A., Mohanty, W. Okay., Sharma, S. P. & Gupta, S. Laterite coated mafic-ultramafic rocks: potential goal for chromite exploration—A case examine from southern a part of Tangarparha, Odisha. J. Geol. Soc. India 86, 519–529 (2015).
Mandal, A. et al. Geophysical anomalies related to uranium mineralization from Beldih mine, South Purulia Shear Zone, India. J. Geol. Soc. India 82, 601–606 (2013).
Biswas, A. & Sharma, S. P. Built-in geophysical research to elicit the subsurface constructions related to Uranium mineralization round South Purulia Shear Zone, India: A evaluate. Ore Geol. Rev. 72, 1307–1326 (2014).
Biswas, A., Mandal, A., Sharma, S. P. & Mohanty, W. Okay. Delineation of subsurface constructions utilizing self-potential, gravity, and resistivity surveys from South Purulia Shear Zone, India: Implication to uranium mineralization. Interpretation 2, T103–T110 (2014).
Biswas, A., Mandal, A., Sharma, S. P. & Mohanty, W. Okay. Integrating obvious conductance in resistivity sounding to constrain second gravity modeling for subsurface construction related to uranium mineralization throughout south Purulia Shear Zone, West Bengal, India. Int. J. Geophys. 2014, 691521 (2014).
Katti, V. J., Sen, J., & Bhatt, A. Okay. Uranium potentiality of South Purulia Shear Zone, Japanese India Protect. In Introduced in Technical Committee Assembly on Low Grade Uranium Deposits (IAEA, March 29–31, 2010).
Sharma, S. P., Biswas, A. & Mittal, S. Delineation of extension of uranium mineralization zone utilizing resistivity and really low frequency electromagnetic surveys round South Purulia Shear Zone, India. J. Geol. Soc. India 84, 645–656 (2014).
Mandal, A. et al. Geophysical signatures of uranium mineralization and its subsurface validation at Beldih, Purulia District, West Bengal, India: A case examine. Geophys. Prospect. 63, 713–726 (2015).
Silva, J. Transformation of nonlinear issues into linear ones utilized to the magnetic subject of a two-dimensional prism. Geophysics 54, 114–121 (1989).
Abdelrahman, E. M. & Essa, Okay. S. A brand new methodology for depth and form determinations from magnetic information. Pure Appl. Geophys. 172, 439–460 (2015).
[ad_2]
Source_link