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Flow averaging tube geometry improvement for K-factor stability increase

机译:流平均管几何改进增殖系数稳定增加

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Fluid flow around two-profile averaging differential pressure sensor was investigated in this paper. Research concentrated particularly on fluid movement direction and velocity over the investigated flow sensor. Analysis was conducted experimentally in low velocity wind tunnel. Because of large number of measuring points placed very close to each other, it was decided that velocity profile measurement will be performed by means of fully automated test stand. Due to a recirculation of the stream in the vicinity of the probe tested in the wind tunnel, an original two-direction probe was used. A linear module with a stepper motor formed an integral part of the measurement system. The location of the measuring probe, the possibility of adjusting stream mean velocities and data acquisition was undertaken by means of a dedicated program. The above mentioned investigation method helped to improve the metrological properties of the flowmeter applying non symmetrical probe cross-section forced air stream to be redirected in the desired direction. This modification significantly increased K-factor value and stability of air flow through the contraction of the flowmeter.
机译:流体绕流了两个配置平均差压传感器进行了研究这篇论文。流体运动方向和速度研究了流量传感器。在低速风洞实验。因为大量的计量点把彼此非常接近,这是决定流速剖面测量通过完全自动化执行测试站。由于循环流的附近的探针在风洞测试,一个原始的两个方向探测器使用。线性模块和步进电机组成测量系统的组成部分。测量探头的位置,这种可能性调整流平均速度和数据是收购的手段专用程序。调查方法有助于改善流量计的计量属性应用非对称截面调查迫使空气流重定向在所需的方向。这一修改显著增加增殖系数值和稳定的空气流过流量计的收缩。

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