Proppant Transportability Testing Device

Proppant Transportability Testing Device


The proppant transport testing device can simulate the high-speed flow of fracturing slurry under different fracture widths and varying roughness conditions of fracture walls. It tests and analyzes the effects of parameters such as in-fracture flow velocity, fluid viscosity, proppant (temporary plugging agent) density, particle size, and sand-to-liquid ratio on the transport and placement patterns of the proppant. (1) Simulate the transport of proppant within fractures through experiments and observe the proppant placement status; (2) Simulate the placement status of different proppants in the same fracturing fluid through experiments; (3) Understand the settling behavior of proppants in different fracturing fluids to optimize fracturing fluid matching; (4) Optimize parameters such as construction discharge volume and fracturing fluid backflow rate; (5) Test and evaluate new fracturing fluids and proppants.
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Intelligent

 

Data such as pressure and flow

Automatic collection, recording, storage, etc.

 


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Convenient and easy to use

 

Graphical user interface

Easy and understandable operation


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Reliable and stable

 

High accuracy, high stability

 

 


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Personalized customization

 

Can be based on requirements

Enhance equipment configuration

     

Application Fields

 

 

Application Functions

Product Parameters

Parameter Indicators

Working Pressure 0~1MPa, pressure control accuracy 0.1%
Working Flow Maximum flow 2.5m 3 /h, fluid metering accuracy: 0.5%, equipped with a solution mixing and sand blending tank
Model Dimensions

Fracture length 1000mm, height 500mm, fracture width adjustable from 2 to 10mm,

Fracture wall uses single-sided rough visualization materials with different representative rock surface features

Data Processing Can achieve automatic collection, recording, and storage of data such as pressure and flow
Wetted Material 316L stainless steel (pipeline), imported PC board, etc.
Photography During the experiment, an industrial camera records the entire process, capturing the sand-carrying sedimentation phenomena
Simulates a vertical wellbore Φ40mm (inner diameter) × 5mm (thickness) 316 stainless steel metal pipe, evenly perforated on the upper and lower well walls to uniformly inject solid particle mixtures into the model. The perforation diameter is adjustable; different perforations are shot at different phase angles, and the number of perforations can be adjusted by rotating the perforation inner pipe.

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