يعرض 1 - 20 نتائج من 146 نتيجة بحث عن '"Ovando, G."', وقت الاستعلام: 0.76s تنقيح النتائج
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    المصدر: Mathematics Applied to Engineering in Action ; page 171-178 ; ISBN 9781003055174

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    المصدر: AIP Conference Proceedings ; 11TH INTERNATIONAL CONFERENCE ON MATHEMATICAL MODELING IN PHYSICAL SCIENCES ; volume 2872, page 120055 ; ISSN 0094-243X

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    Alternate Title: Evaluación del cambio en el uso del suelo en la región agrícola de secano de Córdoba, Argentina entre 2000 y 2020 basado en datos NDVI. (Spanish)

    المصدر: Agriscientia; 2024, Vol. 41 Issue 1, p27-43, 17p

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    المصدر: Informes de la Construcción; Vol. 70 No. 551 (2018); e264 ; Informes de la Construcción; Vol. 70 Núm. 551 (2018); e264 ; 1988-3234 ; 0020-0883 ; 10.3989/ic.2018.v70.i551

    وصف الملف: text/html; application/pdf; application/xml

    Relation: https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5916/7026; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5916/7027; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5916/7028; Henriksen, T., Lo, S., & Knaack, U. (2016). A new method to advance complex geometry thin- walled glass fibre reinforced concrete elements. Journal of Building Engineering. https://doi.org/10.1016/j.jobe.2016.04.002; Llatas, C. (2011). A model for quantifying construction waste in projects according to the European waste list. Waste Management, 31(6), 1261–1276. https://doi.org/10.1016/j.wasman.2011.01.023 PMid:21353519; Casta-eda, E., Lauret, B., Lirola, J. M., & Ovando, G. (2015). Free-form architectural envelopes: Digital processes opportunities of industrial production at a reasonable price. Journal of Facade Design and Engineering, 3(1), 1–13. https://doi.org/10.3233/FDE-150031; Gao, M. (2015). Application of light-weight GRC cladding panel in Nanjing Youth Olympic Conference Centre. GRC 2015 Congress (pp. 1–16). Dubai.; Rai, A., & Joshi, Y. P. (2014). Applications and Properties of Fibre Reinforced Concrete. Journal of Engineering Research and Applications, 4(5), 123–131.; Rodriguez Santiago, J., Jordan Reyes, M. (1986). Aplicaciones del GRC en España y Argelia. Informes de la Construcción, 38 (383), 65-72. https://doi.org/10.3989/ic.1986.v38.i383.1733; Instituto Eduardo Torroja (2006). DIT. Sistema DRACE para cerramiento de fachadas con paneles prefabricados de GRC. España.; Llerena, Á. B., Caballero, J. M., & Zaldo, V. (1981). Aplicaciones del cemento reforzado con fibra de vidrio (GRC). Informes de la Construcción, 33 (333-334-335-336), 73-81. https://doi.org/10.3989/ic.1981.v33.i333-334-335-336.2196; Helvoirt, J. (2003). Een 3D blob huid Afstudeerverslag 3370. Technische Universiteit Eindhoven.; Lloret, E., Shahab, A. R., Linus, M., Flatt, R. J., Gramazio, F., Kohler, M., & Langenberg, S. (2015). Complex concrete structures: Merging existing casting techniques with digital fabrication. CAD Computer Aided Design, 60, 40–49. https://doi.org/10.1016/j.cad.2014.02.011; Iori, T., & Poretti, S. (2005). Pier Luigi Nervi's Works for the 1960 Rome Olympics. In Cuarto Congreso Nacional de Historia de la Construcción (pp. 605–613). Cádiz.; Pronk, A., Rooy, I. Van, & Schinkel, P. (2009). Double-curved surfaces using a membrane mould. Proceedings of the International Association for Shell and Spatial Structures (IASS) (pp. 618–628). Valencia.; Kok, M. (2013). Textile reinforced