REG NASA-LLIS-0591-1998 Lessons Learned Pyrovalve Blow-by May Interact Violently With Propellant (1993).pdf
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1、Lessons Learned Entry: 0591Lesson Info:a71 Lesson Number: 0591a71 Lesson Date: 1998-05-14a71 Submitting Organization: JPLa71 Submitted by: C. Guernsey/D. OberhettingerSubject: Pyrovalve Blow-by May Interact Violently With Propellant (1993) Abstract: Two satellites with different propulsion system de
2、signs were lost in 1993 and 1994 when blow-by from pyrovalves interacted violently with propellants. To prevent detonation of fuel due to the compression of hydrazine and its ignition by pyrovalve blow-by, use non-pyrotechnic valves or a zero blow-by pyrovalve design, or fire a pyrovalve only when t
3、here is a vacuum downstream of the valve.Description of Driving Event: Two satellites with different propulsion system designs were lost in 1993 and 1994. Limited telemetry was received on the incidents. Subsequent failure investigation focused on possible propulsion feed system design flaws. In bot
4、h cases, pyrovalves were used to isolate the hydrazine supply until the satellite was separated from the launch vehicle.Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-refer to D descriptionD In accordance with a common design practice for engine fee
5、d systems, two pyrovalves were placed in parallel to provide redundancy. With the hydrazine tank isolated, pressurized fuel was present upstream of the pyrovalves (e.g., Point A), but only a dry nitrogen “pad gas“ at low pressure downstream of the pyrovalves (e.g., Point B). On one spacecraft it was
6、 unclear what the gas composition was and whether it was totally vented through the thruster prior to the priming event.During priming of the hydrazine system, the primary pyrovalve was fired to charge propellant lines leading to the engine. When the propellant reached the thruster valves and stoppe
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