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Web-based toxic gas dispersion model for Shuttle launch operations

机译:基于Web的航天飞机下水运行有毒气体扩散模型

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摘要

During the launch of the Space Shuttle vehicle, the burning of liquid hydrogen fuel with liquid oxygen at extreme high temperatures inside the three space shuttle main engines, and the burning of the solid propellant mixture of ammonium perchlorate oxidizer, aluminum fuel, iron oxide catalyst, polymer binder, and epoxy curing agent in the two solid rocket boosters result in the formation of a large cloud of hot, buoyant toxic exhaust gases near the ground level which subsequently rises and entrains into ambient air until the temperature and density of the cloud reaches an approximate equilibrium with ambient conditions. In this paper, toxic gas dispersion for various gases are simulated over the web for varying environmental conditions which is provided by rawinsonde data. The model simulates chemical concentration at ground level up to 10 miles (1 KM grids) in downrange up to an hour after launch. The ambient concentration of the gas dispersion and the deposition of toxic particles are used as inputs for a human health risk assessment model. The advantage of the present model is the accessibility and dissemination of model results to other NASA centers over the web. The model can be remotely operated and various scenarios can be analyzed.
机译:在航天飞机的发射过程中,三个航天飞机主机内部在极高的温度下燃烧液态氢燃料和液态氧,并燃烧高氯酸铵氧化剂,铝燃料,氧化铁催化剂的固体推进剂混合物,两个固体火箭助推器中的聚合物粘合剂和环氧固化剂会在地面附近形成大量热的,有浮力的有毒废气云,随后会上升并夹带到环境空气中,直到云的温度和密度达到与环境条件近似平衡。在本文中,通过Rawinsonde数据提供的各种环境条件,通过网络模拟了各种气体的有毒气体扩散。该模型在发射后长达一个小时的降射范围内模拟了高达10英里(1 KM网格)的地面化学浓度。气体扩散的环境浓度和有毒颗粒的沉积物被用作人类健康风险评估模型的输入。本模型的优点是可以通过网络将模型结果访问和分发到其他NASA中心。该模型可以远程操作,并且可以分析各种情况。

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