GB2166870A - Liquid level detection - Google Patents

Liquid level detection Download PDF

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Publication number
GB2166870A
GB2166870A GB08518802A GB8518802A GB2166870A GB 2166870 A GB2166870 A GB 2166870A GB 08518802 A GB08518802 A GB 08518802A GB 8518802 A GB8518802 A GB 8518802A GB 2166870 A GB2166870 A GB 2166870A
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United Kingdom
Prior art keywords
casing
fitting
probe
rod
electrically conductive
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Granted
Application number
GB08518802A
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GB2166870B (en
GB8518802D0 (en
Inventor
Dominic N Loiacono
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Individual
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Individual
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F23/00Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm
    • G01F23/22Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm by measuring physical variables, other than linear dimensions, pressure or weight, dependent on the level to be measured, e.g. by difference of heat transfer of steam or water
    • G01F23/24Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm by measuring physical variables, other than linear dimensions, pressure or weight, dependent on the level to be measured, e.g. by difference of heat transfer of steam or water by measuring variations of resistance of resistors due to contact with conductor fluid

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  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Fluid Mechanics (AREA)
  • General Physics & Mathematics (AREA)
  • Examining Or Testing Airtightness (AREA)

Abstract

A level detector includes an electrically conductive probe 32 located within a container 60 adjacent the bottom end thereof, close to a conventional discharge gate valve 62. Water which accumulates in the container 60 makes contact with the probe 32, and a circuit is completed between the probe 32 and the conductive wall of the container. This circuit includes a local alarm and/or remote alarm or indicating device. The probe consists of stainless steel wire twisted on itself. It is located in the centre of the container to minimise short circuits due to foreign matter. The detector is located in a drain in an air filled, pressurised fire protection system arranged in a low temperature environment. <IMAGE>

