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The book comprises two parts: Pressure and Flow Well Testing (Part
I) and Temperature Well Testing (Part II), and contains numerous
authors' developments. Due to the similarity in Darcy's and
Fourier's laws the same differential diffusivity equation describes
the transient flow of incompressible fluid in porous medium and
heat conduction in solids. Therefore it is reasonable to assume
that the techniques and data processing procedures of pressure well
tests can be applied to temperature well tests. The book presents
new methods to determine the formation of permeability and skin
factors from tests conducted in simulated wells, designing
interference well tests, processing constant bottom-hole pressure
tests, estimation of the formation temperature and geothermal
gradients from temperature surveys and logs, in-situ determination
of the formation thermal conductivity and contact thermal
resistance of boreholes, temperature regime of boreholes (cementing
of production liners), and the recovery of thermal equilibrium in
deep and superdeep wells. Processing and analysis of pressure and
geothermal data are shown on numerous field examples from different
regions of the world. The book is intended for students, engineers,
and researchers in the field of hydrocarbon geophysics and geology,
groundwater searching and exploitation, and subsurface environment
examination. It will be also useful for specialists studying
pressure and temperature in parametric deep and superdeep wells.
The book comprises two parts: Pressure and Flow Well Testing (Part
I) and Temperature Well Testing (Part II), and contains numerous
authors' developments. Due to the similarity in Darcy's and
Fourier's laws the same differential diffusivity equation describes
the transient flow of incompressible fluid in porous medium and
heat conduction in solids. Therefore it is reasonable to assume
that the techniques and data processing procedures of pressure well
tests can be applied to temperature well tests. The book presents
new methods to determine the formation of permeability and skin
factors from tests conducted in simulated wells, designing
interference well tests, processing constant bottom-hole pressure
tests, estimation of the formation temperature and geothermal
gradients from temperature surveys and logs, in-situ determination
of the formation thermal conductivity and contact thermal
resistance of boreholes, temperature regime of boreholes (cementing
of production liners), and the recovery of thermal equilibrium in
deep and superdeep wells. Processing and analysis of pressure and
geothermal data are shown on numerous field examples from different
regions of the world. The book is intended for students, engineers,
and researchers in the field of hydrocarbon geophysics and geology,
groundwater searching and exploitation, and subsurface environment
examination. It will be also useful for specialists studying
pressure and temperature in parametric deep and superdeep wells.
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