يعرض 1 - 20 نتائج من 235 نتيجة بحث عن '"tratamiento químico"', وقت الاستعلام: 0.61s تنقيح النتائج
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    Dissertation/ Thesis

    المؤلفون: Vilar Montesinos, Almudena

    Thesis Advisors: Veiga, María C, Kennes, Christian, Universidade da Coruña. Departamento de Química Física e Enxeñaría Química I

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    Dissertation/ Thesis

    Thesis Advisors: Veiga, María Carmen, Kennes, Christian, Universidade da Coruña. Departamento de Química Física e Enxeñaría Química I

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    المساهمون: Yanchapanta Gómez, Nicolay Bernardo

    Relation: Chariguamán Chanatasig, J.A. (2024). Estudio del hormigón con fibras naturales de abacá como componente en la dosificación, con tratamiento químico : estudio del hormigón con fibras naturales de abacá al 0.75% como componente en la dosificación, con tratamiento químico NaOH. 90 páginas. Quito : EPN.; T-IC 1335/CD 14295; http://bibdigital.epn.edu.ec/handle/15000/25647

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    المؤلفون: Morales Supa, Karla Taíz

    المساهمون: Yanchapanta Gómez, Nicolay Bernardo

    Relation: Morales Supa, K.T. (2024). Análisis del Hormigón Reforzado con Fibras de Cabuya al 0.5%, 0.75% y 1% con tratamiento químico : análisis del Hormigón Reforzado con Fibras de Cabuya al 0.75%. 75 páginas. Quito : EPN.; T-IC 1327/CD 14272; http://bibdigital.epn.edu.ec/handle/15000/25645

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    Academic Journal
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    Academic Journal

    المؤلفون: Ortega Romero, Cindy Alejandra

    المساهمون: Olaya Morales, Yris, Mejía Cárdenas, Juan Manuel, Dinámicas de Flujo y Transporte en Medios Porosos

