首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2009 >Fuzzy Logic Approach for Controlling Temperature in Electroosmotic Flow Fields
【24h】

Fuzzy Logic Approach for Controlling Temperature in Electroosmotic Flow Fields

机译:电渗流场温度控制的模糊逻辑方法

获取原文

摘要

By entering technology to the area of micro and nano scales, the design and fabrication of miniaturized instruments such as microelectronic devices, MEMS, NEMS and ..., become very desirable. Many of these devices deal with flow field in micro- and nano-channels. By decreasing the dimensions of channels, the influence of surface effects becomes prominent and cannot be ignored. One of the most charismatic categories of these phenomena is elecrokinetic effect which can result in electroosmotic flow field (EOF) that has many advantages such as being vibration free, being much more compact, having flat-form velocity and etc. These beneficiaries lead to the increasing stimulus of using this type of flow field. Electroosmosis is defined as the motion of ionized liquid relative to the stationary charged surface by an applied electric field. One of the most important disadvantages of EOF is the Joule heating effect, the generation of heat due to the electroosmosis effect. Besides, micro- and nano-channels are usually used as heat sink in miniaturized devices. By considering these facts, it can be concluded that heat characteristics of EOF must be studied carefully in order to manage and control the Joule heating effect for utilizing the cooling characteristics of micro- and nano-channels. Flow field characteristics can be found by solving Navier-Stocks and Energy equations with proper slip boundary conditions. By considering the partial nature of these equations, many conventional model-based control techniques may not be useful. Therefore, one can suggest some non-model based strategies in order to control the properties of flow fields. In the present study, fuzzy logic controllers will be proposed inorder to control the temperature and cooling characteristics of micro- and nano-channel heat sinks.
机译:通过将技术引入微米和纳米级领域,非常需要微型仪器例如微电子器件,MEMS,NEMS和...的设计和制造。这些设备中的许多设备都处理微通道和纳米通道中的流场。通过减小通道的尺寸,表面效应的影响变得突出并且不能忽略。这些现象中最具魅力的类别之一是电动势,它会导致电渗流场(EOF)具有许多优点,例如无振动,紧凑得多,具有平坦的速度等。增加了使用这种流场的刺激。电渗定义为电离液体通过施加的电场相对于固定的带电表面的运动。 EOF的最重要缺点之一是焦耳热效应,由于电渗效应而产生热量。此外,微通道和纳米通道通常用作小型设备中的散热器。通过考虑这些事实,可以得出结论,必须认真研究EOF的热特性,以便利用微通道和纳米通道的冷却特性来管理和控制焦耳热效应。可以通过在适当的滑移边界条件下求解Navier-Stocks和Energy方程来找到流场特征。通过考虑这些方程式的部分性质,许多传统的基于模型的控制技术可能没有用。因此,可以提出一些基于非模型的策略来控制流场的特性。在本研究中,将提出模糊逻辑控制器 为了控制微通道和纳米通道散热器的温度和冷却特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号