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RUSSIAN METEOROLOGICAL AND GEOPHYSICAL ROCKETS OF NEW GENERATION

机译:俄罗斯新一代气象地球物理火箭

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To study the processes in the middle and upper atmosphere, ionosphere and near-Earth space, as well as to monitor the geophysical environment in Russian Federal Service for Hydrology and Environmental Monitoring (ROSHYDROMET) the development of new generation of meteorological and geophysical rockets has been completed. The modern geophysical research rocket system MR-30 was created in Research and Production Association RPA "Typhoon". The basis of the complex MR-30 is a new geophysical sounding rocket MN-300 with solid propellant. Rocket launch takes place at an angle of 70 ° to 90 ° from the launcher, which is a farm with a guide rail type required for imparting initial rotation rocket. The rocket is spin stabilized with a spin rate between 5 and 7 Hz. Launch weight is 1564 kg, and the mass of the payload of 50 to 150 kg. MR-300 is capable of lifting up to 300 km, while the area of dispersion points for booster falling is an ellipse with parameters 37 × 60 km. The payload of the rocket MN-300 consists of two sections: a sealed, located below the instrument compartment, and not sealed, under the fairing. Block of scientific equipment is formed on the platform in a modular layout. This makes it possible to solve a wide range of tasks and conduct research and testing technologies using a unique environment of space, as well as to conduct technological experiments testing and research systems and spacecraft equipment. New Russian rocket system MERA (MEteorological Rocket for Atmospheric Research ) belongs to so called "dart" technique that provide lifting of small scientific payload up to altitude 100 km and descending with parachute. It was developed at Central Aerological Observatory jointly with State Unitary Enterprise Instrument Design Bureau. The booster provides a very rapid acceleration to about Mach 5. After the burning phase of the buster the dart is separated and continues ballistic flight for about 2 minutes. The dart carries the instrument pay-load + parachute and an ejection charge, but does not include additional propellant. Time to apogee is 151 seconds. Launch weight is 67 kg. Payload is 54 mm dia. x 400 mm long with max payload weight 2-3 kg. Initial acceleration (vertical): 200g's (up). GPS/GLONASS position system will be used for tracking the payload. 30 channel telemetry system will provide data transition. Temperature, pressure, wind, electron density will be measured during the ascent (from 60 km) and descent lags as a basic atmospheric parameters. Portable rocket system MERA can be widely used in the frame of international collaboration. The main technical specifications of MERA and MN-300 are described and results of test flights are presented.
机译:为了研究中高层大气,电离层和近地空间的过程,以及在俄罗斯联邦水文和环境监测局(ROSHYDROMET)监测地球物理环境,已经开发了新一代的气象和地球物理火箭完全的。现代地球物理研究火箭系统MR-30是在研究与生产协会RPA“台风”中创建的。复杂的MR-30的基础是带有固体推进剂的新型地球物理探空火箭MN-300。火箭发射与发射器成70°到90°的角度,发射器是具有赋予初始旋转火箭所需的导轨类型的农场。火箭以5到7 Hz的自旋速度自旋稳定。发射重量为1564千克,有效载荷质量为50到150千克。 MR-300的最大起升能力为300 km,而助推器下降的分散点面积为椭圆形,参数为37×60 km。火箭MN-300的有效载荷由两部分组成:位于仪表舱下方的密封盖,在整流罩下方未密封。科学设备模块以模块化布局的形式形成在平台上。这使得有可能解决各种任务,并利用独特的太空环境进行研究和测试技术,以及进行技术实验测试和研究系统以及航天器设备。俄罗斯的新型火箭系统MERA(大气研究气象火箭)属于所谓的“飞镖”技术,该技术可将小型科学有效载荷提升到100公里的高度,并随降落伞下降。它是由中央航空天文台与国家统一企业仪器设计局共同开发的。助推器可以非常迅速地加速至约5马赫。在克星的燃烧阶段之后,飞镖被分离并继续弹道飞行约2分钟。飞镖携带仪器有效载荷+降落伞和弹射费用,但不包括其他推进剂。到达顶点的时间是151秒。发射重量为67公斤。有效负载直径为54毫米。 x 400毫米长,最大有效负载重量为2-3千克。初始加速度(垂直):200克(向上)。 GPS / GLONASS定位系统将用于跟踪有效载荷。 30通道遥测系统将提供数据转换。在上升过程中(从60 km起)将测量温度,压力,风,电子密度,并且将下降滞后作为基本大气参数。便携式火箭系统MERA可以广泛用于国际合作的框架中。描述了MERA和MN-300的主要技术规格,并给出了试飞结果。

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