Tom.G:
Thanks for the link.
As production gas wells age, pressure declines over time as good old P=nRT/V. V is the gas reservoir (finite), R and T don't change, hence P~n where n is the available moles of gasses. One expects the inverse to occur in injection wells as a finite volume accepts more and more gas (n). In many carbonate (limestone, dolomite) reservoirs, the surface injection pressure of acid gas injection wells has been observed to decrease over time against reasonably stable injection rates.
How can this happen? The V in any reservoir is limited by the porosity (% pore space) in the reservoir rock. Acid gases CO2 and H2S react with the existing reservoir fluids (saline waters) to form various C and S acids that then can attack the limestone and dolomites, increasing the reservoir porosity and hence the available reservoir volume. Acid treatment in wells (about 10,000 gallons of 5-15% HCL) is a very common completion/stimulation procedure for improving carbonate reservoir porosity.
Not every well is lucky. Original formation fluid chemistry, especially the ionic concentrations of Ca and Mg as well as overall TDS, can decrease the formation of C/S acids in the fluids. Reservoir pressure and temperature,easily up to 6000 psi and 180-200 F in the Permian Basin where I work, also works in mysterious ways in affecting porosity. Did I mention that the injected acid gases are in the supercritical phase when they encounter the formation fluids?
No more AGI wells for me this month. Off to a long week of rafting the Grand Canyon.