Switch-on type and continuous inflow type dual-purpose density current test device and method

A dual-purpose density flow and test device technology, which is applied in the direction of fluid dynamics test, measuring device, machine/structural component test, etc., can solve the problems of many device model components, lack of technical solutions, high test cost, etc., and achieve test Low cost, flexible combination design, and high test efficiency

Pending Publication Date: 2018-11-23
ZHEJIANG UNIV
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Problems solved by technology

[0004] Among the published patent schemes, a variety of open-gate type density flow tank systems have been proposed at home and abroad, but there is still a lack of technical solutions for open-gate and continuous inflow dual-purpose density flow test devices; Most of the open-gate and continuous inflow tests have problems such as a large number of device model components, complex...

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  • Switch-on type and continuous inflow type dual-purpose density current test device and method
  • Switch-on type and continuous inflow type dual-purpose density current test device and method
  • Switch-on type and continuous inflow type dual-purpose density current test device and method

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[0064] In order to make the object, technical solution and advantages of the present invention clearer, the present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention. In addition, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not constitute a conflict with each other.

[0065] A gate-opening and continuous inflow dual-purpose differential density flow test device, comprising water storage tanks 1, 18, 22, water tanks 8, cross calibration lines 9, gates 10, and sediment suspension instruments 23; Right-angled drainage pipes 2 and 14 are respectively arranged at the ends, and are connected with the water storage tank 1 and the miniature water storage tank 15 resp...

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Abstract

The invention discloses a switch-on type and continuous inflow type dual-purpose density current test device and method. The device comprises a water storage tank, a vacuum pump, a sediment suspensioninstrument, a flowmeter, a flow guide pipe, a drain pipe, a valve switch, a water tank, pulleys, a guide rod and a guide rail. The device also comprises scale lines and a cross calibration line. Thetest method of the switch-on type and continuous inflow type dual-purpose density current test device comprises the following steps: the test preparation process, the test process, the instrument arrangement process and the data processing and analysis process. The device has the advantages of novel design, simple structure, good integrity, wide applicability to working conditions and high test accuracy; the device can simulate the switch-on type and continuous inflow type density current flow process under the influence of different density current concentration, bed roughness and topographicabrupt change and the continuous inflow type density current movement process under different degrees of gate opening; and the test process is easy to operate, the test efficiency is high and the test design is flexible.

Description

technical field [0001] The invention relates to the field of hydraulic model tests of offshore engineering, in particular to a dual-purpose differential density flow test device and method of a gate-opening type and a continuous inflow type. Background technique [0002] Density flow, also known as density flow, is a phenomenon in which one of the fluids flows along the interface due to the difference in density, and does not globally mix with other fluids during the flow process. Density flow can be divided into two types according to the cause of density difference: component-driven density flow and particle-driven density flow. Component-driven hyperpycnal flow can be further divided into hyperpycnal flow formed by salinity differences and temperature differences, such as saltwater wedges in estuaries and warm drainage from power plants; particle-driven hyperpycnal flows often include submarine turbidity currents, muddy water hyperpycnal flows, etc. . [0003] Hyperpycn...

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Application Information

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IPC IPC(8): G01M10/00
CPCG01M10/00
Inventor 林颖典熊杰刘雅钰袁野平
Owner ZHEJIANG UNIV
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