WO1980000175A1 - Method and apparatus for siphoning water from a ponding area on a flat roof - Google Patents
Method and apparatus for siphoning water from a ponding area on a flat roof Download PDFInfo
- Publication number
- WO1980000175A1 WO1980000175A1 PCT/US1978/000214 US7800214W WO8000175A1 WO 1980000175 A1 WO1980000175 A1 WO 1980000175A1 US 7800214 W US7800214 W US 7800214W WO 8000175 A1 WO8000175 A1 WO 8000175A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- water
- run
- priming chamber
- chamber
- priming
- Prior art date
Links
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 title claims abstract description 269
- 238000000034 method Methods 0.000 title claims abstract description 14
- 230000037452 priming Effects 0.000 claims abstract description 164
- 238000005192 partition Methods 0.000 claims description 22
- 230000009471 action Effects 0.000 claims description 17
- 210000002445 nipple Anatomy 0.000 claims description 16
- 238000006073 displacement reaction Methods 0.000 claims description 13
- 230000002093 peripheral effect Effects 0.000 claims description 7
- 230000007423 decrease Effects 0.000 claims description 4
- 230000004044 response Effects 0.000 claims description 3
- 238000004891 communication Methods 0.000 claims description 2
- 230000000630 rising effect Effects 0.000 claims description 2
- WLWIMKWZMGJRBS-UHFFFAOYSA-N primin Chemical compound CCCCCC1=CC(=O)C=C(OC)C1=O WLWIMKWZMGJRBS-UHFFFAOYSA-N 0.000 claims 2
- 238000007599 discharging Methods 0.000 claims 1
- 238000010276 construction Methods 0.000 description 16
- 230000000694 effects Effects 0.000 description 6
- 239000007788 liquid Substances 0.000 description 4
- 238000007789 sealing Methods 0.000 description 4
- 150000001768 cations Chemical class 0.000 description 2
- 239000004568 cement Substances 0.000 description 2
- 238000007667 floating Methods 0.000 description 2
- 238000007710 freezing Methods 0.000 description 2
- 230000008014 freezing Effects 0.000 description 2
- 239000000463 material Substances 0.000 description 2
- 238000005086 pumping Methods 0.000 description 2
- 230000008646 thermal stress Effects 0.000 description 2
- KKEBXNMGHUCPEZ-UHFFFAOYSA-N 4-phenyl-1-(2-sulfanylethyl)imidazolidin-2-one Chemical compound N1C(=O)N(CCS)CC1C1=CC=CC=C1 KKEBXNMGHUCPEZ-UHFFFAOYSA-N 0.000 description 1
- 230000008901 benefit Effects 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 230000008602 contraction Effects 0.000 description 1
- 238000001816 cooling Methods 0.000 description 1
- 238000005336 cracking Methods 0.000 description 1
- 239000012530 fluid Substances 0.000 description 1
- 230000000977 initiatory effect Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000002028 premature Effects 0.000 description 1
- 230000000717 retained effect Effects 0.000 description 1
- 230000035882 stress Effects 0.000 description 1
Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04D—ROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
- E04D13/00—Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
- E04D13/04—Roof drainage; Drainage fittings in flat roofs, balconies or the like
- E04D13/08—Down pipes; Special clamping means therefor
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04D—ROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
- E04D13/00—Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
- E04D13/04—Roof drainage; Drainage fittings in flat roofs, balconies or the like
- E04D13/0404—Drainage on the roof surface
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04F—PUMPING OF FLUID BY DIRECT CONTACT OF ANOTHER FLUID OR BY USING INERTIA OF FLUID TO BE PUMPED; SIPHONS
- F04F10/00—Siphons
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04D—ROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
- E04D13/00—Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
- E04D13/04—Roof drainage; Drainage fittings in flat roofs, balconies or the like
- E04D13/08—Down pipes; Special clamping means therefor
- E04D2013/0893—Down pipes; Special clamping means therefor incorporated in building structure
Definitions
- This invention relates to the handling of water on flat roofs, and more particularly to an improved method and device for siphoning water from a ponding area on a flat roof.
