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首页> 外文期刊>Chemical engineering journal >Investigation of the flow field in a three-dimensional Confined Impinging Jets Reactor by means of microPIV and DNS
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Investigation of the flow field in a three-dimensional Confined Impinging Jets Reactor by means of microPIV and DNS

机译:利用microPIV和DNS研究三维密闭射流反应器中的流场

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摘要

Micro-mixer devices, such as the Confined Impinging Jets Reactor (CIJR) are currently under study, in particular for precipitation processes of micro- and nano-particles, employed in a variety of applications that include pharmaceuticals, cosmetics, dyes and pesticides. In this work, with the purpose of gaining a better understanding of the main mixing mechanisms occurring in a CIJR, the flow field was studied at four inlet flow rates ranging from Re = 62 to Re = 600. These conditions correspond to regimes with incipient turbulence in the chamber. Micro-Particle Image Velocimetry (microPIV) experiments and Direct Numerical Simulations (DNS) were performed and compared. MicroPIV is an innovative experimental technique that allows measurement of the instantaneous velocity fields in microfluidic devices. The coupled numerical-experimental approach was found to be essential in understanding and explaining the flow behaviour and the development of turbulence, in particular with respect to the important effects of the inlet boundary conditions. Oscillations present in the inlet flow of the device are in fact primarily responsible for the chaotic and turbulent effects in the reactor. These results provide insights that are important in the development of appropriate computational models for this type of micro-reactor or mixers.
机译:目前正在研究诸如密闭喷射反应器(CIJR)之类的微混合器设备,特别是用于微粒和纳米颗粒的沉淀过程的微混合器设备,其用于包括药物,化妆品,染料和农药在内的各种应用中。在这项工作中,为了更好地了解CIJR中发生的主要混合机理,研究了从Re = 62到Re = 600的四个入口流速下的流场。这些条件对应于初始湍流状态在房间里。进行了微颗粒图像测速(microPIV)实验和直接数值模拟(DNS)实验并进行了比较。 MicroPIV是一项创新的实验技术,可以测量微流体设备中的瞬时速度场。人们发现,数值模拟的耦合方法对于理解和解释流动特性和湍流的发展至关重要,特别是在入口边界条件的重要影响方面。实际上,装置入口流中存在的振荡是造成反应器中混乱和湍流的主要原因。这些结果提供了对于开发这类微反应器或混合器的适当计算模型至关重要的见解。

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