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首页> 外文期刊>Drying technology: An International Journal >A Modeling Investigation of Suppressant Distribution from a Prototype Solid-Propellant Gas-Generator Suppression System into a Simulated Aircraft Cargo Bay
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A Modeling Investigation of Suppressant Distribution from a Prototype Solid-Propellant Gas-Generator Suppression System into a Simulated Aircraft Cargo Bay

机译:从原型固体推进剂气体发生器抑制系统到模拟飞机货舱的抑制剂分布的模型研究

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摘要

One new technology for fire suppressant distribution in total-flooding applications is the solid-propellant gas-generator (SPGG) technology. This article presents experimental and modeling studies of one such prototype system in order to better understand observations in the testing of this system. This particular SPGG system generates fine particles that act to suppress any fire in conjunction with inert gases also generated in the SPGG system. Initial conditions for the simulations are obtained from the available measurements of the prototype system. The modeling provides key information related to the distribution of the particles and their potential effectiveness as a fire suppressant. The primary variable in the SPGG design as identified in the initial measurements, also presented here, was the particle size, with typical particle sizes being measured at 2 and 15 mu m. The key modeling result is that there is a tradeoff between the most uniform distribution of particles and the available surface-to-volume ratio for chemical suppression. Information is also provided regarding the thermal dissipation from the SPGG system.
机译:固体推进剂气体发生器(SPGG)技术是在全驱应用中分配灭火剂的一项新技术。本文介绍了一个这样的原型系统的实验和建模研究,以便更好地了解该系统的测试结果。这种特殊的SPGG系统会生成细颗粒,这些细颗粒与SPGG系统中也会生成的惰性气体一起起到抑制火灾的作用。仿真的初始条件是从原型系统的可用测量中获得的。该模型提供了有关颗粒分布及其作为灭火剂的潜在有效性的关键信息。在初始测量中确定的SPGG设计中的主要变量(此处也介绍了)是粒径,典型粒径是在2和15微米处测量的。关键的建模结果是,在颗粒的最均匀分布与化学抑制可用的表面体积比之间需要权衡。还提供有关SPGG系统散热的信息。

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