Overview
The Glory satellite was a planned NASA satellite mission that would have collected data on the chemical, micro-physical and optical properties—and the spatial and temporal distributions—of sulfate and other aerosols, and would have collected solar irradiance data for the long-term climate record. The science focus areas served by Glory included: atmospheric composition; carbon cycle, ecosystems, and biogeochemistry; climate variability and change; and water and energy cycles. The US$424 million satellite was lost on 4 March 2011, when its Taurus XL carrier rocket malfunctioned. A subsequent investigation revealed that the fairing system failed to open fully, causing the satellite to reenter the atmosphere at which point it likely broke up and burned. NASA investigators later determined the cause for the launch failure to be faulty materials provided by aluminum manufacturer Sapa Profiles.
Spacecraft
The Glory spacecraft bus uses Orbital Science Corporation's LEOStar bus design, with twin articulated deployable solar panels, 3-axis stabilization, and X-band and S-band RF communications capabilities. The structure consists of an octagonal aluminium space frame and a hydrazine propulsion module containing enough fuel for at least 36 months of on-orbit service. The spacecraft bus also provides payload power; command, telemetry, and science data interfaces, including onboard storage of data; and an attitude control subsystem to support instrument pointing requirements.
Launch
The launch from Vandenberg Air Force Base, near Lompoc, California, aboard a Taurus XL rocket was originally planned for 23 February 2011. It was postponed due to a malfunction in ground support equipment. The next liftoff attempt was 4 March 2011. The Taurus rocket also carried three small CubeSat satellites built by university students in Montana, Colorado and Kentucky, the NASA ELaNa I manifest.
The launch took place on 4 March 2011, at 02:09:43 Pacific Standard Time (10:09:43 UTC) from Vandenberg Air Force Base. The Taurus XL rocket's first three stages functioned as planned, but the nose cone (also known as the payload fairing) failed to separate 2 minutes 58 seconds after the launch. The nose cone covers and protects the satellite during launch and ascent, and is designed to separate and fall away shortly after the launch. Due to the failure of the nose cone to separate, the rocket remained too heavy to reach the correct orbit.
From Wikipedia (CC BY-SA 4.0).