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SV Static mixer
Product details

SV static mixer type internal units have been assembled by the well-designed corrugated sheet, the product itself has no moving parts, relying on the units of the special structure and fluid motion, make mutual miscibility of fluid dispersion, mixed each other, and achieve good mixing effect. SV type unit is composed of a certain specifications of the corrugated plate assembly of cylinder, applicable to the viscosity of 102 centipoise or less liquid - liquid, liquid, gas, gas, mixed gas, including reaction, absorption, extraction, dissolution, emulsification, etc., can also be used to strengthen the heat transfer process. The SV type is easy to enlarge, which is more suitable for large installations than other types of static mixer. The application examples of the reaction process are: used as a silicon rubber polymerization reactor, as an acid and alkali neutralization reactor, as a pre-mixer for the isobutylene hydrating reactor. Application examples of the absorption process include: replace the filling tower for sodium hydroxide solution to absorb hydrogen sulphide and replace the filling tower for pure water ozone sterilization, etc. The application examples of extraction process include phenol used in n-503 extraction wastewater and purification of Chinese medicine. The application examples of emulsification process are: used for cosmetics production, fuel oil and water to prepare emulsified fuel oil, etc. Application examples of mixing process include mixing of gas/liquefied gas, mixing of air/oxygen, oil refining for oil refinery, etc.

Sv type pressure drop calculation formula

PFriction coefficient (N/m2         f friction coefficient (dimensionless) ρc fluid density(Kg/m3
WFluid linear velocity(m/s      Lmixer length(mm      dhHydraulic diameter(mm
εVoid fraction (non-dimensional) μfluid viscosity(CP           A hybrid unit area(mm2

δUnit material thickness(mm pipe diamete(mm Reynolds number (dimensionless)

The relational table of the SX Reynolds number Re epsilon and the friction coefficient f

td valign="center" width="158">

Re ε > 2400

 

SV-2.3

SV-2.5

SV-5-30

 

Void fractionε

0.880

0.909

1

 


Laminar flow

range

Re ε < 23

Re ε < 23

Re ε < 150

 

Relation between

f=139/Re ε

f=139/Re ε

f=150/Re ε

 

Transition flow zone

range

23 < Re ε < 150

23 < Re ε < 150

---------------

 

Relation between

f=23.1 Re ε -0.428

f=43.7 Re ε -0.631

---------------

 

Turbulence zone

range

150 < Re ε < 2400

150 < Re ε < 2400

Re ε > 150

 

Relation between

f=14.1 Re ε -0.329

f=10.7 Re ε -0.350

F =1

 

Completely turbulent region

range

Re ε > 2400

--------------

 

Relation between

f=1.09

f=0.702

 


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