Purpose: This tool helps you design and size common
heat exchangers based on thermal requirements using LMTD / AMTD methods
with fouling resistance and basic effectivenessβNTU checks.
Configuration
Hot Fluid Properties
Cold Fluid Properties
Design Parameters
Actions
Heat Transfer Results
Hot Fluid Heat Duty:
-
Cold Fluid Heat Duty:
-
Design Heat Duty:
-
Heat Balance Error:
-
Mean Temp Difference:
-
Required Surface Area:
-
Effectiveness:
-
NTU:
-
Technical Notes
Variable Definitions
- Th,in / Th,out: Hot stream inlet/outlet temperature.
- Tc,in / Tc,out: Cold stream inlet/outlet temperature.
- αΉh, αΉc: Mass flow rates of hot/cold streams.
- Cp,h / Cp,c: Specific heats at operating temperature (use average if Cp varies).
- Uclean: Clean overall heat-transfer coefficient (user estimate/vendor typical).
- Rf: Lumped fouling resistance (overall), entered as fouling factor.
- Udesign: Overall U including fouling, computed by resistance-in-series.
- Q: Heat duty (hot-side and cold-side energy balances).
- ΞTm: Mean temperature difference (LMTD for parallel/counter; AMTD screening for cross-flow).
-
A: Required heat-transfer area from
Q = UΒ·AΒ·ΞT. -
C: Heat-capacity rate
C = αΉΒ·Cp; Cmin is the smaller of hot/cold. -
NTU: Number of transfer units
NTU = UΒ·A / Cmin. -
Ξ΅: Effectiveness
Ξ΅ = Q / Qmax, whereQmax = CminΒ·(Th,in β Tc,in).
Formulas / Logic (Screening)
-
Energy balance (SI internal basis):
Hot side:Qh = αΉhΒ·Cp,hΒ·(Th,in β Th,out)
Cold side:Qc = αΉcΒ·Cp,cΒ·(Tc,out β Tc,in) -
Design duty:
Qdesign = min(|Qh|, |Qc|)(conservative when inputs are inconsistent). -
Heat balance error:
|Qh β Qc| / Qdesign Γ 100%. -
Mean temperature difference:
-
Parallel:
ΞT1 = Th,in β Tc,in,ΞT2 = Th,out β Tc,out -
Counter:
ΞT1 = Th,in β Tc,out,ΞT2 = Th,out β Tc,in -
LMTD:
ΞTm = (ΞT1 β ΞT2)/ln(ΞT1/ΞT2)(if both ΞT1 and ΞT2 are positive) -
Cross-flow: uses AMTD as a quick estimate:
(ΞT1+ΞT2)/2. For detailed design, apply a correction factor/F-chart.
-
Parallel:
-
Fouling in series:
1/Udesign = 1/Uclean + Rf. -
Area:
A = Qdesign / (UdesignΒ·ΞTm)(with Q in W). -
EffectivenessβNTU check (screening): computes
Ξ΅from duty andNTUfrom UA/Cmin to sanity-check the sizing. Detailed Ξ΅βNTU correlations depend on flow arrangement.
Assumptions / Notes
- This is a preliminary sizing tool. Final exchanger design should follow TEMA practices and vendor thermal ratings.
-
Cross-flow is treated as a screening estimate without explicit LMTD
correction factor
F. Use vendor rating software or published correction charts for multi-pass/cross-flow cases. - Uses constant Cp and single-phase sensible heat only (no phase change). For condensation/boiling, use latent heat methods and appropriate U values.
- Enter Uclean and fouling consistent with service; fouling factors are commonly selected per TEMA/industry practice and company standards.
- Temperatures must avoid βtemperature crossβ such that terminal ΞT values remain positive for LMTD calculations.
- Plate HX (screening): typically counter-current with high U for clean services; final sizing requires vendor plate geometry and allowable pressure drop.
- Air-cooled HX (screening): overall U is dominated by the air side and fin efficiency; final sizing should follow API 661 and vendor fan/bundle rating.