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Air velocity and flow measurement using a Pitot tube

机译:使用皮托管进行风速和流量测量

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The accurate measurement of both air velocity and volumetric airflow can be accomplished using a Pitot tube, a differential pressure transducer, and a computer system which includes the necessary hardware and software to convert raw transducer signals into the proper engineering units. The incorporation of sensors to measure the air temperature, barometric pressure, and relative humidity can further increase the accuracy of the velocity and flow measurements. The Pitot tube measures air velocity directly by means of a pressure transducer which generates an electrical al which is proportional to the difference between the pressure generated by the total pressure and the still air (:static pressure). The volumetric flow is then calculated by measuring the average velocity of an air stream passing ugh a passage of a known diameter. When measuring volumetric flow, the 'passage of a known diameter' must be designed to reduce air turbulence as the air mass flows over the Pitot tube. Also, the placement of the pitot tube in the passage will influence how accurately the measured flow tracks the actual flow through the passage. Calibrating the measurement system in a wind tunnel can further increase the accuracy of the velocity and the flow measurements. This objective of this paper is to provide the field engineer with single, concise source of information on flow measurement using of Pitot tube. # 1998 Elsevier Science Ltd. All rights reserved.
机译:可以使用皮托管,压差传感器和计算机系统来完成对风速和风量的精确测量,该计算机系统包括必要的硬件和软件,可将原始的传感器信号转换为适当的工程单位。结合使用传感器来测量空气温度,大气压力和相对湿度可以进一步提高速度和流量测量的准确性。皮托管直接通过压力传感器测量空气速度,该压力传感器产生与总压力和静止空气所产生的压力之差(静态压力)成比例的电信号。然后通过测量通过已知直径通道的气流的平均速度来计算体积流量。在测量体积流量时,必须设计“已知直径的通道”以减少空气流在皮托管上流过的湍流。同样,皮托管在通道中的放置将影响所测量的流量跟踪通过通道的实际流量的精确度。在风洞中校准测量系统可以进一步提高速度和流量测量的准确性。本文的目的是为现场工程师提供有关使用皮托管的流量测量的唯一简明信息源。 #1998 Elsevier ScienceLtd。保留所有权利。

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