Title of article :
Qrtzgeotherm: An ActiveX component for the quartz solubility geothermometer
Author/Authors :
Verma، نويسنده , , Mahendra P.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
8
From page :
1918
To page :
1925
Abstract :
An ActiveX component, QrtzGeotherm, to calculate temperature and vapor fraction in a geothermal reservoir using quartz solubility geothermometry was written in Visual Basic 6.0. Four quartz solubility equations along the liquid–vapor saturation curve: (i) a quadratic equation of 1/T and pressure, (ii) a linear equation relating log SiO2 to the inverse of absolute temperature (T), (iii) a polynomial of T including logarithmic terms and (iv) temperature as a polynomial of SiO2 including logarithmic terms are programmed. tzGeotherm has input parameters: (i) HRes—the reservoir enthalpy (kJ/kg), (ii) SiO2TD—silica concentration in total discharge (ppm), (iii) GeoEq—number of quartz solubility equation and (iv) TempGuess—a guess value of the reservoir temperature (°C). The reservoir enthalpy Hres is assumed to be the same as the total discharge enthalpy HR. The output parameters are (i) TempRes—reservoir temperature (°C) and (ii) VapRes—reservoir vapor fraction. rst step is to calculate the total discharge concentration of silica SiO2TD from the concentration of silica SiO2Col of separated water, sampled after N-separations of vapor and water. To use QrtzGeotherm in MS-Excel, three functions SiO2TD, GeoResTemp and GeoResVap for an N-stage separation of geothermal reservoir fluid are written in Visual Basic for Application (VBA). Similarly, a demonstration program, QrtzGeothrm, is written in Visual Basic 6.0.
Keywords :
computer program , Solubility equations , Quartz geothermometry , ActiveX component , QrtzGeotherm , QrtzGeothrm , Visual Basic 6.0
Journal title :
Computers & Geosciences
Serial Year :
2008
Journal title :
Computers & Geosciences
Record number :
2287429
Link To Document :
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