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Main Authors: Virendra Kumar, Paruchuri M. V. Subbarao
Format: Artículo Open Access
Published: Wiley 2025
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Online Access:https://onlinelibrary.wiley.com/doi/10.1002/htj.70013
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author Virendra Kumar
Paruchuri M. V. Subbarao
author_facet Virendra Kumar
Paruchuri M. V. Subbarao
Virendra Kumar
Paruchuri M. V. Subbarao
collection Wiley Open Access
contents On‐Design and Off‐Design Performance of Variable Area Ejectors: A Comparative Study of Constant Rate of Momentum Change and Constant Rate of Kinetic Energy Change Methods Virendra Kumar Paruchuri M. V. Subbarao Heat Transfer ABSTRACTThe design of the ejector is crucial, as the overall performance and efficiency of the system depend on its internal geometry, dimensions, and flow characteristics. The present experimental study compares the performance of variable area ejectors developed based on the “constant rate of momentum change (CRMC)” and “constant rate of kinetic energy change (CRKEC).” The pressure recovery ratio (PRR) and entrainment ratio (ω) at on‐design operating conditions were computed based on experimental results. The study also optimizes both the ejector's entrainment ratio at off‐design conditions and the impact of nozzle exit positions. CRMC ejectors provide higher entrainment ratios (0.512) and lower PRRs (0.178), while CRKEC ejectors provide slightly higher PRRs (0.18) and lower entrainment ratios (0.5) at on‐design conditions. The results indicate that both variable‐area ejectors based on CRMC and CRKEC have their own advantages and limitations regarding performance and suitability for specific applications. 10.1002/htj.70013 http://onlinelibrary.wiley.com/termsAndConditions#vor
doi_str_mv 10.1002/htj.70013
format Artículo Open Access
id wiley_oa_10_1002_htj_70013
institution Wiley Open Access
license_str_mv http://onlinelibrary.wiley.com/termsAndConditions#vor
publishDate 2025
publisher Wiley
record_format wiley_oa
spellingShingle On‐Design and Off‐Design Performance of Variable Area Ejectors: A Comparative Study of Constant Rate of Momentum Change and Constant Rate of Kinetic Energy Change Methods
Virendra Kumar
Paruchuri M. V. Subbarao
Heat Transfer
On‐Design and Off‐Design Performance of Variable Area Ejectors: A Comparative Study of Constant Rate of Momentum Change and Constant Rate of Kinetic Energy Change Methods Virendra Kumar Paruchuri M. V. Subbarao Heat Transfer ABSTRACTThe design of the ejector is crucial, as the overall performance and efficiency of the system depend on its internal geometry, dimensions, and flow characteristics. The present experimental study compares the performance of variable area ejectors developed based on the “constant rate of momentum change (CRMC)” and “constant rate of kinetic energy change (CRKEC).” The pressure recovery ratio (PRR) and entrainment ratio (ω) at on‐design operating conditions were computed based on experimental results. The study also optimizes both the ejector's entrainment ratio at off‐design conditions and the impact of nozzle exit positions. CRMC ejectors provide higher entrainment ratios (0.512) and lower PRRs (0.178), while CRKEC ejectors provide slightly higher PRRs (0.18) and lower entrainment ratios (0.5) at on‐design conditions. The results indicate that both variable‐area ejectors based on CRMC and CRKEC have their own advantages and limitations regarding performance and suitability for specific applications. 10.1002/htj.70013 http://onlinelibrary.wiley.com/termsAndConditions#vor
title On‐Design and Off‐Design Performance of Variable Area Ejectors: A Comparative Study of Constant Rate of Momentum Change and Constant Rate of Kinetic Energy Change Methods
topic Heat Transfer
url https://onlinelibrary.wiley.com/doi/10.1002/htj.70013