Fluid release mechanism for a chemically-inflatable bag
09677358 ยท 2017-06-13
Assignee
Inventors
Cpc classification
F42D1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01F33/50111
PERFORMING OPERATIONS; TRANSPORTING
F42D1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42D1/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42D1/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F42D1/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42D1/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42D1/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F42D1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention is directed towards an apparatus for providing a process for sealing an opening formed in the ground with a chemically-inflatable bag. The chemically-inflatable bag contains two or more chemical reactants, one of which is a liquid reactant that is initially stored in a liquid-containing device. The liquid-containing device has a removable cap, which upon removal or breakage of the cap permits the liquid reacting agent to contact and react with another reacting agent. The chemical reaction produces carbon dioxide, which expands the chemically-inflatable bag from a collapsed condition to an inflated condition. In the inflated condition, the chemically-inflatable bag fills and protects the integrity of the formed cavity.
Claims
1. A cap for sealing an opening of a fluid-containing device, the opening having a diameter, the cap contained within a chemically-inflatable bag comprising: a cap base portion, the base portion being directly and removably attached to the fluid-containing device proximate the opening, said cap base portion having a width, a first end and a first end opening; and a cap solid tip portion directly connected to and extending from the cap base portion in an outward direction from the fluid-containing device, said cap solid tip portion having a tip distal portion having a width, a tip base portion having a width, and an interior end, the tip distal portion width being less than the tip base portion width, the tip base portion interior end being adjacent the cap base portion first end opening leaving a cap base portion interior space between the tip base portion interior end and the fluid-containing device opening, the tip base portion width being less than the cap base portion width at the cap base portion first end, wherein breaking the cap solid tip portion from the cap base portion causes substantially all of the tip base portion to be removed from the cap base portion first end opening, wherein the cap base portion first end opening is at least one fourth the fluid-containing device maximum width, and wherein upon the breaking fluid from within the fluid-containing device exits into the chemically-inflatable bag and mixes with a reacting agent contained in the chemically-inflatable bag in order to inflate the chemically-inflatable bag.
2. The cap of claim 1, wherein the cap has a cylindrical cross sectional shape.
3. The cap of claim 2, wherein the cap base portion further comprises a plurality of threads positioned on an outer diameter of the cap base portion.
4. The cap of claim 3, wherein the fluid-containing device has an opening corresponding to a size and shape of the cap.
5. The cap of claim 1, wherein the fluid in the fluid-containing device is an acid.
6. The cap of claim 1, wherein the cap is fabricated from a plastic material.
7. The cap of claim 1, wherein the cap solid tip portion further comprises a blocking plate.
8. A chemically-inflatable bag for a borehole plug comprising: a first reacting agent; and a fluid-containing device positioned within the chemically-inflatable bag, the fluid-containing device having an opening, a removable cap being directly and removably secured to the fluid-containing device, and a fluid contained therein, said removable cap comprising: a cap base portion proximate the opening of the fluid-containing device, said cap base portion comprising a width and a base opening; and an exterior portion directly connected to and extending from the cap base portion in an outward direction from the fluid-containing device, said exterior portion comprising a first end having a width, and a second end having a width, the second end width being less than the first end width, the first end being adjacent the base opening leaving a removable cap interior space between the first end and the fluid containing device opening, the first end width being less than the cap base portion width, wherein breaking the exterior portion from the cap base portion causes substantially all of the exterior portion to be removed from the base opening, wherein the base opening is at least one fourth the fluid-containing device maximum width, wherein the fluid is a second reacting agent, and wherein upon the breaking, the fluid flows through the opening of the fluid-containing device such that the second reacting agent mixes with the first reacting agent causing the chemically-inflatable bag to inflate.
9. The chemically-inflatable bag of claim 8, wherein the first reacting agent is in a water soluble bag positioned within the chemically-inflatable bag.
10. The chemically-inflatable bag of claim 9, wherein the water soluble bag further comprises a plurality of openings.
11. The chemically-inflatable bag of claim 8, wherein the first reacting agent in the water soluble bag is sodium bicarbonate.
