dc.contributorJuan Martinez F.
dc.contributorJri Ingenieria S. A.
dc.date2014-05-29
dc.date2021-06-30T07:34:04Z
dc.date2021-06-30T07:34:04Z
dc.date.accessioned2022-12-23T07:51:52Z
dc.date.available2022-12-23T07:51:52Z
dc.identifier14IEAT-28675
dc.identifier2014-28675-INNOVA_PRODUCCION
dc.identifierhttp://repositoriodigital.corfo.cl:80/xmlui/handle/11373/11330
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/5677863
dc.descriptionThe General Objective Of This Project is To Mount And Validate An In-situ (minera Esperanza) And On-line Rheometer Prototype Developed For Long Distances Slurry Transport Systems In the Mining Industry
dc.descriptionTo Adapt Original Design (patented) To the Mining Facility Installations
dc.descriptionTo Develop An Algorithm To Automate Control For Standalone Operation Of Prototype.
dc.descriptionTo Validate the Models And Calibrate the Prototype In Order To Determine Final Accuracy Comparing the Results With Laboratory Measurements.
dc.descriptionMulticapillary Rheometer is the Name Given To the Device Designed And Patented By Jri Engineering (2012 Inapi) . The Functionality Of This Equipment is To Measure Rheological Parameters, the Viscosity And Yield Stress For Non-newtonian Fluids. The Design Of This Equipment is Based On the Existence Of An Analytical Solution Of the Flow Laminar In Circular Ducts Under Regime Laminar. Through a Mechanism Of Flow Control And Estimation Of Friction In Pipe It is Possible To Determine the Rheological Behavior Of the Fluid Through Reverse Engineering Achieving Determining Indicated Parameters. Today It is Only Possible To Determine the Parameters Rheological For Mining Pulps, the Viscosity And Yield Stress Using Two Techniques: Through Testing Rheology Laboratory Or Using a Predictor Based On the Concentration By Weight Of the Fluid.
dc.descriptionCorporación de Fomento de la Producción
dc.titleValidation And Developing Mathematical Modeling For Multicapillary Rheometer Petented By Jri
dc.typeproyecto


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