๐ Scraped Surface Heat Exchanger Sizer (SSHE)
Size and design Scraped Surface Heat Exchangers (SSHE Votator / Contherm): Trommelen heat transfer model, rotational Reynolds number, product outlet temp, and shaft motor power.
โก Fortran 90 Engine
Double Precision (IEEE 754)
โ ISO / ASME Validated
๐ Solver Telemetry
โ ACTIVE
๐๏ธ Views
18
โก Solves
17
๐พ Downloads
369
๐ฆ Fortran Code
4.1 KB
๐
Released
Jun 2026
โฑ๏ธ Latency
< 1 ms
๐ SSHE Rotating Scraper Blades & Boundary Layer Scraping
Real-time visual simulation: High-speed scraper blades wiping viscous boundary layer against the cooling jacket๐ Configuration & Presets
๐ฆ Ice Cream Slush Freezer
๐
Tomato Paste SSHE Cooler
๐ง Margarine Fat Crystallizer
๐ฒ Starch Gelatin Cooker
Trommelen & Beek SSHE Formulation:
โข Rotational Reynolds: Rer = ฯ ยท (N/60) ยท Diยฒ / ฮผ
โข Scraped Nusselt: Nu = 0.16 ยท Rer0.50 ยท Pr0.33 ยท Nb0.33
โข Scraped Film Coeff: hp = Nu ยท k / Di [W/(mยฒยทK)]
โข Total Heat Duty: Qฬ = แน ยท cp ยท ฮT + แน ยท ฮhlatent [kW].
โข Rotational Reynolds: Rer = ฯ ยท (N/60) ยท Diยฒ / ฮผ
โข Scraped Nusselt: Nu = 0.16 ยท Rer0.50 ยท Pr0.33 ยท Nb0.33
โข Scraped Film Coeff: hp = Nu ยท k / Di [W/(mยฒยทK)]
โข Total Heat Duty: Qฬ = แน ยท cp ยท ฮT + แน ยท ฮhlatent [kW].
๐ SSHE Performance Results
๐ Output Summary
Transferred Thermal Duty (Qฬ)
44.5 kW
Overall U: 65 W/(mยฒยทK) | Scraped Film hp: 67 W/(mยฒยทK)
2 Blades @ 400 RPM
Product Outlet Temperature (Tout)
44.1 ยฐC
Inlet = 45 ยฐC | Jacket = -10 ยฐC
Scraper Motor Power Demand
1.54 kW
2.06 HP Mechanical Drive
Rotational Reynolds (Rer)
162
Boundary layer renewal
Heat Transfer Area (A)
0.71 mยฒ
L = 1.5 m, D = 150 mm
๐ Heat Duty Qฬ (kW) vs Scraper Rotor Speed N (rpm)
๐ Scraped Film Coeff hp [W/(mยฒยทK)] vs Blades Count Nb
================================================================= THERMOFLUIDCALC โ SCRAPED SURFACE HEAT EXCHANGER REPORT ================================================================= Case Title : Margarine Fat Texturizing & Crystallizer Product Type : Margarine / Palm Fat (Crystallization & Texturizing) Product Flow & Temp : m_dot = 1.20 kg/s, Tin = 45.0 C, Jacket = -10.0 C SSHE Geometry & Scraper : D = 150.0 mm, L = 1.50 m, N = 400 rpm, Blades = 2 ----------------------------------------------------------------- THERMAL HEAT DUTY (Q) : 44.50 kW Scraped Film Coeff (hp) : 67.5 W/(m2.K) Overall Heat Transfer (U) : 64.8 W/(m2.K) Product Outlet Temperature : 44.05 deg C Heat Transfer Area : 0.71 m2 Rotational Reynolds (Re_r) : 162 Scraper Drive Motor Power : 1.54 kW (2.06 HP) =================================================================
๐ Calculation Methodology & SSHE Standards
Continuous Boundary Layer Renewal
Spring-loaded or centrifugal scraper blades continuously scrape the heat exchange cylinder wall, preventing fouling and burning of sticky, heat-sensitive or crystallizing food and chemical products.
Trommelen & Beek Heat Transfer Model
Evaluates the unsteady heat conduction into the liquid film between successive blade passes, scaling with $\sqrt{N \cdot N_b}$.
Key Engineering Assumptions
- Uniform jacket temperature (evaporating refrigerant or condensing steam).
- Power law and high-shear viscous friction dissipation included in shaft load.
- Applicable to ice cream slush freezers, tomato paste, margarine, peanut butter, and gelatin.