12. The chemically-inflatable bag of claim 8, wherein the second reacting agent in the fluid-containing device is an acid.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Illustrative embodiments of the present invention are described in detail below with reference to the attached drawing figures, which are incorporated by reference herein. In the accompanying drawings, which form a part of the specification and which are to be read in conjunction therewith, and in which like reference numerals are used to indicate like parts in the various views:
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DETAILED DESCRIPTION OF THE INVENTION
(16) The subject matter of the present invention is described with specificity herein to meet statutory requirements. However, the description itself is not intended to limit the scope of this patent. Rather, the inventors have contemplated that the claimed subject matter might also be embodied in other ways, to include different steps or varying components/materials similar to the ones described in this document, in conjunction with other present or future technologies.
(17) Embodiments of the present invention provide an apparatus for facilitating a non-labor intensive and novel process for inflating a self-inflating plug, also known as a chemically-inflatable bag, used to prevent backfill entering, or environmental factors eroding walls of a cavity formed in the ground. Generally, embodiments of the present invention relate to embodiments of a cap for a fluid-containing device that is contained within a chemically-inflatable bag.
(18) Referring back to
(19) Improvements to the means by which the acid can mix with the sodium bicarbonate is addressed by the improvements provided in the present invention discussed below and depicted in
(20) The cap 200 of
(21) The cap 200 also comprises a tip portion 206 that extends from the attachment means 202 and has a tip length 208. The tip portion 206 extends a sufficient length 208 so as to provide a portion of the tip length 208 which is breakable. The tip length 208 is preferably solid and includes a blocking plate 210 for closing against an opening of a fluid-containing device. Upon a breaking of the tip length 208, the tip length and blocking plate are generally removed from the opening of the fluid-containing device in a way that fluid from within the fluid-containing device exits into the chemically-inflatable bag and mixes with a reacting agent contained in the chemically-inflatable bag. The cap 200 can be fabricated from a variety of materials, but due to the nature of the fluid in the fluid-containing device, it is preferred that the cap 200 is fabricated from a plastic material.
(22) Referring now to
(23) The fluid-containing device 250 can take on a variety of shapes and sizes. One such configuration is shown in
(24) An alternate embodiment of the cap of the present invention for sealing an opening in a fluid-containing device of a chemically-inflatable bag is shown in
(25) The generally collar-shaped member 302 also has a first face 312 and an opposing second face 314 with a backplate 316 being secured to the second face 314. The backplate 316 provides a surface of the removable cap 300 for capping off or sealing an adjacent fluid-containing device. The backplate 316 also comprises a lip 318 that extends in a direction beyond the inner and outer walls, 304 and 306, respectively, of the generally collar-shaped member 302. The lip 318 and its function will be discussed in more detail below. More specifically, as shown in
(26) For the embodiment depicted in
(27) Referring now to
(28) The first and second reacting agents placed within the chemically-inflatable bag are premeasured to ensure that the proper amount of reactants are being used. The premeasured amount may be based on the type of reactants being used, the concentration of the reactants, or any other attributes or characteristics of the reactants that influence the behavior of the chemical reaction therebetween.
(29) The chemically-inflatable bag 400 also comprises a fluid-containing device, as discussed above. For explanatory purposes, the chemically-inflatable bag 400 utilizes the fluid-containing device 250 of
(30) Initially, the chemically-inflatable bag is in a collapsed condition and may even be in a folded state. When in an appropriate position, such as proximate a cavity formed in the ground that is to be sealed, the bag is unfurled or prepared to be dropped into the opening to be sealed. This sealing does not occur until the bag inflates through a chemical reaction.
(31) As discussed above, the cap 200 is removable. Upon application of a force to the cap 200, the cap is removed or broken off of the opening 252 of the fluid-containing device 250 such that fluid (the second reacting agent) is permitted to flow through the opening 252 and contact the first reacting agent 404 and/or the water soluble bag 402. The acid of the second reacting agent permeates the water soluble bag 402 as well as enters through the openings 406 in the water soluble bag 402. The permeation and dissolution of the water-soluble bag 402 generally takes approximately 30 seconds, providing an operator with sufficient time to place the chemically-inflatable bag in the desired location prior to the bag inflating.