double curved concrete elements Manufacturing free-form architecture with a flexible mould. Delft University of Technology.; West, M., & Araya, R. (2009). Fabric Formwork for Concrete Structures and Architecture. IV International Conference on Textile Composites and Inflatable Structures. Stuttgart.; Van Hennik, P., & Houtman, R. (2008). Pneumatic Formwork for Irregular Curved Thin Shells. In E. O-ate & B. Kröplin (Eds.), Textile Composites and Inflatable Structures II (pp. 99–116). inbook, Dordrecht: Springer Netherlands.; Pronk, A., Seffinga, A., el Ghazi, H., & Schuijers, N. (2015). Flexible mould by the use of spring steel mesh. Proceedings of the International Association for Shell and Spatial Structures (IASS). Amsterdam.; Boers, S. (2006). OptiMal Forming Solutions. FlexiMold, 1–2.; Eigenraam, P. (2013). Flexible mould for production of double-curved concrete elements. Delft University of Technology.; Schipper, R. (2015). Double-curved precast concrete elements. Research into technical viability of the flexible mould method. Delft University of Technology.; Raun, C., & Kirkegaard, P. (2015). Adaptive Mould - A Cost-Effective Mould System Linking Design and Manufacturing of Double-Curved Panels. GRC 2015 Congress, (pp. 1–7). Dubai.; Schipper, R., & Vambersky, J. (2010). A flexible mould for double curved pre-cast concrete elements. BFT International, 8, (1–4).; Van den Ende, B. (2011). Standard Principles: Double Curved Facades (DISS). Delft University of Technology.; Hauschild, M., & Karzel, R. (2011). Digital Processes: Planning, Designing, Production. Birkhäuser. https://doi.org/10.11129/detail.9783034614351; Kolarevic, B. (2005). Digital Praxis: From Digital to Material. 3rd International Conference on Innovation in Architecture, Engineering and Construction (AEC) (p. 5).; Hew, K., Fisher, N., & Awbi, H. (2001). Towards an integrated set of design tools based on a common data format for building and services design. Automation in Construction, 10(4), 459–476. https://doi.org/10.1016/S0926-5805(00)00082-0; Alonso, L., Lauret, B., Casta-eda, E., Dominguez, D., & Ovando, G. (2014). Free-Form Architectural Façade Panels: An Overview of Available Mass-Production Methods for Free-Form External Envelopes. Construction and Building Research (pp. 149–156). Springer Netherlands. https://doi.org/10.1007/978-94-007-7790-3_20; Martins, P., Campos, P., Nunes, S., & Sousa, J. (2015). Expanding the Material Possibilities of Lightweight Prefabrication in Concrete Through Robotic Hot-Wire Cutting . eCAADe 33. 2 (pp. 341–351). Viena.; Afify, H., & Elghaffar, Z. (2007). Advanced Digital Manufacturing Techniques (CAM) in Architecture. Em'body'ing Virtual Architecture: The Third International Conference of the Arab Society for Computer Aided Architectural Design (pp. 67–80). Alexandria, Egypt: The Arab Society for Computer Aided Architectural Design.; Adeyeye, O., Pasquire, C., Soar, R., Austin, S., & Pendlebury, M. (2006). Architectural freeform construction: potential use in repair for re-use, maintenance and manufacture of building components. Conference of the Royal Institution of Chartered Surveyors. RICS, The Bartlett School, UCL and the contributors.; Naboni, R., & Paoletti, I. (2015). Advanced Customization in Architectural Design and Construction. Springer International Publishing. https://doi.org/10.1007/978-3-319-04423-1; Oesterle, S., Vansteenkiste, A., & Mirjan, A. (2012). Zero Waste Free-Form Formwork. Icff 2012. Second International Conference on Flexible Formwork (pp. 258–267). BRE