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Numerical modeling and optimization of waterjet-based surface decontamination.

机译:基于水射流的表面净化的数值建模和优化。

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摘要

The mission of this study is to investigate the high-pressure waterjet based surface decontamination. Our specific objective is to develop a practical procedure for selection of process conditions at given constraints and available knowledge. This investigation is expected to improve information processing in the course of material decontamination and assist in the implementation of the waterjet decontamination technology into practice. The development of a realistic procedure for processing of a chaotic and non-accurate information constitutes the main accomplishment of this study.; The research involved acquisition of representative information about removal of brittle, elastic and viscous deposits. As a result an extended database representing jet based decoating has been compiled and feasibility of the damage free decontamination of various surfaces including highly sensitive ones is demonstrated. Artificial Intelligence techniques (Fuzzy Logic, Artificial Neural Networks, Genetic Computing) have been applied for processing of the acquired information and a realistic procedure of such an application has been developed and demonstrated. This procedure enables us to integrate available information about surface in question and existing numerical models. The developed procedure allows a user to incorporate both qualitative (linguistic) and quantitative (crisp) information into a process model and to predict operational conditions for treatment of an unknown surface using a readily detectable single experimental parameter that characterizes a deposit/substrata combination. The suggested technique is shown to perform reliably in the case of incomplete and chaotic information, where the traditional regression based methods fail.; Numerical simulations of the two-phase flow inside a waterjet nozzle are conducted. Numerical solutions of the partial differential equations of the two-phase turbulent jet flow are obtained using FLUENT package. The numerical prediction of jet velocity profiles and the interface between the two phases (water-air) inside a nozzle are in good agreement with experimental data available in the literature. Thus the current problem setup and the results of simulations can be applied to improvement in the nozzle design.; A realistic procedure for the design of the jet based surfaces decontamination developed, as a result of this study, is applied for optimization of the removal of the paint, rust, tar and rubber from the steel surface.
机译:这项研究的任务是研究基于高压水刀的表面去污。我们的特定目标是在给定的限制和可用的知识下,开发一种用于选择工艺条件的实用程序。预期该调查将改善材料净化过程中的信息处理,并有助于将水刀净化技术付诸实践。开发处理混乱和不准确信息的现实程序构成了本研究的主要成就。该研究涉及获取有关去除脆性,弹性和粘性沉积物的代表性信息。结果,已经汇编了代表基于喷射的涂层的扩展数据库,并且证明了包括高敏感表面在内的各种表面的无损伤净化的可行性。人工智能技术(模糊逻辑,人工神经网络,遗传计算)已被用于处理获取的信息,并且已经开发并演示了这种应用的现实过程。此过程使我们能够集成有关问题表面和现有数值模型的可用信息。开发的程序允许用户将定性(语言)和定量(脆性)信息合并到过程模型中,并使用表征沉积物/基质组合的易于检测的单个实验参数来预测处理未知表面的操作条件。所显示的建议技术在信息不完整和混乱的情况下能够可靠地执行,而传统的基于回归的方法则无法使用。进行了喷水嘴内两相流的数值模拟。使用FLUENT软件包获得了两相湍流射流偏微分方程的数值解。喷嘴内部射流速度分布和两相(水-空气)之间的界面的数值预测与文献中的实验数据非常吻合。因此,当前的问题设置和仿真结果可用于改进喷嘴设计。这项研究的结果是,开发出了一种基于喷射的表面去污设计的现实程序,用于优化从钢表面去除油漆,铁锈,焦油和橡胶的过程。

著录项

  • 作者

    Babets, Konstantin E.;

  • 作者单位

    New Jersey Institute of Technology.;

  • 授予单位 New Jersey Institute of Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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