Background of the Invention
1. Field of the Invention
The present invention relates to a method and apparatus for removing water from a storage facility for organic liquids.
2. The Prior Art
Various uses have been developed for so-called "polymer imbiber" materials which expand when contacted by petroleum-based liquids, such materials being sold by The Dow Chemical Company.
For example, U.S. Pat. No. 3,750,688 to Hall, incorporated by reference, discloses a valve which includes such an imbiber material that freely passes water but expands when contacted by oil. Notably, however, the housing structure in the Hall patent does not provide for the removal of the imbiber material for a subsequent valving cycle.
Additionally, it has been suggested to use imbiber materials in a valving structure for drawing off water for bulk hydrocarbon storage tanks. However, previous designs of such valving structures have been undesirable for various reasons, including the allowance of excessive oil drain-off and spillage during replacement of the imbiber materials.
Summary of the Invention
These prior art problems, disadvantages and shortcomings are overcome in the present invention which includes an improved structure for housing imbiber material in a valving arrangement which facilitates the removal of the imbiber material without excessive oil spillage. The improved housing includes a cup-shaped base which includes a bottom member, an inlet thorugh the bottom, an annular side wall integral with the bottom, and an outlet through the side wall. A removable cap is retained on top of the side wall by a releasable means which permit ready disassembly of the cap to replace the organic imbiber material.
More preferably, the bottom of the base is downwardly dished and includes a peripheral locating surface between the bottom and side wall to receive a sealing ring upon which the organic imbiber material may be positioned. Additionally, an outwardly directed peripheral flange is integral with the top of the side wall, with a peripheral bead extending upwardly on the flange for retaining a sealing ring positioned between the flange and the cap.
The improved housing is preferably used in a flow system which includes a generally horizontal, first flow line communicating with the interior of an oil storage tank. A valve in the first flow line selectively accommodates liquid flow to a generally vertical, second flow line to which the housing structure is connected.
In the method, the valve in the horizontal flow line is opened, permitting water at the bottom of the oil storage tank to flow generally horizontally through the first flow line and then generally vertically through the second flow line into the housing, through the imbiber material, and then out of the housing. When essentially all the water is removed from the tank, oil then flows through the same path, but is imbibed by the polymer material in the housing to effect a positive valving effect.
Accordingly, the housing and valving arrangement of the present invention facilitates the removal and replacement of valving imbiber material without unnecessary and undesirable oil spillage during such an operation. These and other meritorious features and advantages of the present invention will be more fully appreciated from the following detailed description and the appended claims.
Brief Description of the Drawings
FIG. 1 is a schematic illustration of the overall flow system and imbiber housing of the present invention.
FIG. 2 is a cross-sectional, side elevational view of the housing of the present invention.
Detailed Description of the Preferred Embodiment
The present invention relates to an overall flow system for removing water from an oil storage tank and to a housing structure in that flow system for retaining polymer imbiber material. U.S. Pat. No. 3,750,688 to Hall is incorporated by reference to disclose the particular polymer imbiber materials which may be used in the present invention. It is contemplated by the present invention that the imbiber material, shown by reference numeral 60, will be in the form of a disc. However, other shapes could be used, with approximate changes in shape likewise being made to the housing structure.
The overall flow system is illustrated in FIG. 1 as including an oil storage tank 10, a generally horizontal flow line 12, a valve V1 in flow line 12, a pair of segments 14 and 16 of a vertical flow line, a valve V2 in segment 16, and the housing structure 20 of the present invention. Horizontal flow line 12 communicates with the interior of the oil storage tank at about the tank bottom. As will be appreciated, oil floats on top of water so that any water which may accumulate in tank 10 may be drained off through flow line 12. Both vertical flow line segments 14 and 16 are in fluid communication with flow line 12, with the housing structure 20 being mounted to the top of segment 14. Valves V1 and V2 are of conventional design to accommodate the selective closing and opening of flow lines 12 and 16 in a manner to be more fully described below.
As shown in FIG. 2, the housing structure includes a base 30 and a cap 50. The base includes a threaded coupling 31 for interconnection with vertical flow line segment 14. A dished bottom 32 openeds upwardly from the coupling 31 and is integral with an annular side wall 33, from which a peripheral flange 34 projects. A step 35 in the base between the dished bottom 32 and the side wall 33 provides a peripheral locating surface to receive a sealing O-ring 36. Likewise, an upwardly projecting, circumferential bead 37 is provided on the peripheral flange 34 to locate a second sealing O-ring 38 between the flange 34 and the cap 50. An outlet or discharge 39 extends radially outwardly through the side wall 33 to accommodate the flow of water from the housing.
The cap 50 includes an upwardly dished central portion 51 which blends into an outer peripheral flange 52 overlying the flange 34 of the base. Ribs 53 (only one being shown) extend downwardly from the dished region 51 to provide abutment surfaces 54 which engage the imbiber material 60.
Mating openings 40 and 55 respectively in the base and the cap receive a bolt 61 to retain the cap to the base. Preferably, three such openings and bolts will be utilized. As shown, when the nut on bolt 61 is tightened, two seals are established. The peripheral flange 52 on the cap compresses O-ring 38 to form a seal between the base and the cap. Second, abutment surface 54 displaces the imbiber material disc 60 downwardly to compress the O-ring 36, so that fluid entering the housing must flow through the imbiber material before exiting through discharge 39.
In the overall operation of removing water from the bottom of an oil storage tank, the first step includes opening valve V1. Water flows through the essentially horizontal flow line 12 and then vertically upwardly through flow line segment 14 into the housing 20, since valve V2 is closed during this phase of operation. At the housing 20, water flows through inlet coupling 31, through the imbiber material 60 and then out of discharge 39. When all of the water is removed from the storage tank, oil then flows through the same path. Because of its characteristics, the imbiber material begins to expand when contacted by the oil. This expansion continues until the material closes off all the interstices between the individual polymer beads, effecting a positive shut-off to restrict further oil flow. Valve V1 is then shut-off, and valve V2 is opened to drain oil out of vertical flow line segments 14 and 16 and out of the housing. The cap 50 is then removed to enable the removal and replacement of the imbiber material. Finally, the cap is re-secured and valve V2 is closed.
It will be understood that the foregoing description is exemplary in nature. For example, the housing is shown as being metal, but could alternatively be formed of any other suitable material.