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Development of 'lick and stick' passive wireless temperature sensor for harsh environment.

机译:开发了适用于恶劣环境的“舔棒”无源无线温度传感器。

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摘要

Wireless passive temperature sensors have been receiving increasing attention due to the ever-growing need of higher energy efficient and precise monitoring of temperatures in high temperature energy conversion systems such as gas turbines and coal-based power plants. Unfortunately, the harsh environment such as high temperature and corrosive atmosphere present in these systems has significantly limited the reliability and increased the cost of current solutions. Therefore, this research project presents the concept and design of a low cost, passive, and wireless temperature sensor that can withstand high temperature and harsh environment. The temperature sensor was designed following the principle of metamaterials by utilizing Closed Ring Resonators (CRR) in a dielectric matrix. The proposed wireless, passive temperature sensor behaves like an LC circuit, which has a temperature dependent resonance frequency. A full wave electromagnetic solver Ansys Ansoft HFSS was used to validate the model and to evaluate the effect of different geometry and combination of SRR structures on the resonance frequency and sensitivity of the proposed sensor. Two different fabrication methods - compression method using a die-punch assembly and 3D printing using binder-jetting techniques were used to fabricate the sensors. To simplify the sensor design, commercially available metal washers were used as CRR structures. Barium Titanate (BTO), and Alumina (Al2 O3) were used as dielectric materials. Material characterization was done using Scanning Electron Microscopy (SEM) and X-ray Diffraction (XRD), and preliminary free space testing at room temperature using horn antennas and Gaussian beam antennas very promising results for using this novel sensing system for harsh environment application.
机译:由于对更高能量效率和对诸如燃气轮机和煤基发电厂之类的高温能量转换系统中的温度进行精确监控的不断增长的需求,无线无源温度传感器已受到越来越多的关注。不幸的是,这些系统中存在的苛刻环境(例如高温和腐蚀性气氛)大大限制了可靠性,并增加了当前解决方案的成本。因此,本研究项目提出了一种可以承受高温和恶劣环境的低成本,无源无线无线温度传感器的概念和设计。温度传感器是根据超材料的原理设计的,它在电介质基体中利用了闭环谐振器(CRR)。提出的无线无源温度传感器的行为类似于LC电路,它具有与温度有关的谐振频率。使用全波电磁求解器Ansys Ansoft HFSS验证模型,并评估不同几何形状和SRR结构的组合对所提出传感器的谐振频率和灵敏度的影响。两种不同的制造方法-使用冲模组装的压缩方法和使用粘合剂喷射技术的3D打印来制造传感器。为了简化传感器设计,将市售的金属垫圈用作CRR结构。钛酸钡(BTO)和氧化铝(Al2 O3)被用作介电材料。使用扫描电子显微镜(SEM)和X射线衍射(XRD)进行材料表征,并使用喇叭天线和高斯波束天线在室温下进行初步的自由空间测试,对于将这种新颖的传感系统用于恶劣的环境应用而言,非常有希望的结果。

著录项

  • 作者

    Karim, Hasanul.;

  • 作者单位

    The University of Texas at El Paso.;

  • 授予单位 The University of Texas at El Paso.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2013
  • 页码 87 p.
  • 总页数 87
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 语言学;
  • 关键词

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