Claims
- 1. A method of retrieving a liquid sample, comprising:
providing a portable lysimeter including a semi-permeable member and a chamber in fluid communication with the semi-permeable member; providing a hole at an earth site from which a liquid sample is desired; applying a vacuum pressure to the chamber; lowering the portable lysimeter into the hole; obtaining a liquid sample in the chamber; and retrieving the lysimeter from the hole; wherein it is not necessary to backfill the hole.
- 2. A method of retrieving a liquid sample in accordance with claim 1 wherein the vacuum pressure is applied prior to the lowering.
- 3. A method of retrieving a liquid sample in accordance with claim 1 and further comprising wetting the semi-permeable membrane prior to the lowering so as to maintain the vacuum pressure of the chamber during the lowering.
- 4. A method of retrieving a liquid sample in accordance with claim 1 wherein the semi-permeable membrane is located below the chamber.
- 5. A portable lysimeter, comprising:
a tube having an inner surface and an outer surface, a first end, and a second end, and defining a chamber; a semi-permeable member bonded to the first end of the tube; a plug sealing the second end of the tube, the plug having an aperture therethrough in fluid communication with the chamber; a vacuum line in fluid communication with the aperture and in fluid communication with the chamber via the aperture; a valve in the vacuum line; and line connection structure attached to the lysimeter wherein the lysimeter may be retrieved from the sampling location.
- 6. A portable lysimeter in accordance with claim 5 wherein the plug has a second aperture therethrough, the lysimeter further comprising a vacuum gauge in fluid communication with the second aperture.
- 7. A portable lysimeter in accordance with claim 5 wherein the plug comprises a stopper.
- 8. A portable lysimeter in accordance with claim 5 wherein the semi-permeable member comprises a porous member.
- 9. A portable lysimeter in accordance with claim 5 wherein the semi-permeable member comprises porous PVC.
- 10. A portable lysimeter in accordance with claim 5 wherein the semi-permeable member comprises porous metal.
- 11. A portable lysimeter in accordance with claim 5 wherein the semi-permeable member comprises porous glass.
- 12. A portable lysimeter in accordance with claim 5 wherein the semi-permeable member comprises porous ceramic.
- 13. A portable lysimeter in accordance with claim 5 wherein the semi-permeable member comprises porous plastic.
- 14. A portable lysimeter in accordance with claim 5 wherein the line connection structure comprises an eye bolt.
- 15. A lysimeter comprising:
a collection vessel including a cavity defining a collection chamber, a first end including a porous member, and a second, threaded, end; and a connector portion including a first threaded coupling selectively threaded to the second, threaded, end and having a second coupling including a check valve connector including an integral check valve, the check valve connector having a quick-disconnect connector portion for use with a quick-disconnect connector coupled to a pump.
- 16. A lysimeter in accordance with claim 15 wherein the second, threaded, end comprises external threads.
- 17. A lysimeter in accordance with claim 15 wherein the first threaded coupling comprises internal threads.
- 18. A lysimeter in accordance with claim 15 wherein the porous member comprises PVC.
- 19. A lysimeter in accordance with claim 15 wherein the porous member comprises glass.
- 20. A lysimeter in accordance with claim 15 wherein the porous member comprises ceramic.
- 21. A lysimeter in accordance with claim 15 wherein the porous member comprises a ceramic cup.
- 22. A lysimeter system, comprising:
a portable lysimeter including:
a collection vessel including a tubular portion having an inner surface and an outer surface having a diameter, the tubular portion having first and second ends, the collection vessel further including a porous member at the first end of the tubular portion, a chamber being defined by the inner surface and porous member, the collection vessel including a fitting portion extending from the second end of the tubular portion, having an outer threaded cylindrical surface having a diameter less than the diameter of the tubular portion, and having an aperture therethrough in fluid communication with the chamber; a connector portion including a first coupling including a first cylindrical portion having a first end having an inner threaded surface selectively threadable onto outer threaded surface of the fitting portion of the collection vessel and having a second end, the first coupling having an aperture extending from the first end to the second end, the connector portion further including a plate secured to the second end of the first coupling, the plate having a threaded aperture therethrough in fluid communication with the first end of the first coupling, the connector portion further including a second coupling secured to the side of the plate opposite of the first coupling and including a second cylindrical portion and having an inner cylindrical surface, the inner cylindrical surface having an inner diameter and defining a receptacle, the second coupling further including a check valve connector including an integral check valve, the check valve connector having an outer cylindrical surface having a diameter less than the diameter of the inner cylindrical surface, the check valve connector having a threaded portion threadably mounted in the threaded aperture of the plate and having a quick-disconnect connector portion extending from the plate into the receptacle; and a pressure measurement device including a quick-disconnect connector portion being in fluid communication with the pressure measurement device and further being selectably matable with the quick-disconnect connector portion in the receptacle, and including a vacuum gauge in fluid communication with the pressure measurement device, the pressure measurement device further including a barbed fitting in fluid communication with the pressure measurement device, for selective coupling with a pump, wherein fluid communication between the pump and the chamber may be selectably established via the connector portion and pressure measurement device.