- the downspout s provided in a position of roof support, either at the exterior wall, as in the case of the gutter construction, or at * the column in the case of the interior downspout construction.
- any tendency for flat roof constructions to settle or sag almost invariably results in the creation of areas on the flat roof spaced from the supports and down- spouts which are lower than the areas where the roo is supported. These lower areas become pond ⁇ ing areas when a rain condition commences. Once these ponding areas are established, they tend to increase and ' have a deletrious snowballing effect on the roof.
- the weight of the ponding water is added to the roof at a position where the greatest sag occurs.
- the additional weight causes additional sag, and additional sag increases the size of the ponding areas, etc.
- the existence of standing water on a roof induces thermal stresses which can cause blistering, cracking and leaking which leads to premature roof failure. The reason for this thermal stress is that, after a rain when the sun is again directly shining on the roof, the v areas of the roof surrounding the ponding area which are not in contact with the ponding water become quite hot, while the adjacent areas of the roof beneath the periperal areas of the standing water are in an evaporative cooling condition.
- An object of the present invention is to ; fulfill the above-described need.
- this objective is obtained by a method in which a portion of the run-off water when flowing in the run-off system is utilized to prime a siphon device and the water from the ponding area is siphoned therefrom with the siphon device so primed.
- siphon hose means having an inlet end mounted in water sucking relation to the ponding area and an opposite end disposed in operative relation with the priming chamber such that negative pressure conditions within the priming chamber are com ⁇ municated therewith.
- the actual priming is accom ⁇ plished by lowering the water level in the priming chamber by displacing the water there ⁇ from into the run-off system to thereby establish a negative pressure within the priming chamber which is communicated with the siphon hose means causing water from the ponding area to flow past the inlet end through the siphon hose means.
- the establishment of a pre ⁇ determined water level within the priming chamber is accomplished by providing the priming chamber " with a water outlet opening in its lower portion of a flow capacity less than the flow capacity of a water inlet opening in the upper end there ⁇ of so that when the flow of water in the run-off system increases as a result of the commencement of a rain condition or the like the quantity of water available within the run-off system to be directed into the priming chamber through the inlet opening is greater than the quantity of water which can pass from the chamber through the outlet opening and when the flow of.
- water in the run-off system decreases as a result of the cessation o£ the rain condition or the like the quantity of water flowing in the run-off system available to be directed into the priming chamber through the inlet opening i_ less than the quantity of water which can flow out of the priming chamber into the outlet opening.
- the establish ⁇ ment of the predetermined water level within the priming chamber and the lowering thereof are accom- plished automatically in response to the flow conditions within the run-off system.
- the lowering of the water level within the priming chamber occurs as a result of the substantial lessening of the flow in the water run-off system which in turn is a result of the cessation of the rain condition or the like.
- the actual operation of the siphon device to remove water from the ponding area will take place generally at a time following the cessation of the rain condition which, of course, is all that is required to maintain- the ponding areas clear of standing water.
- the siphon device is provided with an inlet opening communicating with its upper end which is controlled by a float valve and the flow of water out of the priming chamber is accomplished by means of an in ⁇ verted U-shaped tube including a first tubular leg portion having a lower end communicating with the lower portion of the priming chamber, a tubular bight portion disposed in the upper portion of the priming chamber and a second tubular leg portion extending downwardly therefrom outwardly of the priming chamber and having an open lower end dis ⁇ charging into the run-off system at a position below the open lower end of the first tubular -leg portion.
- commencement of the flow of water in the run-off system as a result of the commencement of a rain condition or the like initially provides for a portion thereof sufficient to raise the water level within the priming chamber to the vertical level of the tubular bight portion at which time the downward flow of water through the second tubular leg portion establishes a flow of water from the priming chamber to the water run-off system through the inverted U-shaped discharge tube.
- the nega ⁇ tive pressure. initially created serves to close the inlet float valve so that the negative pressure created by subsequent water displacement from the priming chamber is communicated to the siphon hose means.
