Please use this identifier to cite or link to this item: https://hdl.handle.net/10953/2764
Title: Agustin de Betancourt’s Wind Machine for Draining Marshy Ground: Approach to Its Geometric Modeling with Autodesk Inventor Professional
Authors: Rojas Sola, José Ignacio
De la Morena de la Fuente, Eduardo
Abstract: The present study shows the process followed in making the three-dimensional model and geometric documentation of a historical invention of the renowned Spanish engineer Agustin de Betancourt y Molina, which forms part of his rich legacy. Specifically, this was a wind machine for draining marshy ground, designed in 1789. The present research relies on the computer-aided design (CAD) techniques using Autodesk Inventor Professional software, based on the scant information provided by the only two drawings of the machine, making it necessary to propose a number of dimensional and geometric hypotheses as well as a series of movement restrictions (degrees of freedom), to arrive at a consistent design. The results offer a functional design for this historic invention.
Keywords: Agustin de Betancourt
wind machine for draining marshy ground
geometric modeling
virtual reconstruction
Autodesk Inventor Professional
cultural heritage
Issue Date: 26-Dec-2016
metadata.dc.description.sponsorship: This research has been developed within the research project entitled “Agustin de Betancourt’s historical heritage: a comprehensive study of contributions to the civil engineering from the perspective of engineering graphics for its valorization and dissemination” (HAR2015-63503-P), funded by the Spanish Ministry of Economic Affairs and Competitiveness, under the Spanish Plan of Scientific and Technical Research and Innovation (2013–2016), and by the European Regional Development Fund (ERDF).
Publisher: Multidisciplinary Digital Publishing Institute
Citation: Rojas-Sola, J.I.; De la Morena-de la Fuente, E. Agustin de Betancourt’s Wind Machine for Draining Marshy Ground: Approach to Its Geometric Modeling with Autodesk Inventor Professional. Technologies 2017, 5, 2. https://doi.org/10.3390/technologies5010002
Appears in Collections:DIGDP-Artículos

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