(32) Sufficient force can be applied to the cap 200 from outside the folded or unfolded, but sealed, chemically-inflatable bag. When the second reacting agent 408 contacts the first reacting agent 404, a chemical reaction occurs, the by-product of which is carbon dioxide. The carbon dioxide expands the chemically-inflatable bag 400 from a collapsed condition to an inflate condition. In the inflated condition, the chemically-inflatable bag 400 plugs the borehole and/or obstructs foreign items from entering a formed cavity.
(33) The removable cap can be fabricated from a variety of materials given the necessary operating conditions for the removable cap and chemically-inflatable bag. That is, since the liquid present in the fluid-containing device is preferably an acid, the cap material must be able withstand the acidic conditions for extended periods of time. Furthermore, depending on the physical design of the removable cap, it is necessary that the removable cap be fabricated from a material that can be broken by a user such that it is removable from the fluid-containing device upon application of a force. Generally, a plastic material will meet these requirements and is therefore preferable.
(34) The material(s) chosen for construction of the chemically-inflatable bag are generally sufficiently stable so as to be gas impermeable for an extended length of time consistent with the typical operation of the chemically-inflatable bag (i.e., remaining at a fully inflated volume until the blocked hole is accessed). Such materials generally include nylon or those with nylon attributes. Alternatively, since the byproduct of the chemical reaction occurring within the chemically-inflatable bag is CO.sub.2, other materials that are CO.sub.2 barriers may also be used within the chemically-inflatable bag. However, it should be understood that any suitable material may be used.
(35) In embodiments of the present invention, the chemically-inflatable bag 400 can be assembled with varied reacting agents. The first reacting agent 404 may be sodium bicarbonate powder, which is placed in the water soluble bag 402 and sealed, or is placed directly in the chemically-inflatable bag 400. Next, the second reacting agent 408 may be technical grade acid that is diluted with water to 16% v/v, which is poured into the first section fluid-containing device 250 and sealed by removable cap 200. Accordingly, the sodium bicarbonate and the acid are secured at the opposite ends of the chemically-inflatable bag 400.
(36) By way of example, the chemically-inflatable bag 400, when expanded, may have an outer circumference within the range of 18 to 24 inches in diameter and a length of up to 6 feet. However it should be understood that virtually any diameter and any length of the chemically-inflatable bag 400 could be used. Further, the chemically-inflatable bag 200 may be shaped and sized in any manner when expanded (e.g., cube, sphere, and the like) to accommodate the shape and size of the destination-formed cavity, and is not limited to a cylinder.
(37) In other embodiments, the chemically-inflatable bag 400 is substantially gas-tight and is of a shape such that it can be placed into a formed cavity upon completion of expansion to the inflated condition. Or, the chemically-inflatable bag 400 may be configured in size and shape such that its outer surface does not fully inflate and fully expand to an inner circumference of the formed cavity until the chemical reaction is exhausted and the chemically-inflatable bag 400 is just reaching a full inflation.
(38) The description above depicts examples of various chemically-inflatable bags 400 and removable caps for the fluid-containing device within the chemically-inflatable bag. These examples are not meant in any way to limit the scope of this invention. Further, while not meant to be limiting, the chemically-inflatable bag 400 may be deployed in any environment and, once deployed, may withstand environmental factors for a duration of time that is greater than a maximum lag time between drilling a hole in a construction setting and installing an item in the hole for which it was drilled.
(39) From the foregoing, it will be seen that this invention is one well-adapted to attain all the ends and objects herein above set forth together with other advantages which are obvious and inherent to the structure. It will be understood that certain features and subcombinations are of utility and may be employed without reference to other features and subcombinations. This is contemplated by and is within the scope of the claims. Since many possible embodiments may be made of the invention without departing from the scope thereof, it is to be understood that all matter herein set forth or shown in the accompanying drawings is to be interpreted as illustrative and not in a limiting sense.