Applications · Polymers

STATIC MIXER FOR HEAT TRANSFER ENHANCEMENT IN JACKETED LINES

Elimination of the insulating radial temperature gradient in viscous polymer, resin, and syrup flows within jacketed pipes. KE-E edge-sealed mixer achieves 3–10× improvement in overall heat transfer coefficient.

Laminar | Jacketed Pipe | 3–10× Heat Transfer
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3–10× vs Empty Tube
Key Parameter 1
Nu Enhancement
Key Parameter 2
DN25–DN300
Key Parameter 3
KE-E Edge-Sealed
Key Parameter 4
Process Scheme
Viscous Polymer / Syrup
Heating or Cooling Fluid (Jacket)
KE-E Jacketed Mixer
Temperature Monitor
Uniform Temperature Outlet

Mixing Criteria

KE-E edge-sealed mandatory — standard KE with wall clearance allows bypass that negates heat transfer benefit. Radial temperature gradient eliminated within 3–5 element lengths. Pressure Drop (ΔP) multiplier 3.5–5× Hagen-Poiseuille — pump duty recalculation required.

Typical Viscosity
100–100,000 cP (centipoise) (viscous polymer, resin, or syrup)
Reynolds Number (Re)
Reynolds Number (Re) <2,000 (laminar throughout)

Material & Special Requirements

Preferred MOC: 316SS or 316L for food/pharma jacketed duty. Carbon steel for industrial polymer. Jacketed housing in same material as pipe. Steam-rated if steam jacket.

KE-E edge-sealed configuration ONLY — wall clearance in standard KE allows laminar bypass. Jacket must be rated for steam pressure. Pressure Drop (ΔP) 3.5–5× empty pipe — verify pump/extruder head before specifying element count.

Recommended Mixer
KE Series — Helical Element
Kenics-equivalent. 180° RH/LH helical elements joined at 90°. Halves striation thickness per element. Works laminar to turbulent. Best general-purpose choice.
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