Description

SPECIFICATION Liquid detector for air pressure type fire sprinkler system BACKGROUND OF THE INVENTION This invention relates generally to an air pressure type fire sprinkler system and more particularly to a liquid detector located in the drum drips of such a system. Many fire protection systems now in use employ a plurality of thermally operated sprinkler heads connected to a piping network located in an elevated position in the space which is to be protected. In response to a local ambient temperature above a predetermined level, individual heads actuate and discharge water or other liquid in the immediate vicinity. When the system is filled with water, the response is rapid after one or more of the sprinkler heads are actuated by elevated temperature.
However, in low temperature environments such as in food warehouses, freezers, and the like, it is undesirable to maintain water in the piping network except during emergencies because stagnant water will freeze and cause blockage or actual physical damage to the system. To overcome this difficulty, systems are filled with pressurized gas instead of water. When a sprinkler head is actuated by elevated temperature and opens, gas pressure is lost and a pressure sensitive device triggers a water valve which then fills the system with water directed to the actuated sprinkler head.
Unfortunately, the practical problems of an actual system for a cold ambient are not entirely resolved by the air pressure type fire sprinkler system because some liquid and moisture is always present in the pipes and in gas which pressurizes the pipes. Under sufficiently cold ambient conditions, the moisture condenses within the piping system and, as liquid, is subject to freezing whereby the piping system is jeopardized. A ruptured pipe causes a loss of gas pressure, triggering the water valve and causing a discharge of water with a potential for physical damage of goods and property.
Commercial fire sprinkler systems of the dry air type, that is the air pressure type, are provided with low end drains known as drum drips. These drum drips are substantially vertically pipes connected to the overhead piping and positioned such that residual and condensate in the pipes will drain into the drum drips which are fitted with gate valves at their lower ends. Periodically, the gate valves are opened and accumulated water and condensate may be removed. Otherwise, the drum drips themselves are in danger of being ruptured if freezing occurs even though the water collected therein is a small quantity. Rupture of a drum drip in an air pressure system will produce a false fire indication and actuation of the water valve which in turn will result in flooding the space which is protected by the sprinkler system.Because the sources of the water in the drum drips are so variable, that is, condensation, and moisture in the gas supply, it is difficult to know when the drum drips need to be emptied.
What is needed is a detector for liquid in the drum drips which is actuated by the presence of accumulated water and thus provides an indication of this presence. Then the drum drip can be emptied before a dangerous condition is produced.
SUMMARY OF THE INVENTION Generally speaking, in accordance with the invention, a liquid detector is provided for application in the drum drips, that is, the low end drains in commercial fire sprinkler systems of the dry air type. The detector includes an electriclly conductive probe which is located within the drum drip adjacent the bottom end, close to the conventional discharge gate valve. When water accumulates in the drum drip to a level which makes contact with the probe, a circuit is completed between the probe and the conductive wall of the drum drip. This circuit includes a local and/or remote alarm or indicating device which is thereby actuated by the liquid in the drum drip.The probe passes through the wall of the drum drip by means of a hermetic seal and connector which is designed to prevent leakage of pressurizing gas and high pressure water which is used in testing the sprinkler system.
Accordingly, it is an object of this invention to provide and improved liquid detector for air pressure type fire sprinkler systems which responds to low accumulations of liquid as result from condensation in low ambient temperatures.
Another object of this invention is to provide an improved liquid detector for an air pressure type fire sprinkler system which is simple in construction, has no moving parts in contact with liquid and is easily installed and maintained.
A further object of this invention is to provide an improved liquid detector for air pressure type fire sprinkler systems which can provide both local and remote indications of undesirable water conditions in the system.
Still other objects and advantages of the invention will in part be obvious and will in part be apparent from the specification. The invention accordingly comprises the features of construction, combination of elements, and arrangement of parts which will be exemplified in the construction hereinafter set forth, and the scope of the invention will be indicated in the claims.
BRIEF DESCRIPTION OF THE DRA WINGS For a fuller understanding of the invention, reference is had to the following description taken in connection with the accompanying drawings, in which: Figure 1 illustrates a liquid detector in accordance with the invention mounted in a drum drip for an air pressure fire sprinkler system; Figure 2 is a sectional view of the liquid detector of Fig. 1 taken along the line 2-2 of Fig. 1; and Figure 3 is a semi-schematic circuit diagram illustrating an alarm system in connection with a liquid detector in accordance with the invention.
DESCRIPTION OF THE PREFERRED EMBODI MENTS With reference to the figures, the liquid detector 10 includes a fitting 12 made of rigid material, for example, a tough distortion resistant plastic such as a polycarbonate or metal such as brass, having a center portion 14 with flat surfaces thereon suitable for gripping with a wrench. An externally threaded nipple 16 extends from one end of the center portion 14 and an internally threaded stub 18 extends from the other end of the portion 14.
A smooth bore 20 in the 16 meets the partially threaded bore 22 within the center 14.
The diameter of the bore 22 is greater than the diameter of the bore 20 and concentric therewith to form an annular shoulder 26 at the intersection of the two bores 20, 22.
The liquid detector 10 also includes a probe 28, made of an electrically conducting rod 30 which is mechanically and electrically connected to a conductive wire 32 formed of malleable material. As best illustrated in Fig.
2, the conductive rod 30 includes a circular disk 34 which is fixedly connected to the rod 30 and, as explained more fully hereinafter, is located in the assembled detector within a cylindrical chamber 24 within the fitting 12.
The disk 34 may be held in position on the rod 30 in any suitable manner, for example, brazing or welding to the rod 30 may be appropriate.
Bushings 36, 38, fabricated of electrically non-conducting material surround the rod 30 on both sides of the disk 34. The bushings are hollow cylinders having flanges 40, 42 of a diameter greater than disk 34.