- 23. A lysimeter system in accordance with claim 22 wherein the second cylindrical portion of the portable lysimeter has an aperture therethrough for use with a line for retrieving the portable lysimeter.
- 24. A lysimeter system in accordance with claim 22 and further comprising a loop supported from the lysimeter for use with a line for retrieving the portable lysimeter.
- 25. A lysimeter system in accordance with claim 22 wherein the porous member is formed from a material selected from the group consisting of PVC, plastic, ceramic, glass and metal.
- 26. A lysimeter system in accordance with claim 22 wherein the porous member comprises a semi-permeable member.
- 27. A lysimeter system in accordance with claim 22 wherein the first cylindrical portion has an outer diameter, wherein the second cylindrical portion has an outer diameter, and wherein the outer diameter of the second cylindrical portion is the same as the outer diameter of the first cylindrical portion.
- 28. A lysimeter system in accordance with claim 22 wherein the diameter of the tubular portion is the same as the outer diameter of the first cylindrical portion.
- 29. A lysimeter system in accordance with claim 22 and further comprising a hand pump selectively coupled to the barbed fitting.
- 30. A lysimeter, comprising:
a hollow vessel having first and second closed ends and defining a chamber, the first and second ends having respective apertures therethrough; a fill conduit having first and second ends and extending into the chamber from the aperture through the second end of the hollow vessel such that the second end of the fill conduit is between the first and second ends of the vessel; and a semi-permeable member mounted to the second end of the vessel and in fluid communication with the first end of the fill conduit.
- 31. A lysimeter in accordance with claim 30 and further comprising a check valve in the fill conduit.
- 32. A lysimeter in accordance with claim 30, and further comprising a sample extraction tube in fluid communication with the aperture through the first end of the vessel and extending into the chamber from the first end of the vessel.
- 33. A lysimeter in accordance with claim 32, and further comprising a hose exterior of the chamber and in fluid communication with the aperture through the first end of the vessel.
- 34. A lysimeter in accordance with claim 30, wherein the semi-permeable member comprises porous PVC.
- 35. A deep lysimeter, comprising:
a body including an inner surface having a diameter, a first end, and a second end, and defining a chamber; a plate having a first surface, and a second surface secured to the second end of the body and having an aperture therethrough; a fill tube including an outer surface having a diameter, a first end, and a second end, the diameter of the outer surface being less than the diameter of the inner surface of the body, the first end of the fill tube being in fluid communication with the chamber via the plate aperture, the fill tube extending into the chamber such that the second end of the fill tube is between the plate and the first end of the body; a spacer having a first surface, and a second surface secured to the first surface of the plate, the spacer having an aperture therethrough; a semi-permeable member mounted to the first surface of the spacer, wherein a cavity is formed bounded by the semi-permeable member, spacer, and plate; a screen supported within the cavity to filter liquid entering the chamber; a cap sealing the first end of the body, the cap having an aperture in fluid communication with the chamber; and a line connection structure secured to the cap whereby the lysimeter may be retrieved from the sampling location.
- 36. A deep lysimeter in accordance with claim 35 wherein the fill tube comprises a check valve.
- 37. A deep lysimeter in accordance with claim 35, and further comprising a fitting received in the aperture in the cap and in fluid communication with the chamber.
- 38. A deep lysimeter in accordance with claim 37, the cap further having a second aperture therethrough, the lysimeter further comprising a second fitting respectively received in the second aperture in the cap, and a sample extraction tube in fluid communication with the second fitting and extending into the chamber from the second fitting.
- 39. A deep lysimeter in accordance with claim 35 wherein the semi-permeable member comprises a cup.
- 40. A lysimeter, comprising:
a body structure; an inflatable bladder supported by the body; a gas conduit in fluid communication with the bladder; a semi-permeable member assembly at least partially movable in response to inflation of the bladder; a sample conduit in fluid communication with the semi-permeable member assembly; and a reservoir supported by the body, and being in fluid communication with the sample conduit.
- 41. A lysimeter in accordance with claim 40, the semi-permeable member assembly further comprising a porous front, secured to a backing, and forming a cavity between the front and the backing, and the backing further including an aperture therethrough and having the sample conduit in fluid communication with the cavity via the aperture.