- a further object of the present invention is the provision of a siphon device constructed in accordance with the principles enunciated above which is operable to carry out the method of the present invention as aforesaid.
- the invention also extends to the combination of a device of this type with the flat roof and its water run ⁇ off system installed in operative relationship with respect to one another.
- Figure 1 is a vertical sectional view of a flat roof construction having a side -wall gutter and downspout water run-off system showing one embodiment of a device constructed in accordance with the principles of the present invention in- stalled therein;
- Figure 2 is a view similar to Figure 1 of a flat roof construction having a run-off system provided with a central downspout showing the device of Figure 1 mounted therein;
- Figure 3 is a front elevational view of the device of Figures 1 and 2 with a portion of the siphon hose cut off;
- Figure 4 is a sectional view taken along the line 4-4 of Figure 3;
- Figure 5 is a top plan view of the device shown in Figure 3;
- Figure 6 is a front. elevational view of another embodiment of a device constructed in accordance with the principles, of the present invention.
- Figure 7 is a sectional view taken along the line 7-7 of Figure 6;
- Figure 8 is a sectional view taken along the line 8-8 of Figure 7.
- the device 10 includes a tubular housing formed of a central elongated tube 12 having an upper tubular sleeve 14. fixed to the upper end thereof and a lower tubular sleeve 16 fixed to the lower end thereof.
- the upper sleeve 14 extends above the upper end of the central tube 12 and has a partition wall 18 fixedly secured therein in exterior peripheral sealing ⁇ engagement with the central interior periphery of the sleeve and in end edge sealing engagement with the upper end of the central tube 12.
- the lower sleeve 16 is interiorly peripherally secured to the exterior periphery of the central tube 12 and includes a lower end portion extending below the lower edge of the central tube 12. 5 Mounted within the lower end of the lower sleeve 16 is an end closure member 20. As shown, the end closure member 20 has an exterior threaded connection with the interior of the lower end of the sleeve 16 and provides an interior engagement
- the inner periphery of the central tube 12 between the upper partition wall 18 and the lower closure member 20 defines a priming chamber 22.
- JL5 sleeve 14 extending above the upper partition wall 18 defines with the upper surface of the latter a run-off water receiving chamber 24 hav ⁇ ing an open upper end.
- Inlet opening means is provided between the water receiving chamber 24
- the in ⁇ let opening means is preferably in the form of an inlet tube 26 which is exteriorly peripherally secured in sealing relation with the upper parti ⁇ tion wall 18.
- the inlet tube includes an upper
- inlet openings 28 in the peripheral wall there ⁇ of. It will be noted that some of the openings extend through the wall of the inlet tube at the level of the partition wall 18 " while some are spaced thereabove.
- the total cross-sectional area of all of the openings 28 is preferably greater than the cross-sectional area of the inlet tube 26. . . .
- the major portion .of the inlet tube 26 extends downwardly from the upper partition wall 18 into the priming chamber 22 and has its lower end open as indicated at 30 at a position spaced slightly above the end closure 20.
- the end closure 20 has an outlet opening 32 extending centrally therethrough, the cross- sectional area of which is less than the cross- sectional area of the inlet tube 26.
- An exemplary illustration of the size relationship between the inlet opening 30 and outlet opening 32 is one in which both cross-sections are circular with the inlet cross-section having a diameter of approxi ⁇ mately 1/2" while the diameter of the outlet opening 32 is approximately 1/4".
- the device 10 also includes an air vent tube 34 which is exteriorly peripherally secured in sealing relation with the upper partition wall ⁇
- the vent tube has its lower interior end com ⁇ municating with the upper end portion of the prim ⁇ ing chamber 22 and includes a bent-over upper end portion 36 within which is mounted a check valve assembly 38.
- the check valve assembly 38 may be of any suitable construction and, as shown, consists essentially of a simple flap valve member which will permit flow of air outwardly from the priming chamber 22 through the vent tube, but will prevent flow of air inwardly into the vent tube.
- the device 10 also includes a length of siphon hose 40.
- a free end of the siphon hose 40 has a plug 42 fixedly secured , within the extremity thereof as by cement or the like.