The opposed faces of the flanges 40, 42 have recesses 44, 46 respectively wherein the disk 34 is cradled in the assembled condition as shown in Fig. 2. The bushing 36, 38 are fabricated from a material having a degree of resiliency, for example of teflon (R.T.M), nylon or polyvinyl plastic.
An externally threaded holding nut 48 engages the internal threads 50 of the stub 18.
Flat surfaces 52 are provided on the holding nut 48 to allow for engagement with a wrench.
To assemble the liquid detector 10, the assembly of the rod 30 and wire 32 is slipped through the central opening of the bushing 38 while the wire 32 is a straight extension of the rod 30. Then the bushing 38 with the rod 30 seated therein is inserted into the fitting 12 with the wire 32 entering through the opening in the stub 18. The bushing 38 is inserted until the flange 42 seats against the annular shoulder 26 within the center portion 14 of the fitting 12. Then, the bushing 36 is slipped over the back end of the rod 30 with the flange 40 facing the disk 34.
Finally, the net 48 is threaded into the stub 18 making engagement with the internal threads 50. The nut 48 is threaded until the flange 42 is firmly pressed against the shoulder 26 and the disk 34 is compressed between the bottom surfaces of the recesses 44, 46. The resiliency of the material from which the bushings 36, 38 are fabricated causes a liquid and gas tight seal to be formed between the bottom recess surfaces and the side surfaces of the disk 34. It should be noted that the recesses 44, 46 are dimensioned relative to the thickness of the disk 34 such that a small gap 54 exists between the flanges 40, 42. It should be appreciated that other assembly sequences wil also be appropriate.
Thus, any leakage along the interface 56 between the bushing 38 and rod 30 is blocked by the seal between the flat surface of the recess 46 and side surface of the disk 34. Also any potential leakage along the interface 58 between the nipple 16 and the bushing 38 is blocked by the seal of the flange 42 against the shoulder surface 26. Thereby a seal against escape of liquid and gas is effected by tightening of the nut 48 in the stub 18. Electrical isolation between the rod 30, wire 32 and fitting 12 is also provided by the bushings 36, 38. Water pressure at 500 psi is used in testing sprinkler systems. The seal in accordance with the invention has performed satisfactoriiy under such conditions.
As illustrated in Fig. 1, the wire 32 is twisted to provide a greater exposed surface area and bent so that when inserted in a vertical casing 60 of a drum drip, the main portion of the wire 32 is also vertical. The rod 30 is provided with threads 61 at the remote exterior end, which are useful for fastening an electrical conductor thereto.
The drum drip including the casing 60 is conventional and accordingly requires little detailed description here. The lower end of the casing 60 is terminated in a gate valve 62 which is generally manually operated although powered valves may also be used. The liquid detector 10 is connected to the casing 60 by threading the external thread of the nipple 16 into a threaded hole 64 in the casing wall in a conventional manner to provide a leak tight connection. The rod 30 and nipple 16 are dimensioned such that when the center portion 14 of the fitting 12 abuts the casing 60, the vertical portion of the wire 32 is approxi mately centered within the casing. It should be noted that the entire piping system may be vented with high velocity water. Accordingly, any foreign matter in the system flows through the casing at high velocity.Therefore, centering of the wire 32 aids in preventing a bridge of foreign material between the wire 32 and casing 60 and also minimizes the danger of damage to the detector from high velocity water and foreign matter passing through the casing.
Fig. 3 illustrates the liquid detector 10 in circuit with a power supply 66, a remote alarm device 68, a remote alarm device 70 and a relay switch 72.
When there is an open gap 74 between the wire 32 and the casing 60, the circuit to the local alarm 70 and coil of the relay switch 72 is open and the contacts of the switch 72 are open. Thus, the local alarm device 70 and the remote alarm device 68 are inoperative. When liquid in the casing 60 bridges the gap 74 between the wire 32 and casing 60, an electrical circuit is completed which places the relay coil and local alarm device 70 in parallel across the power source 66 in series with the liquid resistance between the wire 32 and the casing 60. Thus, the coil and local alarm receive the full voltage of the power source 66 less any voltage drop across the gap 74. Current from the power source 66 flows through the relay switch coil closing the switch contacts and actuating the remote alarm device 68.The remote alarm device 68 is independently powered (not shown) and can be located at a considerable distance from the liquid detector 10 and casing 60.
The use of the single wire 32 in conjunction with the wall of the drum drip casing 60, as stated, reduces the possibilities that the gap 74 will be bridged by foreign matter that is debris collecting in the drum drip. Thus the detector in accordance with the invention, by using the casing wall as an electrode connected to the power source 66 by a conductor 78, is superior to probes having two closely spaced elctrodes to sense the presence of liquid within the casing 60. The foreign matter, which is very frequently found in such sprinkler systems, includes iron chips, teflon bits and pieces, etc. The undesired water in the drum drips tends to be gloppy in nature, that is somewhat viscous, and during system tests readily bridges the gap between probe electrodes which are close together.
Satisfactory operation of a system has been obtained with a 1 2 volt battery when the casing is of iron and the wire 32 is of twisted stainless steel. Operation of the system on low voltage, for example 12 volts, as indicated above is desirable and entirely feasible to reduce electrical hazards.
Operation of the alarm devices indicates that liquid is present in the drum drips and it is necessary that the drum drips be evacuated of liquid by opening of the gate valve 62. It should be understood that the casing need not be of metal so long as a conductive portion is included in or on the casing inner surface in opposition to the wire 32. Also a round disk 34 has been described. However, a flange or plate of any shape may by utilized so long as the flange surrounds and is sealed at its connection to the rod 30.
It will thus be seen that the objects set forth above, among those made apparent from the preceeding description, are efficiently attained and, since certain changes may be made in the above construction without departing from the spirit and scope of the invention, it is intended that all matter contained in the above description or shown in the accompanying drawings shall be interpreted as illustrative and not in a limiting sense.
It is also to be understood that the following claims are intended to cover all of the generic and specific features of the invention herein described, and all statements of the scope of the invention which, as a matter of ianguage, might be said to fall therebetween.

