The waterjet nozzle wear effect on jet pump performance

Y. N. Tsvetkov, Ivan Evgen'evich Ivko, V. A. Petrov, Andrey Mihaylovich Oleynik
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Abstract

A finite-elemental model of a jet pump was created. The pump consisted of a case, in which there were eight jets, situated in a circle, symmetrically relative to the circle axis, on the equal distance of each other around the outlet of a pipeline, along which the pulp was pumped. The basic element size of the net in creating the model amounts to 50 mm, whereas the net elements size was diminished in the region of jets. The numerical experiment was carried out in order to evaluate the influence of the jets hydroabrasive wear parameters on the pump output. In conducting the computations, the assumptions were as follows: the liquid columns in the suction and force-feed pipelines were neglected; there was pure water modelled in the suction pipeline instead of the pulp taking into account that the concentration of the sand in the pulp does not exceed 10% by volume. The computations were realized in the stationary formulation of the problem. As basic parameters of the hydroabrasive wear of the jets the following were chosen: the angle of the skew of the jet forward end; a jet shortening – the displacement of the jet forward end center along the jet axis. As a result of the numerical experiment the body of data was obtained. Using the least squares method to process the data, the second order model was created, describing the dependence of the pump output on the jets wear parameters. The analysis of the model showed that the change of the angle of the forward end skew of the jets has a weak influence on the output of the pump, whereas the shortening of the jets by each millimeter causes the decrease of 1% to the nominal value of the pump output.
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水刀喷嘴磨损对喷射泵性能的影响
建立了喷射泵的有限元模型。该泵由一个壳体组成,壳体内有八个喷射口,喷射口呈圆形,相对于圆轴对称,相互之间的距离相等,围绕着管道的出口,纸浆沿着管道被泵送。创建模型时的基本网元尺寸为 50 毫米,而在喷流区域,网元尺寸有所减小。进行数值实验的目的是评估喷流水磨磨损参数对泵输出的影响。在进行计算时,假设条件如下:忽略吸入和给力管道中的液柱;考虑到纸浆中的沙子浓度不超过体积的 10%,在吸入管道中模拟纯水而非纸浆。计算以问题的静态形式进行。选择以下参数作为射流水磨磨损的基本参数:射流前端的倾斜角度;射流缩短--射流前端中心沿射流轴线的位移。数值实验获得了大量数据。使用最小二乘法处理数据,建立了二阶模型,描述了泵输出对喷流磨损参数的依赖性。对模型的分析表明,喷射器前端倾斜角度的变化对泵输出功率的影响很小,而喷射器每缩短一毫米,泵输出功率的额定值就会下降 1%。
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