August 15, 2026 04:44 am (IST)
Follow us:
facebook-white sharing button
twitter-white sharing button
instagram-white sharing button
youtube-white sharing button
Ajit Doval breaks silence on Operation Sindoor in Discovery’s explosive new docuseries | Rahul Gandhi's 'mock hug' taunt sparks row; Centre stresses 'mutual respect' with Italy | Delhi on high alert: Bomb threat to High Court, airport and multiple locations ahead of I-Day | ‘Who are they to interfere?’: CJI Surya Kant slams Bar Council of India over NALSAR students’ enrolment row | 'Shows how low Congress has sunk': BJP slams Rahul Gandhi over Modi foreign policy jibe | From guns to glamour: Former women Maoists walk the ramp in Chhattisgarh | Netaji row: Suvendu Adhikari govt strips BJP MP Anant Maharaj of state honour | Sukhbir Badal attacked by Nihang Sikh with kirpan at Maharashtra gurdwara; assailant detained | ‘If you cannot do it, we will pass an order’: Supreme Court’s final warning to Centre on food labels | ‘Time to move on’: Bombay HC sends strong message in Vijay Mallya-bank dispute

ISRO scientists test India's most powerful Cryogenic Engine

| | Jul 21, 2015, at 03:16 am
New Delhi, July 20 (IBNS): India's first indigenously designed and developed High Thrust cryogenic rocket engine generating a nominal thrust of 19 tonnes has been successfully endurance hot tested for a duration of 800 seconds at ISRO Propulsion Complex, Mah

This duration is approximately 25% more than the engine burn duration in flight.

The engine will be used for powering the Cryogenic stage (C25), the upper stage of the next generation GSLV Mk-III launch vehicle of ISRO, capable of launching four tonne class satellites.

This cryogenic engine of C25 Stage operates on Gas Generator Cycle using extremely low temperature propellants – Liquid Hydrogen (LH2) at 20 Kelvin (-253 deg C) and Liquid Oxygen (LOX) at 80K (-193deg C). The various subsystems of the engine are – regeneratively cooled Thrust Chamber, Gas Generator, LOX and LH2 high speed turbopump systems, flow control components, close loop mixture ratio control system, Pyrogen igniters, fluid systems, etc.

The turbopump system rotates at a speed of 36,000 rpm with a power level of 2 MW.

This high performance cryogenic engine was conceived, configured and realised by Liquid Propulsion Systems Centre (LPSC), the lead centre of Indian Space Research Organisation (ISRO) responsible for developing liquid propulsion systems for Indian Space Programme.

The Engine design was totally in-house effort with experts from different fields like fluid dynamics, combustion, thermal, structural, metallurgy, fabrication, rotor dynamics, control components, etc., working together.

The fabrication of major subsystems of the engine was carried out through Indian Industries. Assembly and Integration of the engine and Testing were carried out in ISRO Propulsion Complex (IPRC), a unit of ISRO.

LPSC has also developed a cryogenic upper stage of 12.5 tonne propellant loading and successfully flight tested it in GSLV Mk-II vehicle on January 5, 2014.  Compared to this stage, the C25 stage has a higher propellant loading (27 tonnes versus 12.5 tonnes) and higher engine thrust (19 tonne versus 7.5 tonne).

The recent successful endurance hot test of the first high thrust cryogenic engine is the tenth test in a series of tests planned and executed as part of the development of the engine employing complex cryogenic technology.

The performance of the engine closely matches with the pre-test prediction made using the in-house developed cryogenic engine mathematical modelling and simulation software.

Prior to engine realisation, a series of subsystem level tests were carried out to independently evaluate the design of major subsystems like the turbopumps, thrust chamber, gas generator, flow control components, etc. Based on the confidence gained, the integrated engine testing was initiated.

As part of the C25 Stage development, further tests are planned in High Altitude conditions and in Stage configuration, prior to the flight stage realisation.

Mastering this complex, high performance cryogenic propulsion technology will go a long way in building self reliance for the Indian Space Programme.

Support Our Journalism

We cannot do without you.. your contribution supports unbiased journalism

IBNS is not driven by any ism- not wokeism, not racism, not skewed secularism, not hyper right-wing or left liberal ideals, nor by any hardline religious beliefs or hyper nationalism. We want to serve you good old objective news, as they are. We do not judge or preach. We let people decide for themselves. We only try to present factual and well-sourced news.

Support objective journalism for a small contribution.