Claims (17)

1. A liquid detector system for air pressure type fire sprinkler systems having hollow downwardly extending drum drips, said drum drips including electrically conductive material at least in a portion of the hollow drum casing thereof, and valves at the lower ends of said drum drips, comprising: a fitting for connection to the hollow casing of said drum drip, said connection being leak tight to fluids, said connected fitting communicating with the interior of said casing through an opening in said casing;; an electrically conductive probe passing through said fitting and for passing through said casing opening and being in part within said hollow casing, said probe being at least in part exposed in said casing, said exposed electrically conductive portion of said probe within said casing being spaced from said electrically conductive material included in said casing, said spacing providing a gap therebetween; electrical circuit means connected between said probe and said electrically conductive material included in said casing, said circuit means being adapted to indicate whether or not said gap between said conductive casing portion and said exposed probe portion is electrically conductive, said gap being conductive electrically when bridged with electrically conductive material within said casing;; means for sealing said opening through said fitting with said probe passing therethrough against fluid leakage, and for electrically isolating said probe from said electrically conductive material in said casing.
2. A liquid detector for an air pressure type sprinkler system having hollow down wardiy extending drum drips including electrically conductive material at least in a portion of the drum drip casing, and valves at the respective lower ends of said drum drips, comprising: a probe for positioning within said casing near the lower extremity thereof and having an electrically conductive portion spaced away from an electrically conductive portion of said casing; electrical circuit means for connection between said probe and said electrically conductive material included in said casing, said circuit means being adapted to indicate whether or not said gap between said conductive casing portion and said exposed probe portion is electrically conductive, said gap being conductive if bridged with conductive material within said casing;; means for sealing the interface between said probe and c3sing against fluid leakage and electrical conduction.
3. A liqu d detector system as claimed in claim 1, wherein said casing is metal and electrically conductive.
4. A liquid detector system as claimed in claim 1, wherein said probe is of extended length, electrically conductive and within said casing exposed along its entire length.
5. A liquid detector system as claimed in claim 4, wherein said probe includes an exposed conductive wire within said casing.
6. A liquid detector system as claimed in claim 5, wherein said wire is twisted on itself to increase surface area.
7. A liquid detector system as claimed in claim 6, wherein said wire is stainless steel.
8. A liquid detector system as claimed in claim 3, wherein said probe is of extended length, electrically conductive and within said casing exposed along its entire length.
9. A liquid detector system as claimed in claim 8, wherein said probe includes an exposed conductive wire within said casing.
10. A liquid detector system as claimed in claim 9, wherein said wire is twisted on itself to increase surface area.
11. A liquid detector system as claimed in claim 6, wherein at least a portion of said wire in said casing is oriented parallel to the longitudinal axis of the said casing.
12. A liquid detector system as claimed in claim 1, wherein said probe includes a conductive wire of extended length, said wire being at least in part exposed within said an electrically conductive rod connected at one end to said wire, said rod passing through said fitting and being adapted at the other end for connection to an electrical circuit; flange means fixed to said rod, said flange means being at a position within said fitting.
13. A liquid detector as claimed in claim 12 and wherein said means for sealing and isolation includes; a first non-conductive bushing surrounding a portion of said rod and abutting one side of said flange means, said first bushing making resilient contact with said flange means and electrically isolating said rod from said fitting, said first bushing extending from said flange towards said other end of said rod; a second non-conductive bushing surrounding a portion of said rod and abutting the other side of said flange means, said second bushing making resilient contact with said flange means and isolating said rod electrically from said fitting, said second bushing extending from said flange means toward said wire; and means for compressing said flange means between said abutting bushings, a seal between flange means and bushings being formed by compression of said resilient bushing, and for compressing at least one of said bushings against an interior surface of said fitting, a seal being formed between said fitting and said at least one bushing.
14. A liquid detector as claimed in claim 13, wherein said means for compressing is external of said casing and releasably engaging an external portion of said fitting, said probe and said bushings being removable from said fitting when said means for compressing is released from said fitting.
1 5. A liquid detector probe for air pressure type fire sprinkler systems having hollow downwardly extending drum drips, said drum drips including electrically conductive material at least in a portion of the hollow drum casing thereof, and valves at the lower ends of said drum drips, comprising:: a fitting for connection to the hollow casing of said drum drip, said connection being leak tight to fluids, said connected fitting communicating with the interior of said casing through an opening in said casing; an electrically conductive wire of extended length; an electrically conductive rod connection at one end to said wire, said rod passing through said fitting and being adapted at the other end for connection to an electrical circuit; a disk fixed to said rod and concentric therewith, said disk being at a position within said fitting; means for sealing said opening through said fitting with said rod passing there through against fluid leakage, and for electrically isolating said rod and said wire from said fitting.
16. A probe is claimed in claim 15 wherein said means for sealing and isolating said rod includes a first non-conductive bushing surrounding a portion of said rod and abutting one side of said disk, said first bushing making resilient contact with said disk and electrically isolating said rod from said fitting, said first bushing extending from said disk towards the other end of said rods; a second non-conductive bushing surrounding a portion of said rod and abutting the other side of said disk, said second bushing making resilient contact with said disk and isolating said rod electrically from said fitting, said second bushing extending from said disk towards said wire; ; means for compressing said disk between said butting bushing, a seal between disk and bushing being formed by compression of said resilient bushings, and for compressing at least one of said bushings against an interior surface of said fitting, a seal being formed between said fitting and said at least one bushing.
17. A liquid detector as claimed in claim 13, where said flange means is a disk.
GB8518802A 1984-07-30 1985-07-25 Liquid detector for air pressure type fire sprinkler system Expired GB2166870B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US63558184A 1984-07-30 1984-07-30

