Drill string rod with guidance shoulder
US-2017321496-A1 · Nov 9, 2017 · US
US2020116613A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020116613-A1 |
| Application number | US-201916595081-A |
| Country | US |
| Kind code | A1 |
| Filing date | Oct 7, 2019 |
| Priority date | Jul 27, 2016 |
| Publication date | Apr 16, 2020 |
| Grant date | — |
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Provided herein are portable apparatus as well as methods of analyzing a fluid using these portable apparatus. In some embodiments, the injection fluid can contain a polymer, but a polymer is not necessary. For example, the portable apparatus and methods may be used to determine viscosity, long term injectivity, filter ratio, or any combination thereof of the injection fluid. Advantageously, the surrogate core is temperature controlled.
Opening claim text (preview).
What is claimed is: 1 . A method of analyzing a fluid, the method comprising: determining a characteristic of the fluid with a portable apparatus, the portable apparatus comprising: (1) an inlet to receive the fluid from the fluid conduit; (2) a core holder to encompass a surrogate core, the core holder being coupled to the inlet such that the fluid is pumped from the inlet through the surrogate core encompassed in the core holder; (3) one or more pressure transducers for determining a pressure of the fluid; and (4) a temperature control device that controls the temperature of the surrogate core; wherein the characteristic of the fluid is determined based on information from the one or more pressure transducers while the temperature of the surrogate core is controlled by the temperature control device. 2 . The method of claim 1 , wherein the temperature control device comprises a heat trace, a heating jacket, a heat tape, a heating wire, a cooling jacket, a water jacket, a chiller, or any combination thereof. 3 . The method of claim 1 , wherein at least a portion of the portable apparatus is insulated. 4 . The method of claim 1 , wherein the temperature of the surrogate core is controlled to be from about 70° F. to about 140° F. 5 . The method of claim 1 , further comprising determining a viscosity of the fluid using a capillary viscometer, the viscosity being determined based on information from the one or more pressure transducers. 6 . The method of claim 1 , further comprising measuring an amount of oxygen dissolved in the fluid using an oxygen probe. 7 . The method of claim 1 , wherein the characteristic of the fluid is an injectivity of the fluid, and the fluid is altered to improve a correlation between the injectivity of the fluid and a target injectivity value or range of values. 8 . The method of claim 1 , wherein determining the characteristic of the fluid comprises pumping the fluid through the surrogate core in a range for a minimum of about 20 pore volumes and a maximum of about 1,000 pore volumes. 9 . The method of claim 1 , further comprising controlling the pressure of the fluid through the surrogate core encompassed in the core holder with a pump that is coupled to the inlet of the portable apparatus, a back pressure regulator that is coupled to an outlet of the portable apparatus, or any combination thereof. 10 . The method of claim 1 , wherein the fluid comprises produced fluid from a wellbore. 11 . A portable apparatus for determining a characteristic of a fluid, the apparatus comprising: (1) an inlet to receive the fluid; (2) a core holder to encompass a surrogate core, the core holder being coupled to the inlet such that the fluid is pumped from the inlet through the surrogate core encompassed in the core holder; (3) one or more pressure transducers for determining a pressure of the fluid; and (4) a temperature control device that controls the temperature of the surrogate core as the fluid flows through the core holder; wherein the characteristic of the fluid is determined based on information from the one or more pressure transducers while the temperature of the surrogate core is controlled by the temperature control device. 12 . The portable apparatus of claim 11 , wherein the temperature control device comprises a heat trace. 13 . The portable apparatus of claim 11 , wherein the temperature control device comprises a heating jacket. 14 . The portable apparatus of claim 11 , wherein the temperature control device comprises a heat tape. 15 . The portable apparatus of claim 11 , wherein the temperature control device comprises a heating wire. 16 . The portable apparatus of claim 11 , wherein the temperature control device comprises a water jacket. 17 . The portable apparatus of claim 11 , wherein the temperature control device comprises a chiller. 18 . The portable apparatus of claim 11 , wherein at least a portion of the portable apparatus is insulated. 19 . The portable apparatus of claim 11 , wherein: a data acquisition system (DAS) is coupled to the one or more pressure transducers to receive the information from the one or more pressure transducers so that the pressure of the fluid can be determined; and a power supply provides power to the pump, the one or more pressure transducers, the temperature control device, the data acquisition system (DAS), or any combination thereof. 20 . The portable apparatus of claim 11 , further comprising a capillary viscometer for determining a viscosity of the fluid, wherein the viscosity of the fluid is further determined based on information from the one or more pressure transducers. 21 . The portable apparatus of claim 11 , further comprising an oxygen probe that measures the amount of oxygen dissolved in the fluid. 22 . The portable apparatus of claim 11 , wherein a pump is coupled to the inlet of the portable apparatus and pumps the fluid from the inlet through the surrogate core encompassed in the core holder. 23 . The portable apparatus of claim 11 , wherein a back pressure regulator is coupled to an outlet of the portable apparatus and controls the pressure of the fluid through the surrogate core encompassed in the core holder. 24 . The portable apparatus of claim 11 , wherein the fluid comprises produced fluid from a wellbore.
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