The GSLV LVM3, India’s most powerful launch vehicle, is designed to deliver heavy payloads into Geostationary Transfer Orbit (GTO) and beyond. This project focuses on optimizing its second stage by replacing the current L110 hypergolic stage with the advanced SC160 semi-cryogenic stage, powered by ISROsen and liquid oxygen (LOX). The SC160 offers higher thrust, improved specific impulse, and eco-friendly operation. The study includes theoretical analysis of powered ascent, drag and gravity losses, gravity-turn trajectory shaping, and numerical optimization using GPOPS-II. Structural redesigns of tanks, interstages, and thrust frames are incorporated to support cryogenic operations and higher loads. Results indicate a 20–25% increase in specific impulse, 500–800 kg gain in payload capacity, and reduced propellant toxicity. Overall, the SC160 upgrade enhances mission efficiency, payload capability, and environmental sustainability, strengthening GSLV LVM3’s role in future commercial, strategic, and interplanetary missions.
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Paperback. Condition: new. Paperback. The GSLV LVM3, India's most powerful launch vehicle, is designed to deliver heavy payloads into Geostationary Transfer Orbit (GTO) and beyond. This project focuses on optimizing its second stage by replacing the current L110 hypergolic stage with the advanced SC160 semi-cryogenic stage, powered by ISROsen and liquid oxygen (LOX). The SC160 offers higher thrust, improved specific impulse, and eco-friendly operation. The study includes theoretical analysis of powered ascent, drag and gravity losses, gravity-turn trajectory shaping, and numerical optimization using GPOPS-II. Structural redesigns of tanks, interstages, and thrust frames are incorporated to support cryogenic operations and higher loads. Results indicate a 20-25% increase in specific impulse, 500-800 kg gain in payload capacity, and reduced propellant toxicity. Overall, the SC160 upgrade enhances mission efficiency, payload capability, and environmental sustainability, strengthening GSLV LVM3's role in future commercial, strategic, and interplanetary missions. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9786209129315
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Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The GSLV LVM3, India's most powerful launch vehicle, is designed to deliver heavy payloads into Geostationary Transfer Orbit (GTO) and beyond. This project focuses on optimizing its second stage by replacing the current L110 hypergolic stage with the advanced SC160 semi-cryogenic stage, powered by ISROsen and liquid oxygen (LOX). The SC160 offers higher thrust, improved specific impulse, and eco-friendly operation. The study includes theoretical analysis of powered ascent, drag and gravity losses, gravity-turn trajectory shaping, and numerical optimization using GPOPS-II. Structural redesigns of tanks, interstages, and thrust frames are incorporated to support cryogenic operations and higher loads. Results indicate a 20-25% increase in specific impulse, 500-800 kg gain in payload capacity, and reduced propellant toxicity. Overall, the SC160 upgrade enhances mission efficiency, payload capability, and environmental sustainability, strengthening GSLV LVM3's role in future commercial, strategic, and interplanetary missions. Seller Inventory # 9786209129315
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Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Titel. Neuware -The GSLV LVM3, India's most powerful launch vehicle, is designed to deliver heavy payloads into Geostationary Transfer Orbit (GTO) and beyond. This project focuses on optimizing its second stage by replacing the current L110 hypergolic stage with the advanced SC160 semi-cryogenic stage, powered by ISROsen and liquid oxygen (LOX). The SC160 offers higher thrust, improved specific impulse, and eco-friendly operation. The study includes theoretical analysis of powered ascent, drag and gravity losses, gravity-turn trajectory shaping, and numerical optimization using GPOPS-II. Structural redesigns of tanks, interstages, and thrust frames are incorporated to support cryogenic operations and higher loads. Results indicate a 20-25% increase in specific impulse, 500-800 kg gain in payload capacity, and reduced propellant toxicity. Overall, the SC160 upgrade enhances mission efficiency, payload capability, and environmental sustainability, strengthening GSLV LVM3's role in future commercial, strategic, and interplanetary missions.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 80 pp. Englisch. Seller Inventory # 9786209129315