    Time: Universidad Nacional de Colombia - Sede Medellín

    وصف الملف: application/pdf

    Relation: B. Liang et al., “Novel Enhanced-Oil-Recovery Decision-Making Work Flow Derived From the Delphi-AHP-TOPSIS Method : A Case Study,” no. October 2015, pp. 20–22, 2018.; J. Carlos and S. Tamayo, “Metodología para la identificación de pozos con oportunidades de incremento de producción en campos maduros universidad central del Ecuador,” Universidad Central del Ecuador, 2013.; R. Al-Mjeni, S. Arora, and P. Cherukupalli, “Has the time come for EOR?,” Oilf. Rev., vol. 22, no. 4.; A. A. Olajire, “Review of ASP EOR (alkaline surfactant polymer enhanced oil recovery) technology in the petroleum industry: Prospects and challenges,” Energy, vol. 77, pp. 963–982, Dec. 2014.; A. Y. Zekri and K. K. Jerbi, “Economic evaluation of enhanced oil recovery,” Oil Gas Sci. Technol., vol. 57, no. 3, pp. 259–267, 2002.; C. M. Aparicio González, “Desarrollo de un algoritmo de decisión multicriterio para la gestión de listas de espera en la solicitud de holter,” 2015.; EcuRed, “Análisis multicriterio - EcuRed.” [Online]. Available: https://www.ecured.cu/Análisis_multicriterio. [Accessed: 07-Nov-2018].; A. Guitouni and J.-M. Martel, “Tentative guidelines to help choosing an appropriate MCDA method,” Eur. J. Oper. Res., vol. 109, no. 2, pp. 501–521, Sep. 1998.; M. Velasquez and P. T. Hester, “An analysis of multi-criteria decision making methods,” Int. J. Oper. Res., vol. 10, no. 2, pp. 49–58, 2015.; J. Ruiz, “MÉTODOS DE DECISIÓN MULTICRITERIO ELECTRE Y TOPSIS APLICADOS A LA ELECCIÓN DE UN DISPOSITIVO MÓVIL,” Universidad de Sevilla, 2015.; F. J. Ruvalcaba Coyaso, F. J. and A. Vermonden, A., “Lógica difusa para la toma de decisiones y la selección de personal,” Univ. Empres., vol. 17, no. 29, pp. 239–256, 2016.; M. B. Ayhan, “A Fuzzy AHP Approach For Supplier Selection Problem: A Case Study In A Gearmotor Company,” Int. J. Manag. Value Supply Chain., vol. 4, no. 3, pp. 11–23, 2013.; I. A. León Téllez, S. L. Garcia Guevara, and Y. Guerra Vázquez, “A Model for Hierarchical Arrangement and Selection of Projects for Local Development Initiatives in Municipalities,” Retos la Dir., vol. 12, no. 1, pp. 159–185, 2018.; J. J. Buckley and V. R. R. Uppuluri, “Fuzzy Hierarchical Analysis,” in Uncertainty in Risk Assessment, Risk Management, and Decision Making, Boston, MA: Springer US, 1987, pp. 389–401; M. Khojastehmehr, M. Madani, and A. Daryasafar, “Screening of enhanced oil recovery techniques for Iranian oil reservoirs using TOPSIS algorithm,” Energy Reports, vol. 5, pp. 529–544, Nov. 2019; ENERGY INSTITUTE LONDON, Good plant design and operation for onshore carbon capture installations and onshore pipelines. 2010.; NALCO, “Environmental impact assessment for capacity augmentation of specialty chemicals from 11,000 tpa to 22,000 tpa within the existing plant at konnagar, hooghly district, west bengal,” 2018; F. B. Cortés et al., “Development and Evaluation of Surfactant Nanocapsules for Chemical Enhanced Oil Recovery (EOR) Applications.,” Molecules, vol. 23, no. 7, Jun. 2018.; K. Semeco, “REPARACIÓN DE POZOS - QRA Análisis Probabilístico de Riesgo de la Actividad de Perforación y Reparación de Pozos,” Reliab. Risk Manag. S.A, 2006.; C. A. Espinosa and K. J. Torres, “Técnicas de recobro y recobro mejorado en yacimientos con crudos livianos , pesados y extra-pesados,” J. Pet. Sci. Eng., p. 19, 2015; A. Al-Adasani and B. Bai, “Recent Developments and Updated Screening Criteria of Enhanced Oil Recovery Techniques,” pp. 1–24, 2010; Schlumberger Oilfield Glossary, “tensión interfacial - Schlumberger Oilfield Glossary.” [Online]. Available: ttps://www.glossary.oilfield.slb.com/es/Terms/i/interfacial_tension.aspx. [Accessed: 08-Jun-2019].; Schlumberger Limited, “EOR Pilot Design %7C Schlumberger,” 2018. [Online]. Available: https://www.slb.com/services/technical_challenges/enhanced_oil_recovery/pilot_projects/construction_eor.aspx. [Accessed: 03-Sep-2018].; Schlumberger Limited, “Pilot Projects %7C Schlumberger,” 2018. [Online]. Available: https://www.slb.com/services/technical_challenges/enhanced_oil_recovery/pilot_projects.aspx. [Accessed: 03-Sep-2018; A. Morillas, “Introducción al análisis de datos difusos,” in Introducción al análisis de datos difusos, Edición el., 2006.; S. C. D. F. José, “A Genetic Algorithm to Obtain Consistency in Analytic Hierarchy Process,” Brazilian J. Oper. Prod. Manag., vol. 8, no. 1, pp. 55–64, 2011.; F. Moussaoui, M. Cherrared, M. A. Kacimi, and R. Belarbi, “A genetic algorithm to optimize consistency ratio in AHP method for energy performance assessment of residential buildings—Application of top-down and bottom-up approaches in Algerian case study,” Sustain. Cities Soc., vol. 42, no. August 2017, pp. 622–636, 2018.; A. S. Milani, A. Shanian, R. Madoliat, and J. A. Nemes, “The effect of normalization norms in multiple attribute decision making models: a case study in gear material selection,” Struct. Multidiscip. Optim., vol. 29, no. 4, pp. 312–318, Apr. 2005.; A. Çelen, “Comparative Analysis of Normalization Procedures in TOPSIS Method: With an Application to Turkish Deposit Banking Market,” INFORMATICA, vol. 25, no. 2, pp. 185–208, 2014; L. M. Camarinha-Matos, A. J. Falcão, N. Vafaei, and S. Najdi, “Normalization Techniques for Multi-Criteria Decision Making: Analytical Hierarchy Process Case Study,” IFIP Adv. Inf. Commun. Technol., vol. 470, no. October 2017, 2016.; S. Chakraborty and C.-H. Yeh, “A simulation comparison of normalization procedures for TOPSIS,” no. July, pp. 1815–1820, 2009.; N. Vafaei, R. A. Ribeiro, and L. M. C. Matos, “Data normalisation techniques in decision making: case study with TOPSIS method,” Int. J. Inf. Decis. Sci., vol. 10, no. 1, p. 19, 2018.; https://repositorio.unal.edu.co/handle/unal/75604

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