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Dynamic Modeling of Process Technologies for Closed-Loop Water Recovery Systems

机译:闭环水回收系统工艺技术的动态建模

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摘要

Detailed chemical process simulations are a useful tool in designing and optimizing complex systems and architectures for human life support. Dynamic and steady-state models of these systems help contrast the interactions of various operating parameters and hardware designs, which become extremely useful in trade-study analyses. NASA s Exploration Life Support technology development project recently made use of such models to compliment a series of tests on different waste water distillation systems. This paper presents dynamic simulations of chemical process for primary processor technologies including: the Cascade Distillation System (CDS), the Vapor Compression Distillation (VCD) system, the Wiped-Film Rotating Disk (WFRD), and post-distillation water polishing processes such as the Volatiles Removal Assembly (VRA). These dynamic models were developed using the Aspen Custom Modeler (Registered TradeMark) and Aspen Plus(Registered TradeMark) process simulation tools. The results expand upon previous work for water recovery technology models and emphasize dynamic process modeling and results. The paper discusses system design, modeling details, and model results for each technology and presents some comparisons between the model results and available test data. Following these initial comparisons, some general conclusions and forward work are discussed.
机译:详细的化学过程仿真是设计和优化复杂系统和体系结构以支持人类生命的有用工具。这些系统的动态和稳态模型有助于对比各种操作参数和硬件设计之间的相互作用,这在行业研究分析中极为有用。 NASA的探索生命支持技术开发项目最近利用这种模型补充了对不同废水蒸馏系统的一系列测试。本文介绍了主要处理器技术的化学过程的动态模拟,包括:级联蒸馏系统(CDS),蒸汽压缩蒸馏(VCD)系统,薄膜冲洗圆盘(WFRD)以及蒸馏后水抛光工艺,例如挥发物清除组件(VRA)。这些动态模型是使用Aspen Custom Modeler(注册商标)和Aspen Plus(注册商标)过程仿真工具开发的。该结果扩展了先前关于水回收技术模型的工作,并强调了动态过程建模和结果。本文讨论了每种技术的系统设计,建模细节和模型结果,并给出了模型结果与可用测试数据之间的一些比较。在进行这些初步比较之后,讨论了一些一般性的结论和今后的工作。

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