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GB8518802D0 GB8518802D0 (en) 1985-08-29
GB2166870A true GB2166870A (en) 1986-05-14
GB2166870B GB2166870B (en) 1989-07-19

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GB8518802A Expired GB2166870B (en) 1984-07-30 1985-07-25 Liquid detector for air pressure type fire sprinkler system

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2231961A (en) * 1989-05-18 1990-11-28 Peng Wen Bing Liquid level sensing circuit
EP0449112A1 (en) * 1990-03-26 1991-10-02 PIETRO FOGACCI S.r.l. Liquid level sensing device for steam boilers
EP2184529A2 (en) * 2008-11-06 2010-05-12 Telematics Wireless Ltd. Retrofit apparatus and method for gas line moisture detection and removal

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB831544A (en) * 1957-03-29 1960-03-30 Tyer & Co Ltd An improved liquid level controller and/or indicator
GB1266537A (en) * 1968-06-11 1972-03-08
GB1488199A (en) * 1976-08-27 1977-10-05 Pynford Ltd Drainage system
GB1581327A (en) * 1975-12-16 1980-12-10 Thomas Electronics Ltd Detection of levels in conductive oils

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB831544A (en) * 1957-03-29 1960-03-30 Tyer & Co Ltd An improved liquid level controller and/or indicator
GB1266537A (en) * 1968-06-11 1972-03-08
GB1581327A (en) * 1975-12-16 1980-12-10 Thomas Electronics Ltd Detection of levels in conductive oils
GB1488199A (en) * 1976-08-27 1977-10-05 Pynford Ltd Drainage system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2231961A (en) * 1989-05-18 1990-11-28 Peng Wen Bing Liquid level sensing circuit
EP0449112A1 (en) * 1990-03-26 1991-10-02 PIETRO FOGACCI S.r.l. Liquid level sensing device for steam boilers
EP2184529A2 (en) * 2008-11-06 2010-05-12 Telematics Wireless Ltd. Retrofit apparatus and method for gas line moisture detection and removal
EP2184529A3 (en) * 2008-11-06 2012-02-08 Telematics Wireless Ltd. Retrofit apparatus and method for gas line moisture detection and removal

Also Published As

Publication number Publication date
GB2166870B (en) 1989-07-19
GB8518802D0 (en) 1985-08-29

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