CALC_CR
This function returns the dimensionless heat-capacity ratio between the smaller and larger stream heat-capacity rates. It is a key parameter in exchanger performance correlations.
The ratio is defined as C_r = \frac{C_{min}}{C_{max}}.
Excel Usage
=CALC_CR(mh, mc, Cph, Cpc)
mh(float, required): Mass flow rate of hot stream (kg/s).mc(float, required): Mass flow rate of cold stream (kg/s).Cph(float, required): Heat capacity of hot stream (J/kg/K).Cpc(float, required): Heat capacity of cold stream (J/kg/K).
Returns (float): Heat capacity rate ratio Cmin/Cmax (-).
Example 1: Cr for example flows
Inputs:
| mh | mc | Cph | Cpc |
|---|---|---|---|
| 22 | 5.5 | 2200 | 4400 |
Excel formula:
=CALC_CR(22, 5.5, 2200, 4400)
Expected output:
0.5
Example 2: Cr for equal flow rates
Inputs:
| mh | mc | Cph | Cpc |
|---|---|---|---|
| 3 | 3 | 2000 | 1800 |
Excel formula:
=CALC_CR(3, 3, 2000, 1800)
Expected output:
0.9
Example 3: Cr with larger hot stream
Inputs:
| mh | mc | Cph | Cpc |
|---|---|---|---|
| 10 | 2 | 4200 | 3000 |
Excel formula:
=CALC_CR(10, 2, 4200, 3000)
Expected output:
0.142857
Example 4: Cr with larger cold stream
Inputs:
| mh | mc | Cph | Cpc |
|---|---|---|---|
| 2 | 8 | 3500 | 4200 |
Excel formula:
=CALC_CR(2, 8, 3500, 4200)
Expected output:
0.208333
Python Code
Show Code
from ht.hx import calc_Cr as hx_calc_Cr
def calc_Cr(mh, mc, Cph, Cpc):
"""
Calculate the heat capacity rate ratio for two streams.
See: https://ht.readthedocs.io/en/latest/ht.hx.html
This example function is provided as-is without any representation of accuracy.
Args:
mh (float): Mass flow rate of hot stream (kg/s).
mc (float): Mass flow rate of cold stream (kg/s).
Cph (float): Heat capacity of hot stream (J/kg/K).
Cpc (float): Heat capacity of cold stream (J/kg/K).
Returns:
float: Heat capacity rate ratio Cmin/Cmax (-).
"""
try:
result = hx_calc_Cr(mh=mh, mc=mc, Cph=Cph, Cpc=Cpc)
return result
except Exception as e:
return f"Error: {str(e)}"Online Calculator
Mass flow rate of hot stream (kg/s).
Mass flow rate of cold stream (kg/s).
Heat capacity of hot stream (J/kg/K).
Heat capacity of cold stream (J/kg/K).