Hydraulic design method for sea water desalination high-pressure booster pump

A high-pressure booster, hydraulic design technology, applied to the components, pumps, pump components of the pumping device for elastic fluid, etc. and bearing system damage

Inactive Publication Date: 2016-06-01
JIANGSU UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

The booster pump has the characteristics of seawater corrosion resistance and high inlet pressure. The high inlet pressure requires that the design of the booster pump product needs to fully consider the structural strength and reliability of the pump casing, and the high pressure caused by the twisted blades rotating at high speed at th

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  • Hydraulic design method for sea water desalination high-pressure booster pump
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  • Hydraulic design method for sea water desalination high-pressure booster pump

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Embodiment Construction

[0049] The specific implementation process of the method of the present invention will be provided below, and a certain domestic 10,000-ton seawater desalination high-pressure booster pump is designed, and its design point flow Q is 675m 3 / h, head H is 47m, speed is 1450r / min, inlet pressure is 5.5MPa, the design steps are as follows:

[0050] The impeller of the seawater desalination high-pressure booster pump of the present invention is a symmetrical double-suction structure, and the design parameters of the impeller are determined by the following formula according to the lift H, the flow rate Q, the rotating speed n, and the efficiency η of the required seawater desalination high-pressure booster pump:

[0051] n s = 3.65 n Q / 2 H 3 ...

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Abstract

The invention belongs to the field of fluid machinery, and particularly discloses a hydraulic design method for a sea water desalination high-pressure booster pump. An impeller is of a symmetrical double-suction structure. The problem that the axial force of the sea water desalination high-pressure booster pump is too large is mainly solved; in addition, the design scheme without overload is adopted, and on the basis of a velocity coefficient method, the sea water desalination high-pressure booster pump capable of reducing the axial force greatly is designed. The main design parameters comprises 1, the impeller inlet diameter D1; 2, the impeller hub diameter dh; 3, the blade inlet setting angle beta 1; 4, the blade outlet setting angle beta 2; 5, the impeller outlet diameter D2; 6, the impeller outlet width b2; 7, the blade number z; 8, the blade wrap angle phi and the like. The problems that safe operation of the sea water desalination high-pressure booster pump is seriously influenced due to the fact that working and the produced large axial force of high-speed rotating twisted blades at an inlet of the sea water desalination high-pressure booster pump have destructive effects on all the pump shell strength, a mechanical seal and a bearing system of the high-pressure booster pump can be solve effectively.

Description

technical field [0001] The invention belongs to the field of fluid machinery, and in particular relates to a hydraulic design method of a high-pressure booster pump for seawater desalination, which mainly solves the problem of excessive axial force of the high-pressure booster pump under normal operating conditions. Background technique [0002] The membrane seawater desalination method is one of the most important seawater desalination methods at present. It has the characteristics of low energy consumption, simple equipment, high efficiency, and short construction period. It consumes less energy because the rice osmotic seawater desalination system has an important energy recovery device. Due to the loss in the energy exchange process, the pressure of the source seawater pressurized by the energy recovery device is lower than the osmotic pressure, and the seawater desalination high-pressure booster pump The role of the pump is to supplement the pressure loss of the recover...

Claims

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Application Information

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IPC IPC(8): F04D29/22F04D29/24
CPCF04D29/2216F04D29/242
Inventor 卢永刚王洋朱荣生王秀礼
Owner JIANGSU UNIV
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