Fluids / Ethylene glycol, 30 % by volume

Specific heat of ethylene glycol, 30 % by volume vs temperature

Specific heat in kJ/(kg·K), from -10 to 100 °C. The chart and the table below are the same numbers; the table is the one you can copy.

Specific heat kJ/(kg·K)
Specific heat of ethylene glycol, 30 % by volume in kJ/(kg·K), from -10 to 100 °C-10 °C — 3.62 kJ/(kg·K)0 °C — 3.65 kJ/(kg·K)20 °C — 3.7 kJ/(kg·K)40 °C — 3.76 kJ/(kg·K)60 °C — 3.81 kJ/(kg·K)80 °C — 3.87 kJ/(kg·K)100 °C — 3.92 kJ/(kg·K)3.623.643.663.683.73.723.743.763.783.83.823.843.863.883.93.92-100102030405060708090100Temperature (°C)Specific heat (kJ/(kg·K))
Ethylene glycol, 30 % by volume — everything else at 20 °C (default)
Density1,041 kg/m³
Dynamic viscosity2.4 mPa·s
Thermal conductivity0.464 W/(m·K)
Specific heat by temperature
Temperature (°C)Specific heat (kJ/(kg·K))Row
-103.62published
03.65published
103.675interpolated
203.7published
303.73interpolated
403.76published
503.785interpolated
603.81published
703.84interpolated
803.87published
903.8956interpolated
1003.92published

Rows marked published land exactly on a source anchor and are the tabulated figure. The rest are this library’s interpolation between the two anchors either side — good enough to design with, and said out loud so you can decide that for yourself.

ASHRAE Handbook—Fundamentals, Ch. 31 (Secondary Coolants), interpolated from published tables · validated -10 to 100 °C · interpolated between 7 published anchors (values held, not extrapolated, past the ends)