Title of article :
Specific Heat Capacity and Thermal Conductivity of Foam Glass (Type 150P) at Temperatures from 80 to 400 K1
Author/Authors :
Dan-Ting Yue، نويسنده , , Zhicheng Tan، نويسنده , , You-Ying Di، نويسنده , , Xin-Rong Lv and Li-Xian Sun ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
Low-temperature specific heat capacities of foam glass (Type 150P) have been
measured from 79 to 395K by a precision automated adiabatic calorimeter.
Thermal conductivities of the glass foams have been determined from 243
to 395K with a flat steady-state heat-flow meter. Experimental results have
shown that both the specific heat capacities and thermal conductivities of the
150P foam glass increased with temperature. Experimentally measured specific
heat capacities have been fitted by a polynomial equation from 79 to 395 K:
Cp/J · g−1·K−1=0.6889+0.3332x−0.0578x2+0.0987x3+0.0521x4−0.0330x5−
0.0629x6, where x = (T /K − 273)/158. Experimental thermal conductivities
as a function of temperature (T ) have been fitted by another polynomial
equation from 243 to 395 K: λ/ W·m−1·K−1 =0.14433+0.00129T −2.834×
10−6T 2 + 2.18 × 10−9T 3. In addition, thermal diffusivities (a) of the form
glass sample were calculated from the specific heat capacities and thermal
conductivities and have been fitted by a polynomial equation as a function
of temperature (T ): a/m2· s−1=−1.68285+0.01833T −5.84891×10−5T 2+
8.11942×10−8T 3 −4.24975×10−11T 4.
Keywords :
enthalpy and entropy functions , foam glass , low-temperaturespecific heat capacity , thermal conductivity , thermal diffusivity
Journal title :
International Journal of Thermophysics
Journal title :
International Journal of Thermophysics