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Drying Technology
An International Journal
Volume 20, 2002 - Issue 9
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Original Articles

MODELLING AND CONTROL OF AN ALFALFA ROTARY DRYER

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Pages 1869-1887 | Published online: 06 Feb 2007

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Read on this site (14)

Alireza Ghasemi, Alireza Hasankhoei, Gholamabbas Parsapour, Erfan Razi & Samad Banisi. (2021) A combined physical and DEM modelling approach to improve performance of rotary dryers by modifying flights design. Drying Technology 39:4, pages 548-565.
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A. Merino, R. Alves, L. F. Acebes & C. Prada. (2017) Modeling and simulation of a beet pulp dryer for a training simulator. Drying Technology 35:14, pages 1765-1780.
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Hugo Perazzini, Flavio Bentes Freire, Fábio Bentes Freire & José Teixeira Freire. (2016) Thermal Treatment of Solid Wastes Using Drying Technologies: A Review. Drying Technology 34:1, pages 39-52.
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M. A. Delele, F. Weigler & J. Mellmann. (2015) Advances in the Application of a Rotary Dryer for Drying of Agricultural Products: A Review. Drying Technology 33:5, pages 541-558.
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FábioB. Freire, GustavoN. A. Vieira, JoséT. Freire & ArunS. Mujumdar. (2014) Trends in Modeling and Sensing Approaches for Drying Control. Drying Technology 32:13, pages 1524-1532.
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H. Zarea Hosseinabadi, M. Layeghi, K. Doosthosseini, D. Berthold & S. Shahhosseini. (2014) Simulation of Wood Particle Motion Through a Concurrent Triple-Pass Rotary Dryer. Drying Technology 32:12, pages 1409-1422.
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Hugo Perazzini, Fábio Bentes Freire & José Teixeira Freire. (2014) Prediction of Residence Time Distribution of Solid Wastes in a Rotary Dryer. Drying Technology 32:4, pages 428-436.
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H. Zarea Hosseinabadi, M. Layeghi, D. Berthold, K. Doosthosseini & S. Shahhosseini. (2014) Mathematical Modeling the Drying of Poplar Wood Particles in a Closed-Loop Triple Pass Rotary Dryer. Drying Technology 32:1, pages 55-67.
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Fernando Castaño, FranciscoR. Rubio & ManuelG. Ortega. (2012) Modeling of a Cocurrent Rotary Dryer. Drying Technology 30:8, pages 839-849.
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Alexander Schuster, Martin Kozek, Bernhard Voglauer & Andreas Voigt. (2012) Grey-box modelling of a viscose-fibre drying process. Mathematical and Computer Modelling of Dynamical Systems 18:3, pages 307-325.
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F. T. Ademiluyi, M. F. N. Abowei, Y. T. Puyate & S. C. Achinewhu. (2010) Effects of Drying Parameters on Heat Transfer during Drying of Fermented Ground Cassava in a Rotary Dryer. Drying Technology 28:4, pages 550-561.
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M. S. Bacelos, C. D. F. Jesus & J. T. Freire. (2009) Modeling and Drying of Carton Packaging Waste in a Rotary Dryer. Drying Technology 27:9, pages 927-937.
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EdwinA. Arinze, GregJ. Schoenau & Phani Adapa. (2007) Modeling the Fractional Drying and Aerodynamic Separation of Alfalfa into Leaves and Stems in a Rotary Dryer. Drying Technology 25:5, pages 785-798.
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P. Dufour. (2006) Control Engineering in Drying Technology: Review and Trends. Drying Technology 24:7, pages 889-904.
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Articles from other publishers (8)

Jan M. Schaßberger, Veit Hagenmeyer & Lutz Gröll. (2023) From Stationary to Flexible Plant Operation: Extension of a Co-Current Rotary Dryer Model for Energy Demand Flexibility. From Stationary to Flexible Plant Operation: Extension of a Co-Current Rotary Dryer Model for Energy Demand Flexibility.
Angang Chen, Zhengyun Ren, Zhiping Fan & Xue Feng. (2020) Dead Band Zone Model Predictive Control of Cut Tobacco Drying Process. IEEE Access 8, pages 157781-157792.
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Angang Chen, Zhengyun Ren, Zhiping Fan & Xue Feng. (2020) Two-Layered Model Predictive Control Strategy of the Cut Tobacco Drying Process. IEEE Access 8, pages 155697-155709.
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Xiaotao T. Bi & Mohammad S. Masnadi. 2017. Multiphase Reactor Engineering for Clean and Low‐Carbon Energy Applications. Multiphase Reactor Engineering for Clean and Low‐Carbon Energy Applications 331 376 .
Yohann Rousselet & Vijay K. Dhir. (2016) Numerical modeling of a co-current cascading rotary dryer. Food and Bioproducts Processing 99, pages 166-178.
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M.S. Bacelos, C.F.S. Camargo, A.M. Silveira & J.T. Freire. (2011) Local heat-transfer coefficient of immersed cylindrical surface in fluidized and vibrated fluidized beds. Chemical Engineering and Processing: Process Intensification 50:11-12, pages 1152-1159.
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Maciej Starzak & Mohamed Mathlouthi. (2010) Formation of amorphous sugar in the syrup film – a key factor in modelling of industrial sugar drying. Food Chemistry 122:2, pages 394-409.
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Tarik Raffak, Mohamed Agouzoul, El-Mostafa Mabsate, Hassan Ezzaki & Abellah Chik. (2009) Modélisation et simulation du four rotatif de séchage des phosphates. Mécanique & Industries 9:6, pages 589-597.
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