Apparatus, systems, and methods for fracturing a geological formation
The present disclosure relates, according to some embodiments, to apparatus, systems, and methods of fracturing a geological structure including the application of kinetic energy (e.g., from high velocity frack fluid) to a subterranean structure. In some embodiments, the present disclosure relates to apparatus, systems, and methods for delivery of high velocity fluid to a well using a down hole valve and/or throttling system. The present disclosure relates to apparatus, systems, and methods of generating pressure using accumulators (e.g., high pressure accumulators) at the surface of a well.
1. A system for kinetically fracking a subterranean structure, the system comprising:
(a) a well in fluid communication with the subterranean structure;
(b) a well liner disposed inside the well;
(c) a fracking string disposed inside the well liner, the fracking string comprising a central channel; and
(d) a fluid velocity activated annular valve with at least one aperture configured to support fluid communication between the central channel and a cavity between the liner and the fracking string, where the valve is configured to abruptly decelerate flow of a fracking fluid in a direction towards a well head and direct the fracking fluid towards the subterranean structure.
2. The system according to claim 1 , further comprising from one to about twenty high pressure gas pumps, each independently configured to deliver 1500 to 2000 horsepower.
3. A downhole fluid velocity activated annular valve configured for operation in a wellbore with an inserted production liner, the valve comprising:
(a) an annular body having a longitudinal axis, an interior surface configured to slide along a fracking string, and an exterior surface comprising a taper, the taper extending circumferentially around the exterior surface and extending along at least a portion of a length of the body;
(b) an annular packing element contacting and surrounding the taper and configured to translate radially outwardly upon axial movement of the body; and
(c) at least one aperture disposed in the body and configured to align with a corresponding hole in the fracking string and support fluid communication between an inner channel of the fracking string and a cavity between the liner and the fracking string.
4. The valve according to claim 3 , further comprising an annular housing surrounding an annular spring, the spring is configured for compression and decompression with axial movement of the body.
5. The valve according to claim 3 , further comprising an O-ring disposed on the interior surface and configured to sealably contact the fracking string.
6. The valve according to claim 3 , wherein a maximum extent of the taper is positioned proximal to a more downhole end of the body, and a minimum extent of the taper is positioned proximal to an end of the body closer to a well head.