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The computational fluid dynamics analysis and optimisation of process vessels used in the manufacture of military propellants and high explosives

机译:用于军事推进剂和高炸药制造的过程容器的计算流体动力学分析和优化

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摘要

This research focuses on the computational fluid dynamics modelling and simulation of the existing reactors and mixing tanks employed by the Australian Defence Industries to manufacture military propellants for gun projectiles and small rockets; high explosives for naval gun projectiles and aerial bombs. The main objective of this research is to gain a thorough understanding of these process vessels via research and to provide recommendations to improve their performance. Reactors and mixing tanks were chosen as the test unit operations because although they contribute significantly to the manufacturing process, reactors have frequently been poorly understood or in the case of mixing tanks, taken for granted. Consequently, there is a lack of comprehensive knowledge to support successful operations of these process vessels. In addition, this research also recommends using photocatalysis technology to destroy liquid wastes produced from such manufacturing activities.For each product, a full characterisation was provided that included detailed theoretical analyses that presents a unique insight into the hydrodynamics occurring in these process vessels. The credibility of theoretical predictions was demonstrated via qualitative and quantitative validation using particle image velocimetry. Results from characterisation showed that the reactors and mixing tanks employed in the manufacture of military propellants, high explosives or aerial bombs were operating at sub-optimum conditions. To tackle this shortcoming, four ideal geometrical configurations that promised optimum performance were proposed for each of the test studies. These included a designer reactor for the manufacture of military propellants and effective mixing tanks for suspending high explosive particles, blending different high explosives and for manufacturing aerial bombs. The correct implementation of these recommendations will provide an optimum operation that achieves high product throughput and concurrently reduces reject rate.Research was also conducted to formulate a set of multipurpose design guidelines for a suspension mixing tank. The design template created from the results will provide valuable information to researchers across industries in their quest to optimise any unit suspension mixing tank operated on the principle of mechanical agitation. Finally, modelling of reactive species was conducted on a laboratory-scale photoreactor, involving physical experiments to destroy toxic effluent aqueous phase.
机译:这项研究的重点是对澳大利亚国防工业公司用于制造枪炮弹和小型火箭的军事推进剂的现有反应堆和混合罐的计算流体动力学建模和仿真;海军炮弹和空中炸弹的高级炸药。这项研究的主要目的是通过研究获得对这些过程容器的透彻了解,并提供改进其性能的建议。之所以选择反应器和混合罐作为测试单元的运行,是因为尽管它们对制造过程做出了重大贡献,但对反应堆的了解却很少,或者对于混合罐来说,这是理所当然的。因此,缺乏全面的知识来支持这些过程容器的成功运行。此外,这项研究还建议使用光催化技术来破坏此类制造活动产生的液体废物。对于每种产品,都提供了完整的特性描述,包括详细的理论分析,从而对这些工艺容器中发生的流体动力学提供了独特的见解。通过使用粒子图像测速仪进行定性和定量验证,证明了理论预测的可靠性。表征结果表明,用于制造军事推进剂,高炸药或炸弹的反应堆和混合罐在次最佳条件下运行。为了解决此缺点,针对每个测试研究提出了四个承诺最佳性能的理想几何构型。其中包括设计用于制造军用推进剂的反应堆,以及用于悬浮高炸药颗粒,混合不同的高炸药和制造空中炸弹的有效混合罐。这些建议的正确实施将提供最佳的操作,以实现高产品吞吐量并同时降低废品率。还进行了研究,以制定一套悬浮搅拌罐的多用途设计准则。根据结果​​创建的设计模板将为各行各业的研究人员提供有价值的信息,以寻求优化根据机械搅拌原理操作的任何单元悬浮混合罐。最后,在实验室规模的光反应器上进行反应物种的建模,包括物理实验以破坏有毒废水水相。

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