Ligęza Paweł
Strata Mechanics Research Institute Polish Academy of Sciences / Reymonta 27, 30-59 Kraków, Poland.
Sensors (Basel). 2008 Oct 28;8(10):6747-6760. doi: 10.3390/s8106747.
Hot-wire anemometric measurements of non-isothermal flows require the use of thermal compensation or correction circuitry. One possible solution is a two-state hot-wire anemometer that uses the cyclically changing heating level of a single sensor. The area in which flow velocity and fluid temperature can be measured is limited by the dimensions of the sensor's active element. The system is designed to measure flows characterized by high velocity and temperature gradients, although its transmission bandwidth is very limited. In this study, we propose a method to optimize the two-state hot-wire anemometer transmission bandwidth. The method is based on the use of a specialized constanttemperature system together with variable dynamic parameters. It is also based on a suitable measurement cycle paradigm. Analysis of the method was undertaken using model testing. Our results reveal a possible significant broadening of the two-state hot-wire anemometer's transmission bandwidth.
对非等温流动进行热线风速测量需要使用热补偿或校正电路。一种可能的解决方案是双态热线风速仪,它使用单个传感器周期性变化的加热水平。可测量流速和流体温度的区域受传感器有源元件尺寸的限制。该系统设计用于测量具有高速和温度梯度特征的流动,尽管其传输带宽非常有限。在本研究中,我们提出了一种优化双态热线风速仪传输带宽的方法。该方法基于使用专门的恒温系统以及可变动态参数。它还基于合适的测量周期范式。使用模型测试对该方法进行了分析。我们的结果表明双态热线风速仪的传输带宽可能会显著拓宽。