- Formed along one side of the peripheral wall adjacent the plug 42 is a series of inlet openings 44. The inlet openings 44 are thus positioned so
- the free end portion of the hose 40 can be simply rested upon a ponding surface area of the roof, so that when a rain condition occurs the build-up of the water in the ponding area will cover the openings 44.
- the opposite end of the hose 40 is fixedly connected in interior communicating relation with the priming chamber 22.
- this communi ⁇ cation is accomplished by means of a central nipple 46 which has its exterior periphery sealingly
- the main portion of the nipple 46 extends upwardly above the partition wall 18 and has its exterior periphery adapted to receive the interior periphery of the other end portion of the hose 40.
- the connection is preferably made secure by means of suitable cement between the exterior periphery of the nipple and the interior periphery, of the hose.
- suitable cement between the exterior periphery of the nipple and the interior periphery, of the hose.
- FIG. 1 there is shown a flat roof construction, generally indicated at 48, supported at one periphery by an outside wall 50.
- the water run-off system of the roof construction includes a peripheral side gutter 52 having a downspout 54 extending therefrom.
- the roof has a flat construction, indicated at 56, with an interior vertical wall 58 supporting the same. Extending downwardly through the central portion of the roof construction 56 adjacent the interior vertical wall 58 is a down ⁇ spout 60.
- the device 10 of the present invention is installed in the downspout, such as the downspout 54 or 60 of the embodiments of Figures 1 and 2 respectively.
- the downspout in both instances has a cross-sectional area which is considerably in excess of the cross-sectional area of the* device 10.
- the mounting of the device 10 within the respective downspout is accomplished simply by lowering the same into the downspout by the hose 40 and allowing the hose to simply suspend the housing in a position disposed below the top of the downspout.
- the length of the hose is of a weight sufficient to prevent the housing from moving downwardly even when filled with water. However, the hose can be clamped or otherwise secured to insure against its downward movement.
- the free end of the hose is extended to the middle of the ponding area.
- the free end is simply positioned on the surface of the ponding area so that the openings 44 face generally downwardly and are in closely spaced relation with the surface of the ponding area without being blocked by the surface. This insures removal of a maximum amount of water from the ponding area.
- the device simply remains suspended within the downspout.
- a rain condition commences and water is distributed to the flat roof construction, the majority of the water will be directed as run-off water in the run-roff system, while a portion of the water will begin to build up as standing water in the ponding area.
- the run-off water passes through the downspout, .a portion of the water will be caught in the water receiving space 24 and enter the priming chamber 22 through inlet openings 28, inlet tube 26 and the lower inlet opening 30 thereof.
- this run-off water is made available to the inlet openings, there is established a rising water level condition with respect to the priming chamber 22.
- the amount of water passing into the priming chamber 22 through the inlet openings 28 and 30 will be greater than the amount of water passing out of the priming chamber 22 through the outlet opening 32. Since there is a net intake of water into the priming chamber 22, the water level therein will rise above the opening 30, thus trapping a column of air thereabove within the priming chamber 22 ⁇ which communicates with the air vent tube 34 and hose 40.
- Check valve 38 allows this air to be displaced to the atmosphere by liquid displacement as the water level in the priming chamber 22 rises. The water level will rise until it reaches a level adjacent the upper partition wall 18 or, at most, to the upper level of the chamber 24. It will remain at this level so long as there is sufficient water in the run-off system to main ⁇ tain the water receiving chamber 24 filled.
- the device 10 is effective in its normal mode of operation to remove water which may accumulate in ponding areas on the roof immediately following the cessation of a rain condition which would otherwise create the standing water.
- any water remain ⁇ ing in the priming chamber 22 will simply- run out of the outlet opening 32 so that the device 10 is com ⁇ pletely drained of water. This is of significance during winter conditions where there may be intermit ⁇ tent periods of freezing.
- the device 70 includes a length of siphon hose similar to the siphon hose 40 previously described which is not illustrated in the drawings.
