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Featured researches published by Rupen Panday.


advances in computing and communications | 2010

Simulation study to control solids flow rate in a pilot scale cold flow circulating fluidized bed

Rupen Panday; Brian D. Woerner; James C. Ludlow; Lawrence J. Shadle; Todd Worstell

Controller scaling that is used to frequency-scale an existing PID controller for a large class of plants, eliminates the repetitive controller tuning process for plants that differ mainly in gain and bandwidth. Controller parameterization makes the controller parameters a function of a single variable, the loop-gain bandwidth, and greatly simplifies the tuning process. The controller is scaled according to the gain and frequency scales of the given plant transfer function and the bandwidth parameter whose initial value is set based on the bandwidth requirement from the transient response. This single parameter is required to be gradually adjusted according to a controller performance. However, if the explicit transfer function of a given system is not known, the gain and frequency scales can be determined from an empirical model transfer function obtained from the System Identification procedure. In this paper, we propose a new technique based on the theory of Recursive Least Squares Estimation that allows determining the bandwidth parameter as well as the closed loop model parameters online. As the technique is recursive by nature, it further avoids the adjustment of a bandwidth parameter in accordance with the controller performance.. In a simulation study of controlling solids circulation rate, the technique is applied to time series data obtained from a pilot scale cold flow circulating fluidized bed (CFCFB) present at National Energy Technology Laboratory, Morgantown, WV. If the measurement of solids flow rate were possible as in the present cold flow model, the proposed method could be tested in an industrial scale system such as a fluidized catalytic cracking (FCC) reactor.


Powder Technology | 2014

Challenge problem: 1. Model validation of circulating fluidized beds

Rupen Panday; Lawrence J. Shadle; Mehrdad Shahnam; Ray Cocco; Allan Issangya; James S. Spenik; J. Christopher Ludlow; Balaji Gopalan; Franklin Shaffer; Madhava Syamlal; Chris Guenther; S.B. Reddy Karri; Ted M. Knowlton


Powder Technology | 2016

Investigation of CO2 capture using solid sorbents in a fluidized bed reactor: Cold flow hydrodynamics

Tingwen Li; Jean Francois Dietiker; William A. Rogers; Rupen Panday; Balaji Gopalan; Greggory Breault


Chemical Engineering Research & Design | 2016

Carbon capture test unit design and development using amine-based solid sorbent

Ronald W. Breault; James Spenik; Lawrence J. Shadle; James S. Hoffman; McMahan L. Gray; Rupen Panday; Richard C. Stehle


Powder Technology | 2016

Measurements of pressure drop and particle velocity in a pseudo 2-D rectangular bed with Geldart Group D particles

Balaji Gopalan; Mehrdad Shahnam; Rupen Panday; Jonathan Tucker; Frank Shaffer; Lawrence J. Shadle; Joseph S. Mei; William A. Rogers; Chris Guenther; Madhava Syamlal


Powder Technology | 2013

Standpipe models for diagnostics and control of a circulating fluidized bed

J. Christopher Ludlow; Rupen Panday; Lawrence J. Shadle


Powder Technology | 2010

Estimate of solid flow rate from pressure measurement in circulating fluidized bed

Esmail R. Monazam; Rupen Panday; Lawrence J. Shadle


Powder Technology | 2016

Dynamic modeling of the circulating fluidized bed riser

Rupen Panday; Ronald W. Breault; Lawrence J. Shadle


Industrial & Engineering Chemistry Research | 2018

Numerical Simulation and Experimental Study of the Gas–Solid Flow Behavior Inside a Full-Loop Circulating Fluidized Bed: Evaluation of Different Drag Models

Yupeng Xu; Jordan Musser; Tingwen Li; Balaji Gopalan; Rupen Panday; Jonathan Tucker; Greggory Breault; Mary Ann Clarke; William A. Rogers


Industrial & Engineering Chemistry Research | 2013

Phase shift method to estimate solids circulation rate in circulating fluidized beds

J. Christopher Ludlow; Rupen Panday; Lawrence J. Shadle

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Lawrence J. Shadle

United States Department of Energy

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William A. Rogers

United States Department of Energy

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Balaji Gopalan

West Virginia University

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Chris Guenther

United States Department of Energy

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J. Christopher Ludlow

United States Department of Energy

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Jonathan Tucker

Oak Ridge National Laboratory

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Madhava Syamlal

United States Department of Energy

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Mehrdad Shahnam

United States Department of Energy

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Ronald W. Breault

United States Department of Energy

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