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Concept development stage of hyper sensitivity dynamic airflow sensor in low velocity region

机译:低速区域高灵敏度动态气流传感器的概念发展阶段

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Automated reaction from the system is crucial in fulfilling the technology gap integrated in the intelligent control system. Current technology either by vane meter or hot wire concept shown higher accuracy in measuring the airflow changes and movement. In contrary, the development only focus on static motion where the sensor is placed in static position and measures the changes of the airflow surroundings. Hence, this research aims is to develop preliminary design for the hyper sensitivity of the macrofluidic airflow control with the capability in measuring the airflow changes in dynamic motion. Critical consideration has been finalized in stating the crucial factor that are required to achieve the objective for this research. The consideration of the new design should cover few parameters such as the deformation which covers speed range from 0 km/h to 110 km/h indicates higher sensitivity of airflow model and 360° of the upcoming airflow coverage. The opportunity in integrating the shape memory alloy material will able to cover the huge range of speed and consideration of different shape will be implemented to enhance the performance of the dynamic airflow model sensor.
机译:从系统自动化反应是在履行技术间隙集成在智能控制系统的关键。通过叶片米或热丝概念目前的技术在测量气流的变化和移动显示更高的精度。在相反,开发只着眼于其中传感器被放置在静止位置和措施的气流周围环境的变化静态运动。因此,本研究的目的是开发初步设计用于与测量动态运动的气流的变化的能力的宏流控气流控制的超敏感性。关键的考虑因素已指出需要达到的目的进行这项研究的关键因素已经敲定。新设计的考虑应包括一些参数,例如,其覆盖从0公里/小时110公里速度范围的变形/ h表示气流模型的更高的灵敏度和即将到来的气流覆盖360°。在形状记忆合金材料集成将能够覆盖速度和考虑不同的形状的巨大范围的机会将被实现为增强动态气流模型传感器的性能。

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