- the dis ⁇ charge end of the siphon hose is adapted to be connected to a nipple 72 extending upwardly- from the upper end of a tubular housing structure, generally indicated at-74, which is similar to the tubular housing of the device-10-previously described.
- the tubular housing structure 74 includes a central elongated tube 76 having a lower closure disc member 78 sealingly engaged in the lower end thereof and an upper partition wall 80 sealingly secured to the interior periphery thereof at a position spaced below the upper end thereof.
- nipple 72 extends through and is exteriorly peripherally sealed with respect to the upper partition wall 80 so that its lower end, which constitutes the lower end of the siphon hose means leading to the ponding area, is disposed in an operative relationship with respect to the priming chamber 82 such that negative pressure conditons
- the nipple 72 functions in a manner similar to the nipple 46 previously described.
- the interior periphery of the main tube 76 disposed above the upper partition wall 80 defines with the latter a water receiving chamber 84 which is similar to the water receiving chamber 24 pre ⁇ viously described.
- the open upper end of the chamber 84 has a screen assembly 86 mounted thereover which serves to permit the passage of water downwardly therethrough into the chamber 84 while preventing debris from entering the same.
- the upper ⁇ partition wall 80 is formed with an inlet opening 88 which serves to communicate the water receiving chamber 84 with the priming chamber 82.
- a float valve in the form of a table tennis ball 90 or the like is mounted within the water re ⁇ ceiving chamber 84.
- the floating ball valve 90 is of a diameter size in excess of the diameter size of the inlet opening 88 so that when seated in the annular surface defining the opening 88 the ball 90 will prevent flow of fluid from the chamber 84 to the chamber 82 in response to the establishment of -a differential pressure between the two chambers as when the pressure within the priming chamber 82 is a negative pressure.
- the operation of the ball valve 90 is such that when pressure conditions other than the nega ⁇ tive pressure condition previously described exist with respect to chamber 84 and 82 and water is directed into the chamber 84, such water will cause the float ball valve 90 to move upwardly with a buoyant action away from the annual surface defin ⁇ ing the opening 88 and thus permit passage of water from the chamber 84 into the chamber 82. It will be understood that a similar float ball value arrangement could be utilized in the device 10 for effecting the direction of water flowing in the run-off system into the priming chamber 22 if desired. In order to discharge water from the priming chamber 82 there is provided an inverted U-shaped tubular discharge structure, generally indicated at 92.
- This structure includes a first tubular leg portion 94 having its open lower end provided with an angular surface, as indicated at 96, dis ⁇ posed in the lower portion of the chamber 82 in a position adjacent the lower closure member 78.
- the upper end of-the first leg portion 94 communicates with one end of a tubular bight portion 98 disposed within the upper portion of the priming chamber 82.
- the opposite end of the tubular bight portion 98 is connected with a second tubular leg portion 100 which extends downwardly therefrom " in parallel re ⁇ lation to the first tubular leg portion beyond the end 96 thereof and outwardly of the priming chamber 82 through the lower closure member 78 thereof.
- the exterior periphery of the tubular leg portion 100 is fixedly sealingly engaged with the closure member 78 as indicated at 102 which connec ⁇ tion serves to retain the inverted U-shaped tubular structure 92 in its operative position within the priming chamber 82 as aforesaid.
- the lower end of the tubular leg portion 100 is open as indicated at 104 so as to discharge into the run-off system within which the housing is mounted.
- the open end 104 is disposed below the open lower end 96 of the tubular portion 94.
- the inverted U-shaped tubular structure 92 thus constitutes a siphon for effecting the discharge of water from the priming chamber 82 into the run-off system.
- the device 70 in ⁇ cludes in addition to the housing structure 74 a siphon hose similar to the siphon hose 40 of the device 10 previously described.
- the tubular housing structure 74 is mounted in the downspout of the run-off system of the flat roof construction in a manner similar to that previously described and shown in either Figure 1 or 2. It will be understood that with the housing structure 74 mounted within the downspout of the run-off system, the open top of the water receiving chamber 84 will be disposed in a
- the flow of water into the priming chamber 82 displaces air outwardly through- the dis ⁇ charge structure 92 until the level rises above the lower open end 96 thereof. v Thereafter, displaced air passes outwardly of the priming chamber 82 up ⁇ wardly through the inlet opening either simultaneous with the downward movement of water therethrough or with an intermittent action similar to a gurgling action.
