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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Improved Discharge Measurement Using the Pressure-Time Method in a Hydropower Plant Curved Penstock
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Improved Discharge Measurement Using the Pressure-Time Method in a Hydropower Plant Curved Penstock

机译:利用压力时间法改进水电站弯管压力机的流量测量

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One of the basic flow rate measurement methods applied in hydropower plants and recommended by the International Standard IEC 60041-1999 and American National Standard ASME PTC 18-2002 is the pressure-time method, generally known as Gibson method. The method consists in determining the flow rate (discharge) by integration of the recorded time course of pressure difference variations between two cross sections of the hydropower plant penstock. The accuracy of measurement depends on numerous factors and, according to the International Standard, generally is confined within the range 1.5-2.3%. Following the classical approach, the pressure-time method applicability is limited to straight cylindrical pipelines with constant diameters. However, the International Standard does not exclude application of this method to more complex geometries, i.e., curved pipeline (with elbows). It is obvious that a curved pipeline causes deformation of the uniform velocity field in pipeline cross sections, which subsequently causes aggravation of the accuracy of the pressure-time method flow rate measurement results. The influence of a curved penstock application on flow rate measurements by means of the considered method is discussed in this paper. The special calculation procedure for the problem solution has been developed. The procedure is based on the fluent computational fluid dynamic solver. Computations have been carried out in order to find the so-called equivalent value of the geometric pipe factor F required when using the pressure-time method. An example of application of this method to a complex geometry (two elbows in a penstock) is presented. The systematic uncertainty caused by neglecting the effect of the elbows on velocity field deformation has been estimated.
机译:压力时间法(通常称为吉布森法)是一种用于水力发电站的基本流量测量方法,国际标准IEC 60041-1999和美国国家标准ASME PTC 18-2002推荐使用这种方法。该方法在于通过对水力发电厂压力管道的两个横截面之间的压力差变化的记录的时间进程进行积分来确定流量(流量)。测量的精度取决于许多因素,根据国际标准,通常限制在1.5-2.3%的范围内。遵循经典方法,压力时间方法的适用性仅限于直径恒定的直圆柱管道。但是,国际标准不排除将此方法应用于更复杂的几何形状,即弯曲管道(带有弯头)。显然,弯曲的管道会引起管道横截面中的均匀速度场变形,从而继而导致压力时间法流量测量结果的准确性提高。本文讨论了弯管应用对通过所考虑的方法进行的流量测量的影响。已经开发出用于问题解决的特殊计算程序。该程序基于流利的计算流体动力学求解器。为了找到在使用压力时间法时所需的几何管道系数F的所谓等效值,已经进行了计算。给出了将该方法应用于复杂几何形状(压力管中的两个弯头)的示例。估计了由于忽略弯头对速度场变形的影响而导致的系统不确定性。

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