Experimental Investigation into Closed-Loop Control for HTPB-Based Hybrid Rocket Motors
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Guobiao Cai | H. Tian | Yuanjun Zhang | Zihao Guo | Z. Wang | Guangyu Tan | Jingfei Gao
[1] Guobiao Cai,et al. Effect of High-Mass Fraction of Aluminum on Catalytic Hybrid Rocket Motor , 2022, Applied Sciences.
[2] I. Ozkol,et al. Hybrid Rocket Nozzle Erosion with Microaluminum-Added Fuel , 2022, Journal of Propulsion and Power.
[3] Xiangyu Meng,et al. Numerical and experimental study on 95% hydrogen peroxide catalytic ignition of hybrid rocket motors with HTPB-based aluminum additive fuel , 2022, Acta Astronautica.
[4] Lu Yudong,et al. Experimental study on precise thrust control of hydrogen peroxide and polyethylene hybrid rocket motors , 2022, Acta Astronautica.
[5] Guobiao Cai,et al. Effect of metal and metalloid solid-fuel additives on performance and nozzle ablation in a hydroxy-terminated polybutadiene based hybrid rocket motor , 2022, Aerospace Science and Technology.
[6] Xuejiao Liu,et al. Regression rate modeling of HTPB/paraffin fuels in hybrid rocket motor , 2022, Aerospace Science and Technology.
[7] K. Sobczak,et al. Hybrid rocket propulsion technology for space transportation revisited - propellant solutions and challenges , 2021, FirePhysChem.
[8] H. Moon,et al. Development of 200 N-class throttleable hybrid rocket motor for lunar module application , 2021, FirePhysChem.
[9] Lorenzo Casalino,et al. Hybrid Rocket Engine Design Optimization at Politecnico di Torino: A Review , 2021, Aerospace.
[10] H. Nagata,et al. Reconstruction techniques for determining O/F in hybrid rockets , 2021, AIAA Propulsion and Energy 2021 Forum.
[11] D. Pastrone,et al. Optimal Design of Electrically Fed Hybrid Mars Ascent Vehicle , 2021, Aerospace.
[12] Jacob M. Stahl,et al. Experimental evaluation of HTPB/paraffin fuel blends for hybrid rocket applications , 2021, Combustion and Flame.
[13] Jean Pitot,et al. Closed Loop Throttle Control of a Liquefying Fuel Hybrid Rocket Motor , 2021 .
[14] S. Linke,et al. The regolith rocket—A hybrid rocket using lunar resources , 2021 .
[15] Yin Wang,et al. Regression rate of paraffin-based fuels in hybrid rocket motor , 2020 .
[16] T. Shimada,et al. Performance of Mixture-Ratio-Controlled Hybrid Rockets Under Uncertainties in Fuel Regression , 2020 .
[17] Ozan Kara,et al. Hybrid rockets with mixed N2O/CO2 oxidizers for Mars Ascent Vehicles , 2020 .
[18] Junwei Li,et al. Transient flow characteristics and performance of a solid rocket motor with a pintle valve , 2020 .
[19] Peng Cheng,et al. System scheme design for LOX/LCH4 variable thrust liquid rocket engines using motor pump , 2020 .
[20] Lorenzo Casalino,et al. Robust Design Approaches for Hybrid Rocket Upper Stage , 2019, Journal of Aerospace Engineering.
[21] Toru Shimada,et al. Theoretical Investigation on Feedback Control of Hybrid Rocket Engines , 2019, Aerospace.
[22] Ruiquan Liao,et al. Study of mechanical choked Venturi nozzles used for liquid flow controlling , 2019, Flow Measurement and Instrumentation.
[23] N. Bellomo,et al. Testing of a Long-Burning-Time Paraffin-Based Hybrid Rocket Motor , 2019, Journal of Propulsion and Power.
[24] X. Zhang,et al. Insulator ablation modes in different impact conditions of alumina droplets onto wall surfaces , 2018, Acta Astronautica.
[25] Zhijun Wei,et al. Thrust Control by Fluidic Injection in Solid Rocket Motors , 2017 .
[26] Alessandro Mazzetti,et al. Paraffin-based hybrid rocket engines applications: A review and a market perspective , 2016 .
[27] Guobiao Cai,et al. Experimental Tests of Throttleable H2O2/PE Hybrid Rocket Motors , 2015 .
[28] Nanjia Yu,et al. Application of variable area cavitating venturi as a dynamic flow controller , 2014 .
[29] Stephen A. Whitmore,et al. Closed-Loop Precision Throttling of a Hybrid Rocket Motor , 2014 .
[30] Shannon D. Eilers,et al. Deep Throttle of a Nitrous Oxide and Hydroxyl-Terminated Polybutadiene Hybrid Rocket Motor , 2014 .
[31] Guobiao Cai,et al. Numerical Investigation on Flow in the Variable Area Cavitating Venturi , 2013 .
[32] Stephen D. Heister,et al. Variable Thrust, Multiple Start Hybrid Motor Solutions for Missile and Space Applications , 2010 .
[33] Chunguo Yue,et al. Summarization on variable liquid thrust rocket engines , 2009 .
[34] Carmine Carmicino,et al. Influence of a Conical Axial Injector on Hybrid Rocket Performance , 2006 .
[35] Qianlong Wang,et al. Combustion characteristics of skeleton polymer reinforced paraffin-wax fuel grain for applications in hybrid rocket motors , 2022, Combustion and Flame.
[36] V. Ravikumar,et al. Mechanical Characterization of Paraffin-Based Hybrid Rocket Fuels , 2019, Materials Today: Proceedings.