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Determination of the Ovality of Crude Oil Storage Tanks using Least Squares

机译:最小二乘法测定原油储罐的椭圆形

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In the processing of field measurements, the observations are adjusted using the least squares principle which gives unbiased estimate of the parameter sought together with their accuracies. In this paper, the use of the Least Squares model in the determination of the tank radius, centre point coordinates and ovality are discussed. The circular cross section of the crude oil storage tanks was divided into sixteen monitoring stations at equal intervals around the tank and at an elevation of 2m from the tank base. Total station instrument was then used to carry out angular and linear measurements by method of multiple intersection to reflectors held on the studs. The field measurements were post processed and adjustment of observation carried out by Least Squares adjustment method. The adjusted coordinates together with the computed radius were then used to determine tanks modality. All data processing and adjustment were carried out with the aid of MATLAB Software for the 2003, 2004 and 2008 measurement epochs. The results of the study revealed an expansion of the tank shell between 2004 and 2008 measurement epoch. The radius of the tank was computed to be 38.187m in 2003 and 2004 and 38.205m in 2008 respectively.
机译:在处理场测量的处理中,使用最小二乘原理调整观察,这给出了与其精度一起寻找的参数的无偏见估计。在本文中,讨论了在确定罐半径,中心点坐标和椭圆形的确定时使用最小二乘模型。原油储罐的圆形横截面分为16个监测站,在罐周围的平等间隔,距离罐底座2米的升高。然后使用总站仪器通过与螺柱上的反射器的多个交叉点进行角度和线性测量。通过最小二乘调整方法进行处理和调整观察的现场测量。然后使用调整后的坐标与计算的半径一起用于确定罐式模态。借助于2003,2004和2008年测量时期的MATLAB软件进行所有数据处理和调整。该研究的结果揭示了2004年至2008年在2004年和2008年测量时期的坦克壳的膨胀。坦克的半径分别计算为2003年和2004年的38.187亿和2008年38.205米。

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