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Dive into the research topics where Azam Mihir Thatte is active.

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Featured researches published by Azam Mihir Thatte.


Volume 9: Oil and Gas Applications; Supercritical CO2 Power Cycles; Wind Energy | 2016

Coupled Physics Performance Predictions and Risk Assessment for Dry Gas Seal Operating in MW-Scale Supercritical CO2 Turbine

Azam Mihir Thatte; Voramon Supatarawanich Dheeradhada

U.S. Department of Energy (DOE) has recently sponsored research programs to develop megawatt scale supercritical CO2 (sCO2) turbine for use in concentrated solar power (CSP) and fossil based applications. To achieve the CSP goal of power at


Archive | 2012

AERODYNAMIC SEALS FOR ROTARY MACHINE

Rahul Anil Bidkar; Massimiliano Cirri; Azam Mihir Thatte; John Robert Williams

0.06/kW-hr LCOE and energy conversion efficiency > 50%, the sCO2 turbine relies critically on extremely low leakage film riding seals like dry gas seal (DGS). Although DGS technology has been used in other applications before. making it successful for stringent conditions of an sCO2 turbo-expander is challenging. This paper presents results from a multi-scale coupled physics model that predicts the performance of DGS under a typical sCO2 turbine mission cycle and addresses some of the risks specific to operation in sCO2. Real gas equations of state are incorporated in the models to capture large discontinuities in fluid properties close to the critical point. A novel experimental setup is developed to observe and characterize transition of CO2 through liquid-vapor and supercritical phases. Coupled fluid-structure-thermal interaction model investigates the effect of aerodynamic and thermal perturbations on the structural and rotordynamic instabilities. Dynamic instabilities arising from sonic transition in thin sCO2 film of DGS pose additional challenges while the large surface roughness changes due to sCO2 corrosion warrant further design considerations. Effectiveness of features like spiral grooves in converting fluid momentum into pressure rise in the thin film and also in achieving local flow reversals is investigated. Effect of various design features on the optimal performance is quantified and insights for a successful DGS operation in a sCO2 turbomachine are provided.© 2016 ASME


Archive | 2012

FILM RIDING AERODYNAMIC SEALS FOR ROTARY MACHINES

Rahul Anil Bidkar; Matthew Michael Langenderfer; Hrishikesh Vishvas Deo; Azam Mihir Thatte


Archive | 2013

PRESSURE ACTUATED FILM RIDING SEALS FOR TURBO MACHINERY

Rahul Anil Bidkar; Azam Mihir Thatte; Nathan Evan McCurdy Gibson; Andrew Paul Giametta


Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2016

Low-Leakage Shaft End Seals for Utility-Scale Supercritical CO2 Turboexpanders

Rahul Anil Bidkar; Edip Sevincer; Jifeng Wang; Azam Mihir Thatte; Andrew Mann; Maxwell Peter; Grant O. Musgrove; Timothy C. Allison; J. Jeffrey Moore


Archive | 2014

INDIVIDUALLY COMPLIANT SEGMENTS FOR SPLIT RING HYDRODYNAMIC FACE SEAL

Azam Mihir Thatte; Karimulla Shaik Sha; Rahul Anil Bidkar; Xiaoqing Zheng


Archive | 2013

ROTARY MACHINE ASPIRATING SEAL ASSEMBLY AND METHOD OF ASSEMBLING THE SAME

Xiaoqing Zheng; Norman Arnold Turnquist; Michael Dennis Mack; Rahul Anil Bidkar; Azam Mihir Thatte


Archive | 2013

ROTARY MACHINE SECONDARY SEALING ASSEMBLY AND METHOD OF ASSEMBLING THE SAME

Xiaoqing Zheng; Rahul Anil Bidkar; Karimulla Shaik Sha; Azam Mihir Thatte


Archive | 2018

SEGMENTED FACE SEAL ASSEMBLY AND AN ASSOCIATED METHOD THEREOF

Rahul Anil Bidkar; Azam Mihir Thatte; Jifeng Wang; Xiaoqing Zheng; Edip Sevincer


Archive | 2018

FACE SEAL ASSEMBLY AND AN ASSOCIATED METHOD THEREOF

Rahul Anil Bidkar; Azam Mihir Thatte; Jifeng Wang; Xiaoqing Zheng; Edip Sevincer

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