Transient Characteristics of Water-Jet Propulsion with a Screw Mixed Pump during the Startup Process

In order to investigate the transient hydrodynamic characteristics of water-jet propulsion with a screw mixed pump during the startup period and to overcome the difficulties in measuring the transient process parameters over a very short period of time, a method based on a flume experiment combined...

Full description

Bibliographic Details
Main Authors: Wei Han, Teng Zhang, You Liang Su, Ran Chen, Yan Qiang, Yang Han
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2020/5691632
id doaj-e924353433594cbeb5aa55aae89e093a
record_format Article
spelling doaj-e924353433594cbeb5aa55aae89e093a2020-11-25T03:47:08ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472020-01-01202010.1155/2020/56916325691632Transient Characteristics of Water-Jet Propulsion with a Screw Mixed Pump during the Startup ProcessWei Han0Teng Zhang1You Liang Su2Ran Chen3Yan Qiang4Yang Han5Lanzhou University of Technology, College of Energy and Power Engineering, Lanzhou 730050, ChinaLanzhou University of Technology, College of Energy and Power Engineering, Lanzhou 730050, ChinaLanzhou University of Technology, College of Energy and Power Engineering, Lanzhou 730050, ChinaLanzhou University of Technology, College of Energy and Power Engineering, Lanzhou 730050, ChinaLanzhou University of Technology, College of Energy and Power Engineering, Lanzhou 730050, ChinaLanzhou University of Technology, College of Energy and Power Engineering, Lanzhou 730050, ChinaIn order to investigate the transient hydrodynamic characteristics of water-jet propulsion with a screw mixed pump during the startup period and to overcome the difficulties in measuring the transient process parameters over a very short period of time, a method based on a flume experiment combined with computational fluid dynamics (CFD) is proposed. The thrust and torque of the pump-jet propulsion according to mooring status at different rotational speeds were measured by the test, which provided a group of data for the boundary and initial conditions of the numerical calculation of the user-defined function (UDF). Consecutive changes in the parameters of the water-jet propulsion dynamics can be captured from the numerical simulation of the startup process with the UDF. Thus, the transient hydrodynamic characteristics of water-jet propulsion according to time or rotation speed were obtained. The results show that the relationship between the thrust or torque of the water-jet propeller and pump rotational speed is close to the quadratic functions. The energy characteristic parameters of screw mixed water-jet pump, such as the flow rate, head, shaft power, and efficiency, rapidly increase and decrease and then remain relatively stable.http://dx.doi.org/10.1155/2020/5691632
collection DOAJ
language English
format Article
sources DOAJ
author Wei Han
Teng Zhang
You Liang Su
Ran Chen
Yan Qiang
Yang Han
spellingShingle Wei Han
Teng Zhang
You Liang Su
Ran Chen
Yan Qiang
Yang Han
Transient Characteristics of Water-Jet Propulsion with a Screw Mixed Pump during the Startup Process
Mathematical Problems in Engineering
author_facet Wei Han
Teng Zhang
You Liang Su
Ran Chen
Yan Qiang
Yang Han
author_sort Wei Han
title Transient Characteristics of Water-Jet Propulsion with a Screw Mixed Pump during the Startup Process
title_short Transient Characteristics of Water-Jet Propulsion with a Screw Mixed Pump during the Startup Process
title_full Transient Characteristics of Water-Jet Propulsion with a Screw Mixed Pump during the Startup Process
title_fullStr Transient Characteristics of Water-Jet Propulsion with a Screw Mixed Pump during the Startup Process
title_full_unstemmed Transient Characteristics of Water-Jet Propulsion with a Screw Mixed Pump during the Startup Process
title_sort transient characteristics of water-jet propulsion with a screw mixed pump during the startup process
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1024-123X
1563-5147
publishDate 2020-01-01
description In order to investigate the transient hydrodynamic characteristics of water-jet propulsion with a screw mixed pump during the startup period and to overcome the difficulties in measuring the transient process parameters over a very short period of time, a method based on a flume experiment combined with computational fluid dynamics (CFD) is proposed. The thrust and torque of the pump-jet propulsion according to mooring status at different rotational speeds were measured by the test, which provided a group of data for the boundary and initial conditions of the numerical calculation of the user-defined function (UDF). Consecutive changes in the parameters of the water-jet propulsion dynamics can be captured from the numerical simulation of the startup process with the UDF. Thus, the transient hydrodynamic characteristics of water-jet propulsion according to time or rotation speed were obtained. The results show that the relationship between the thrust or torque of the water-jet propeller and pump rotational speed is close to the quadratic functions. The energy characteristic parameters of screw mixed water-jet pump, such as the flow rate, head, shaft power, and efficiency, rapidly increase and decrease and then remain relatively stable.
url http://dx.doi.org/10.1155/2020/5691632
work_keys_str_mv AT weihan transientcharacteristicsofwaterjetpropulsionwithascrewmixedpumpduringthestartupprocess
AT tengzhang transientcharacteristicsofwaterjetpropulsionwithascrewmixedpumpduringthestartupprocess
AT youliangsu transientcharacteristicsofwaterjetpropulsionwithascrewmixedpumpduringthestartupprocess
AT ranchen transientcharacteristicsofwaterjetpropulsionwithascrewmixedpumpduringthestartupprocess
AT yanqiang transientcharacteristicsofwaterjetpropulsionwithascrewmixedpumpduringthestartupprocess
AT yanghan transientcharacteristicsofwaterjetpropulsionwithascrewmixedpumpduringthestartupprocess
_version_ 1715118037092270080