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Unexpected High Temperature Chemical Freezing during Slow Isochoric Cooling

机译:在缓慢的等因素冷却期间意外的高温化学冷冻

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An observation is presented regarding the chemical freezing during a slow calorimeter cooling, after the combustion of solid propellants with excess fuel elements into a vacuum. The residual combustion gas within the calorimeter, mainly consisting of CO_2, CO, H_2O, H_2 and N_2, although cooled down to the room temperature, presents a chemical composition that meets almost exactly the value encountered at a very high temperature, namely around 1674±36°K. It appears abnormal that, during the very slow cooling which follows the isochoric combustion, when any chemical freezing seems mostly improbable, such a freezing occurs however. With utmost regularity, the gases refuse completely to follow the equilibrium below this high 1700K limit. The fact is known at much lower temperatures for the isobaric combustion with oxygen in excess, still there are doubts that it had been previously observed for calorimeter products involving the entire water-gas reaction. Numerical simulation of combustion and nozzle expansion processes got a high accuracy level when this process was included in the computational codes. Recent temperature measurements confirm with good accuracy that this freezing temperature is well below the maximal combustion temperature within the calorimeter, but still very high. Detailed investigations are envisaged through the national grant proposal INTECH by a consortium of professional research teams.
机译:在慢热量计冷却过程中,在慢速量计冷却期间阐述了观察,在固体推进剂燃烧到真空中的固体推进剂之后。热量计内的残留燃烧气体,主要由CO_2,CO,H_2O,H_2和N_2组成,尽管冷却到室温,但呈现出几乎恰好在非常高温下遇到的值的化学组合物,即约为1674± 36°k。它看起来异常,在对等燃烧的非常缓慢的冷却过程中,当任何化学冷冻似乎大多是不可能的时,这种冷冻就会发生这种冷冻。以最规律地,气体完全拒绝遵循该高1700K极限的平衡。该事实是已知的,对于多余的氧气燃烧,氧气燃烧的低温温度仍然存在,仍然存在以前观察到涉及整个水 - 气体反应的量热仪产品的疑虑。当该过程中包含在计算代码中时,燃烧和喷嘴扩展过程的数值模拟得到了高精度水平。最近的温度测量以良好的精度确认,这种冷冻温度远低于热量计内的最大燃烧温度,但仍然非常高。通过由专业研究团队的财团的国家拨款提案Intech设想详细的调查。

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