离心泵能量特性的研究

Ali-Hikmat Ahmadov Ali-Hikmat Ahmadov, Musayev Anar Musayev Anar
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摘要

用来吸收液体,在压力下移动液体或泵送液体的液压装置称为泵。一般来说,液体的任何类似聚集体的运动都是由于势能或动能的传递而进行的。根据技术指标的不同,使用不同类型的泵。同时,它们在效率、功率、单位时间内泵送的流体体积、最大扬程和产生的压力方面存在差异。最常用的一组泵是叶片泵。它们的显著特点是叶轮在固定壳体内旋转,装有叶片。根据叶轮的仓库和流体通过它的条件,叶片泵分为离心式和旋涡式。使用离心泵,由于叶轮旋转时产生的离心力而提供液体。她被叶片带走,在离心力的作用下,沿着叶片从车轮中部移动到边缘。叶轮的叶片在向后旋转的方向弯曲。叶片的数量通常在6到8片之间。但是用于不纯液体的特殊泵,为了增加轮内通道的横截面,安装了较少数量的叶片,从2片到4片。离心泵通常安装在接收罐内的液面以上,因此在使用前必须加满液。泵通过灌装漏斗在吸入管路上装有止回阀,直至气体从吸入管路和泵壳中完全排出。在没有止回阀的情况下,为了充注,空气被挤出泵壳,阀门被一个特殊的真空泵关闭。在给大型泵注油时也是如此。离心泵的特点是效率高、结构紧凑、使用耐用。在水动力过程数值模拟的基础上,给出了离心泵工作轮设计调整的依据。对离心泵运行部分的流体流动进行了数学建模。分析了CFD计算结果,制作了实验工作轮,并进行了试验。有一个串联泵和实验泵的比较过程。关键词:离心泵,数值模拟,数学模型,能量特性,水动力过程,动力特性,动力工程,工作轮,工作流体,工作轮叶片
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INVESTIGATION OF THE ENERGY CHARACTERISTICS OF CENTRIFUGAL PUMPS
A hydraulic device that is used to suck up liquid, move it under pressure or pump it, is called a pump. As a rule, any movement of a liquid by similar aggregates is carried out due to the transfer of potential or kinetic energy to it. Depending on the technical indicators, different types of pumps are used. At the same time, they differ in efficiency, power, volumes of fluid pumped per unit time, maximum head and resulting pressure. The most used group of pumps are vane pumps. Their distinctive feature is the impeller rotating in a fixed housing, equipped with blades. Depending on the warehouse of the impeller and the conditions for moving fluid through it, vane pumps are divided into centrifugal and vortex. With a centrifugal pump, liquid is supplied due to the centrifugal force that appears when the impeller rotates. She is carried away by the blades and, under the action of centrifugal force, moves from the middle of the wheel to the edges along the blades. The blades of the impellers are bent in the direction of rotation backwards. The number of blades is usually from 6 to 8 pieces. But special pumps for impure liquids, in order to increase the cross section of the channels in the wheel, are installed with a smaller number of blades from 2 to 4 pieces. Centrifugal pumps are usually installed above the liquid level in the receiving tank, so they must be filled before use. The pump is filled with a check valve on the suction line through the filling funnel until the gas is completely expelled from the suction pipeline and the pump housing. In the absence of a check valve, for filling, air is forced out of the pump housing with the valve closed by a special vacuum pump. The same is done when filling large pumps. Centrifugal pumps are characterized by a rather high efficiency, compactness and durability of use. Based on the numerical modeling of hydrodynamic processes, a substantiation of adjustment of the design of the working wheels of centrifugal pumps is given. Mathematical modeling of the fluid flow in the running part of the centrifugal pump is performed. The results of the CFD calculation are analyzed, after which an experimental work wheel is created, and its tests are carried out. There is a process of comparing a serial and experimental pump. Keywords: Centrifugal pumps, numerical modeling, mathematical model, energy characteristics, hydrodynamic processes, dynamic characteristics, power engineering, working wheel, working fluid, working wheel vanes.
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