The invention relates to refractometry and attenuated reflectance
spectrometry in a wellbore environment. Specifically, it pertains to a
robust apparatus and method for measuring refractive index of fluids along
a continuum (rather than in steps), and for measuring attenuated
reflectance spectra, and for interpreting the measurements made with this
apparatus to determine a variety of formation fluid parameters. The
present invention provides a method and apparatus to distinguish between
gas and liquid based on the much lower index of refraction of gas. It can
also be used to monitor fluid sample clean up over time. The refractive
index of a wellbore fluid is determined from the fraction, R, of light
reflected off the interface between a transparent window that has a known
refractive index and this fluid. Preferably, the refractive index is
measured at some wavelength of light for which the fluid is not highly
attenuating. However, the adjacent transmission spectrometer can be used
to correct the refractive index measurement for attenuation at those
wavelengths, which it monitors. Also, this reflection-based refractometer
design can be used as an attenuated reflectance spectrometer at highly
attenuating wavelengths.