- 42. A portable lysimeter, comprising:
a tube having an outer surface and an inner surface, a first end, and a second end and defining a body, with an aperture therethrough; an inflatable bladder having first and second ends, and an inner tubular surface slidingly telescopically received over the outside surface of the body, the the aperture being between the first and second ends of the bladder, such that the bladder covers the aperture, and the bladder being inflatable via the aperture; a first band fitted over the first end of the bladder to secure the first end of the bladder to the body and form a gas-tight seal between the first end of the bladder and the body; a second band fitted over the second end of the bladder to secure the second end of the bladder to the body and form a gas-tight seal between the second end of the bladder and the body; a gas line in fluid communication with the aperture, through which gas may by selectably introduced to inflate the bladder; at least one semi-permeable member assemblies, each having a front side, and a back side, located about the outside of the bladder and having the front side facing away from the body; a belt to secure each semi-permeable member assembly to the body; a reservoir to collect the sample liquid; a line suspending the reservoir from the body; a sample line fluidly coupling each semi-permeable member assembly and the reservoir, whereby fluid communication is established between each semi-permeable member assembly and the reservoir; and a retrieval line selectably secured to the body using which the lysimeter may be retrieved from the sampling location.
- 43. A portable lysimeter in accordance with claim 42 wherein the bands comprise hose clamps.
- 44. A portable lysimeter in accordance with claim 42 wherein the belt comprises a hose clamp.
- 45. A portable lysimeter in accordance with claim 42 wherein each semi-permeable member assembly comprises a flexible semi-permeable member defining the front side, and a backing secured to the front side and defining the back side such that a cavity is present between the front and back sides, the semi-permeable member assembly further having scrim supported in the cavity to preserve the liquid, the backing further including an aperture therethrough, the sample line being in fluid communication with the cavity via the aperture through the backing.
- 46. A portable lysimeter in accordance with claim 42 wherein the reservoir is an enclosed vessel having a wall, and a top, and a bottom, and defining a chamber.
- 47. A portable lysimeter in accordance with claim 46 wherein the top has an aperture therethrough, the portable lysimeter further including a valve in fluid communication with the chamber via the aperture through the top of the reservoir.
- 48. A portable lysimeter in accordance with claim 47 wherein the bottom has an aperture therethrough and further having a valve in fluid communication with the chamber via the aperture through the bottom of the reservoir.
- 49. A liquid sampling process for collecting a sample of a desired liquid found in an earth cavity, in which the earth cavity has known cross-sectional wall dimensions, comprising the steps of:
providing a portable lysimeter having an probe with cross-sectional dimensions sufficiently less than the known cross-sectional dimensions of the earth cavity to enable the portable lysimeter to be lowered and raised in the earth cavity without hindrance; providing the probe with a bottom opening; providing the portable lysimeter with a semi-pervious membrane enclosing the bottom opening of the probe having a solid filter in which the solid filter is air impervious when wetted with a selected liquid, but is pervious to the desired liquid when the desired liquid engages the solid filter; attaching the portable lysimeter to a lowering/lifting line; lowering the portable lysimeter to a desired elevation within the earth cavity while supporting the lysimeter in the earth cavity by the lowering/lifting line for enabling the desired liquid to engage the solid filter; applying a vacuum pressure of a sufficient magnitude for causing the a sample of the desired liquid to pass through the wetted solid filter and into the probe when the desired liquid engages the solid filter; and after the sample of the desired liquid passes into the probe, raising the portable lysimeter with the lowering/raising line from the earth cavity.
- 50. A liquid sampling apparatus for collecting a sample of a liquid found in an earth cavity, in which the earth cavity has known cross-sectional dimensions, comprising:
a portable lysimeter probe having cross-sectional dimensions less than the known cross-sectional dimensions of the earth cavity; the lysimeter probe having an open substantially planar bottom wall; a substantially planar semi-permeable member affixed to the probe enclosing the bottom wall to provide an air impervious enclosure when the solid filter is wetted with a selected liquid and provide a liquid pervious enclosure to enable the desired liquid to pass through the member into the interior probe when the desired liquid engages the member; a lowering/raising line attached to the probe for lowering the probe into the earth cavity and supporting the probe at a desired level to enable the desired liquid to engage the solid filter and for raising the probe from the earth cavity after a sample of the desired liquid has been collected; and a vacuum generator attachable to the probe for creating a vacuum of sufficient magnitude within the probe to draw a sample of the desired liquid through the filter and into the probe when the desired liquid engages the solid filter.
Government Interests
[0001] The United States Government has rights in this invention disclosed under contract number DE-AC07-99ID13233 between the U.S. Department of Energy and Bechtel BWXT Idaho, LLC.