- the size of the discharge structure 92 is such as to displace a quantity of water which is greater than that which can pass into the priming chamber 82 through the inlet opening 88.
- the water displacement establishes within the priming chamber 82 a negative pressure which causes water in the lower portion of the chamber 84 maintaining float valve 90 above the inlet opening 80 to be sucked into the chamber 82 along with the ball valve 90. Consequently, the initial effect of establishing the negative pressure conditions within the upper portion of the priming chamber 82 by virtue of the displace ⁇ ment of water therefrom to the run-off system through the discharge tube structure 92 is to cause the ball valve 90 to move into closing relationship with the inlet opening 88.
- the nipple 7 and the siphon hose connected therewith provide the only other path of communication to the atmosphere for the negative pressure established within the priming chamber 82. Consequently, as the water from the priming chamber continues to be discharged through the end 104 of the discharge tube structure 92 and the water is displaced thereby from the priming chamber 82, the negative pressure thus created is transmitted through the nipple 72 and siphon hose to the inlet thereof, thus causing water communicating with the inlet to move past the inlet of the siphon hose through the siphon hose past the nipple 72 and into the priming chamber 82. Once thi flow is established, the siphon hose to the ponding area is primed and the siphoning action will continu so long as there is water in the ponding area to be removed.
- the capacity of the siphon hose and nipple 72 in terms of the rate of flow of water into the priming chamber 82 is preferably greater than the capacity of flow provided by the discharge tube structure 92.
- the water level will continue to rise until it overflows upwardly through the screen assembly 86 and pours over the outer tube 76 of the housing structure 74 into the run-off system. In this way, the screen ⁇ ing assembly 86 is back-flushed to insure that any debris accumulating on the upper surface thereof will be washed off and flow into the run-off system.
- Screen assembly 86 also serves to keep the ball valve 90 from passing out of the chamber 84.
- the operation of the device 70 is such that the priming of the siphon hose which serves to remove the water from the ponding area takes place as soon as sufficient water has entered the priming chamber 82 to reach the tubular " bight portion 98 and effect a flow of water downwardly through the tubular leg portion 100 and out of the end 104.
- the siphoning action from the ponding area will continue throughout the existence of the rain condi ⁇ tion and after the rain condition has stopped the action will continue so long as there is water in the ponding area to be removed.
- the operation of the inverted U-shaped dis ⁇ charge tube structure 92 is such that water will continue to flow therethrough so long as there is water contained within the priming chamber 82 at a level above the lower open end 96. Moreover, the momentum of the flow is such that it.will tend to- suck up water in the bottom of the chamber 82 even after the level has dipped below the upper angular end at 96. Consequently, when the flow in discharge pipe structure 92 is finally completed, there will be a small amount of water left in the bottom of the priming chamber 82, however, this smal amount of water is insufficient to fully cover the open end 96.
- the device 70 is preferable for the reason that its operation enables the utilization of lengths of siphon hose which have an internal volume in excess of the internal volume of the priming chamber 82. Where this condition exists, the device 70 is still operable to effect a priming of the siphon hose in the following manner.
- the initial filling of the priming chamber 82 takes place in a manner previousl indicated through the inlet opening 88 until the predetermined level is reached, at which time flow through the inverted U-shaped discharge tube struc ⁇ ture 92 is commenced.
- the initial displacement of water from the upper end of the priming chamber 82 by the flow of water outwardly therefrom will close - 27 -
- valve 90 as aforesaid and the subsequent negative pressure generated by the lowering of the water level in the priming chamber 82 will serve to move water into the siphon hose.
- the priming > chamber 82 is exhausted of water before the siphon hose is primed and a flow therefrom into the priming chamber is commenced, the flow of water outwardly of the end 104 will cease, thus communicating the atmos ⁇ pheric pressure of the run-off system through the emptied tubular structure 92 with the priming chamber 82.
