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Anand Makwana
Anand Makwana
Air Products, The Pennsylvania State University
Подтвержден адрес электронной почты в домене airproducts.com
Название
Процитировано
Процитировано
Год
Effect of fuel composition on soot and aromatic species distributions in laminar, co-flow flames. Part 1. Non-premixed fuel
Y Wang, A Makwana, S Iyer, M Linevsky, RJ Santoro, TA Litzinger, ...
Combustion and Flame 189, 443-455, 2018
442018
Effect of aromatic fuels and premixing on aromatic species and soot distributions in laminar, co-flow flames at atmospheric pressure
AK Makwana, S Iyer, M Linevsky, R Santoro, T Litzinger, J O'Connor
Combustion and Flame 194, 164-174, 2018
152018
Effect of fuel composition on soot and aromatic species distributions in laminar, co-flow flames. Part 2. Partially-premixed fuel
A Makwana, Y Wang, S Iyer, M Linevsky, RJ Santoro, TA Litzinger, ...
Combustion and Flame, 2017
152017
Experimental and numerical investigation of effects of premixing on soot processes in iso-octane co-flow flames
A Makwana, A Jain, M Linevsky, S Iyer, R Santoro, T Litzinger, Y Xuan, ...
Proceedings of the Combustion Institute 37 (1), 1031-1039, 2019
62019
Towards a micromechanical model of intervertebral disc degeneration under cyclic loading
AR Makwana, AR Krishna, H Yuan, RH Kraft, X Zhou, AJ Przekwas, ...
ASME International Mechanical Engineering Congress and Exposition 46469 …, 2014
62014
Enhancing Direct Reduced Iron (DRI) for Use in Electric Steelmaking
A Sane, G Buragino, A Makwana, X He
42020
Effects of fuel molecular weight on emissions in a jet flame and a model gas turbine combustor
A Makwana, S Iyer, M Linevsky, R Santoro, T Litzinger, J O'Connor
Journal of Engineering for Gas Turbines and Power 140 (3), 031505, 2018
42018
Capturing Soot Formation with the Use of Iso-Octane as a Surrogate for Fischer-Tropsch Fuel
A Makwana, Y Wang, M Linevsky, S Iyer, R Santoro, T Litzinger, ...
9th US National Combustion Meeting, 2015
32015
Decarbonization of Secondary aluminum melting
A Makwana, X He, R Hewertson, M Lawrence
Light Metal Age 32, 2022
22022
Pathways to Reduce Operational Carbon Footprint in Secondary Aluminum Melting
A Makwana, V Sa, J Kabarowski, Y Huang, RP Da Silva Junior, X He
TMS Annual Meeting & Exhibition, 17-27, 2024
12024
Oxy-fuel combustion system and method for melting a pelleted charge material
AV Sane, GJ Buragino, A Makwana, MD Buzinski, X He, MD D'agostini
US Patent 11,060,792, 2021
12021
Novel Method for Stirring BOF Melts in Conjunction with Slag Splashing
A Makwana, A Sane, X He, G Buragino
12020
Effects of fuel molecular weight on emissions in a jet flame and a model gas turbine combustor
A Makwana, S Iyer, M Linevsky, R Santoro, T Litzinger, J O’Connor
Turbo Expo: Power for Land, Sea, and Air 50848, V04AT04A045, 2017
12017
Low Carbon-Intensity Hydrogen Production Pathways, Distribution, and Use in Secondary Aluminum Melting
M Schoonover, A Makwana, V Sa
LIGHT METAL AGE, 42, 2024
2024
Decarbonisation of secondary aluminium melting
A Makwana, X He, R Hewertson, M Lawrence
Aluminium International Today, 2023
2023
Tuyere for a basic oxygen furnace
A Makwana, AV Sane, MD Buzinski, GJ Buragino
US Patent 11,155,890, 2021
2021
Effects of Fuel Molecular Weight on Emissions in a Jet Flame and a Model Gas Turbine Combustor
M Linevsky, R Santoro, T Litzinger, J O’Connor
Journal of Engineering for Gas Turbines and Power 140, 031505-1, 2018
2018
Effects of fuel molecular structure on emissions in a jet flame and a model gas turbine combustor
A Makwana
2018
Effects of hydrogen addition on the structure of n-dodecane laminar, co-flow flame
A Makwana, M Linevsky, S Iyer, R Santoro, T Litzinger, J O'Connor
2018 Spring Technical Meeting of the Eastern States Section of the …, 2018
2018
Effect of aromatic fuels on aromatic species and soot distributions in laminar, co-flow, non-premixed flames at atmospheric pressure.
A Makwana, S Iyer, M Linevsky, R Santoro, T Litzinger, J O'Connor
10th U.S. National Combustion Meeting, 2017
2017
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Статьи 1–20