CICM, University of Bath.; Gould, J. (2010). Formtexx. Freeform facades with automotive precision. London.; Lee, G., & Kim, S. (2012). Case Study of Mass Customization of Double-Curved Metal Façade Panels Using a New Hybrid Sheet Metal Processing Technique. Journal of Construction Engineering and Management, 138(11), 1322–1330. https://doi.org/10.1061/(ASCE)CO.1943-7862.0000551; Cai, Z. Y., & Li, M. Z. (2002). Multi-point forming of three-dimensional sheet metal and the control of the forming process. International Journal of Pressure Vessels and Piping, 79(4), 289–296. https://doi.org/10.1016/S0308-0161(02)00017-0; Paunoiu, V., Cekan, P., Gavan, E., & Nicoara, D. (2008). Numerical simulations in reconfigurable multipoint forming. International Journal of Material Forming, 1, 181–184. https://doi.org/10.1007/s12289-008-0021-4; Alonso, L., Bedoya, C., Lauret, B., & Alonso, F. (2014). F2TE3: sistema de cerramiento transparente, ligero, de altas prestaciones energéticas que permite el dise-o con formas libres. Informes de la Construcción, 65(532), 443–456. https://doi.org/10.3989/ic.12.068; Park, J., & Kim, Y. (2003). Fundamental studies on the incremental sheet metal forming technique. Journal of Materials Processing Technology, 140, 447–453. https://doi.org/10.1016/S0924-0136(03)00768-4; Brell-Çokcan, S., & Braumann, J. (2016). Robots in Architecture. http://www.robotsinarchitecture.org/; Eigensatz, M., Kilian, M., Schiftner, A., Mitra, N., Pottmann, H., & Pauly, M. (2010). Paneling Architectural Freeform Surfaces. ACM Trans. Graph. SIGGRAPH '10. 29 (pp. 45:1-45:10). New York. https://doi.org/10.1145/1833349.1778782; Buswell, R., Thorpe, A., Soar, R., & Gibb, A. (2008). Design, data and process issues for mega-scale rapid manufacturing machines used for construction. Automation in Construction, 17(8), 923–929. https://doi.org/10.1016/j.autcon.2008.03.001; Kolarevic, B. (2003). Architecture in the Digital Age. Design and Manufacturing. Nueva York- Londres: Spon Press -Taylor & Francis Group.; Spuybroek, L. (2004). Nox: Machining architecture. Thames & Hudson.; Gard, F. (2013). Flexible Mold. Eindhoven University of Technology. http://alexandria.tue.nl/extra2/afstversl/bwk/765926.zip; Van Rietbergen, B. (2010). FE-analysis of the 3-point bending experiment. Eindhoven University of Technology.; Grünewald, S., Schipper, R., & Hordijk, D. (2016). Double-curved Panels produced in a flexible Mould with self- compacting Fibre Reinforced Concrete. Ultra-High Performance Concrete and High Performance Construction Materials: Proceedings of HiPerMat 2016 4th International Symposium on Ultra High Performance Concrete and High Performance Construction Materials 27(pp. 1–8). http://hdl.handle.net/1854/LU-7147033; Cincinnatti Incorporated. (2015). BAAM. http://www.e-ci.com/baam/; Castañeda V., E. (2017). Industrialización de la envolvente opaca arquitectónica de forma libre: Nueva alternative de paneles de GRC sin molde (Tesis doctoral). ETSAM-UPM, Madrid.; https://informesdelaconstruccion.revistas.csic.es/index.php/informesdelaconstruccion/article/view/5916

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    المؤلفون: Piazzetta, R., Puebla Ovando, G.

    المصدر: Forêt méditerranéenne, [ISSN = 0245-484X], T. XXXV, n°2, 2014, pp. 117-122.

    Relation: Forêt méditerranéenne; Piazzetta R.; Puebla Ovando G., "Reboisements en chêne-liège en Estrémadure (Espagne)", Forêt méditerranéenne, T. XXXV, n°2, 2014, pp. 117-122.; http://hdl.handle.net/2042/56688

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