- Another advantage of the utilization of the device 70 is that the flow provided through discharge tubular leg portion 100 may be utilized to prime additional siphon hoses in the manner suggested by the aforesaid patent Re.28,491, the disclosure of which is hereby incorporated by reference into the present specification for that purpose.
- two or more additional siphon hose lines may be connected with the tubular leg portion 100 at the same vertical level as by the utilization of a cross-fitting or the like. The flow of water down ⁇ wardly through the tubular leg portion 100 past the branch openings causes a suction at the branch
- the lower closure member 78 of the device 70 may be provided with a leakage hole or passage similar to the passage 32 for the purpose of draining water therefrom and preventing damage by freezing. Under these circumstances, the size of the opening would be substantially less than that embodied in the. device 10, although by making the hole size similar to that shown in the device 10, a combination of the two procedures achieved can be secured.
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- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Jet Pumps And Other Pumps (AREA)
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US05/922,154 US4171709A (en) | 1977-10-12 | 1978-07-05 | Device for siphoning water from a ponding area on a flat roof |
| US922154 | 1978-07-05 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO1980000175A1 true WO1980000175A1 (en) | 1980-02-07 |
Family
ID=25446587
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US1978/000214 WO1980000175A1 (en) | 1978-07-05 | 1978-12-14 | Method and apparatus for siphoning water from a ponding area on a flat roof |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP0016128A4 (enrdf_load_stackoverflow) |
| JP (1) | JPS55500692A (enrdf_load_stackoverflow) |
| WO (1) | WO1980000175A1 (enrdf_load_stackoverflow) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP1722039A1 (fr) * | 2005-05-03 | 2006-11-15 | Laurent Lachaux | Dispositif de stockage des eaux pluviales |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP6920525B2 (ja) * | 2018-01-09 | 2021-08-18 | 積水化学工業株式会社 | サイフォン雨樋システムおよびサイフォンドレン部材 |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2307324A (en) * | 1942-01-22 | 1943-01-05 | Chicago Bridge & Iron Co | Drainage apparatus |
| US3640302A (en) * | 1970-03-10 | 1972-02-08 | Metaframe Corp | Siphoning device |
| US3757812A (en) * | 1972-01-03 | 1973-09-11 | J Duncan | Roof standing water eliminator |
| USRE28491E (en) * | 1971-01-11 | 1975-07-29 | Roof draining system | |
| US4059126A (en) * | 1976-08-16 | 1977-11-22 | The B. F. Goodrich Company | Solar actuated siphon drain |
Family Cites Families (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| BE579095A (enrdf_load_stackoverflow) * | 1958-05-28 | 1900-01-01 |
-
1978
- 1978-12-14 JP JP50115378A patent/JPS55500692A/ja active Pending
- 1978-12-14 WO PCT/US1978/000214 patent/WO1980000175A1/en unknown
-
1980
- 1980-02-12 EP EP19790900839 patent/EP0016128A4/en not_active Ceased
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2307324A (en) * | 1942-01-22 | 1943-01-05 | Chicago Bridge & Iron Co | Drainage apparatus |
| US3640302A (en) * | 1970-03-10 | 1972-02-08 | Metaframe Corp | Siphoning device |
| USRE28491E (en) * | 1971-01-11 | 1975-07-29 | Roof draining system | |
| US3757812A (en) * | 1972-01-03 | 1973-09-11 | J Duncan | Roof standing water eliminator |
| US4059126A (en) * | 1976-08-16 | 1977-11-22 | The B. F. Goodrich Company | Solar actuated siphon drain |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP0016128A4 * |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP1722039A1 (fr) * | 2005-05-03 | 2006-11-15 | Laurent Lachaux | Dispositif de stockage des eaux pluviales |
Also Published As
| Publication number | Publication date |
|---|---|
| JPS55500692A (enrdf_load_stackoverflow) | 1980-09-25 |
| EP0016128A1 (en) | 1980-10-01 |
| EP0016128A4 (en) | 1980-11-14 |
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