PIG PUMPING UNIT
20220097107 · 2022-03-31
Inventors
Cpc classification
International classification
Abstract
A pig pumping unit is provided that allows eight passes to be made simultaneously with a single pumping unit. A single engine is used to drive three or four pumps, each connected into separate pumping units. Two engines may thus be used to drive up to eight pumps in a single trailer.
Claims
1-5. (canceled)
6. A pig pumping unit, comprising: at least a first engine; a first gearbox connected to the first engine; at least a first pump, a second pump and a third pump connected to and driven by the first gearbox; one or more clean water tanks; one or more dirty water tanks; and at least a first pumping circuit fluidly connected to the first pump, a second pumping circuit fluidly connected to the second pump and a third pumping circuit fluidly connected to the third pump, wherein each pumping circuit is fluidly connected to the clean water tank and dirty water tank.
7. The pig pumping unit of claim 6 further comprising a fourth pump connected to and driven by the first gearbox, and a fourth pumping unit fluidly connected to the first pump and fluidly connected to the clean water and dirty water tank.
8. The pig pumping unit of claim 6 further comprising: at least a second engine; a second gearbox connected to the second engine; at least a fourth pump, a fifth pump and a sixth pump connected to and driven by the second gearbox; at least a fourth pumping circuit fluidly connected to the fourth pump, a fifth pumping circuit fluidly connected to the fifth pump and a sixth pumping circuit fluidly connected to the sixth pump, wherein each pumping circuit is fluidly connected to the clean water tank and dirty water tank.
9. The pig pumping unit of claim 8 further comprising a seventh pump connected to and driven by the second gearbox, and a seventh pumping circuit connected to the seventh pump, wherein the seventh pumping circuit is fluidly connected to the clean water tank and dirty water tank.
10. The pig pumping unit claim 9 further comprising an eighth pump connected to and driven by the fourth gearbox, and an eight pumping circuit connected to the eighth pump, wherein the eighth pumping circuit is fluidly connected to the clean water tank and dirty water tank.
11-18. (canceled)
Description
BRIEF DESCRIPTION OF THE FIGURES
[0012] Embodiments will now be described with reference to the figures, in which like reference characters denote like elements, by way of example, and in which:
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DETAILED DESCRIPTION
[0021] In the claims, the word “comprising” is used in its inclusive sense and does not exclude other elements being present. The indefinite article “a” before a claim feature does not exclude more than one of the feature being present. Each one of the individual features described here may be used in one or more embodiments and is not, by virtue only of being described here, to be construed as essential to all embodiments as defined by the claims.
[0022] A pig pumping unit is usually carried on the trailer of a tractor-trailer unit. In a conventional pumping unit, the engine compartment is typically located over the wheels of the trailer with a fuel tank and operator cabin at the other end, and clean and dirty water tanks in between.
[0023] A first set of embodiments of a pig pumping unit uses gearboxes to redirect the mechanical energy of an engine to the water pumps so that they may be located low on the trailer and still all be connected to receive mechanical energy from the engine.
[0024] As shown in
[0025] At the opposite end of the trailer 12 is the operator's cabin 18, with a dirty water tank 20 and clean water tank 22 lying between the operator's cabin 18 and the engine compartment 24. The tanks 20, 22 are lower in height than the operator's cabin 18 and are easily visible from windows in the operator's cabin. The tanks 20, 22 may be made of several interconnected tanks and need not be a single unit.
[0026] The first engine 14 is connected to a first gearbox 26 and a second gearbox 28 is connected to and driven by the first gearbox 26 for example by a drive shaft. At least three pumps P1-P3 are driven by the first engine 14 using the gearboxes. A first pump P1 is connected to and driven by the first gearbox 26, and the second gearbox 28 is a splitter gearbox which allows the second gearbox 28 to drive the second pump P2 and third pump P3. Water from the clean water tank 20 may be supplied into a water bank from which clean water is pumped by the pumps P1-P3 for use as a pig drive fluid. First pump P1 is fluidly connected to first pumping circuit 30A, second pump P2 is fluidly connected to second pumping circuit 30B, and third pump P2 is fluidly connected to second pumping circuit 30C. The first pumping circuit 30A may be fluidly connected to a first pipe to be cleaned, the second pumping circuit 30B may be fluidly connected to a second pipe to be cleaned and the third pumping circuit 30C may be fluidly connected to a second pipe to be cleaned. Thus, three pipes may be cleaned using a single engine.
[0027] The operation and configuration of the valved pumping circuits 30A, 30B, 30C may be for example as described in the inventor's own U.S. Pat. No. 9,296,025 B2. Valve banks 32 may be stacked in the trailer 12 near first engine 14. Bypass valves and flow meters may be stacked between each section of valve banks 32.
[0028] The pumping unit 10 may include a radiator 34 to cool the interior of the trailer 12.
[0029] As shown in
[0030] In an embodiment, a seventh pump P7 may also be connected to and driven by the second gearbox 28, and controlled in the same way as pumps P2 and P3. In a further embodiment, an eighth pump P8 may be connected to and driven by the fourth gearbox 40, and controlled in the same way as pumps P5 and P6. Each of seventh pump P7 and eighth pump P8 may be fluidly connected to its respective pumping circuit 30D and 42D and through its pumping circuit to the clean water tank 20 and dirty water tank 22.
[0031] Thus, a single trailer may hold a 6 pump pumping unit or an 8 pump pumping unit, also known as a six pass pumping unit and an eight pass pumping unit. Two engines and 8 pumps may be used in conjunction with the dirty water tank and the clean water tank to clean up to eight pipes at once. Pumps may be disengaged from and reconnected to the engines 14 and 36 to allow anywhere between 1 and 8 passes to be performed using the pumping unit 10 at any given time. Thus, the pig pumping unit 10 allows eight passes to be performed at once, and reduces the amount of equipment used in a large pigging operation, including by reducing the number of engines, water tanks, trailers and personnel required.
[0032] In an alternative embodiment, as shown in
[0033] As shown in
[0034] In an embodiment, a seventh pump Q7 may also be driven by the first gearbox 54, and connected to the first gearbox 54 and controlled in the same way as pumps Q1, Q2 and Q3. In a further embodiment, an eighth pump Q8 may be connected to and driven by the second gearbox 64, and controlled in the same way as pumps Q4, Q5 and Q6. Seventh pump Q7 and eighth pump Q8 may be connected to respective pumping circuits 561) and 661) and through respective pumping circuits to the clean water tank 58 and dirty water tank 60. Thus, a single trailer may hold a six pass pumping unit and an eight pass pumping unit, while only having two engines, a single clean water tank 58 and dirty water tank 60, and a single gearbox for each engine.
[0035] Each gearbox may drive pumps using a take-off for each pump. A clutch located between each engine and gearbox may control the transmission of power and motion between the engine and gearbox. Between each gearbox and respective pumps there may be levers to move the meshing gears of the respective gearboxes for disengaging each of the pumps from respective gearboxes. The gearboxes may act as speed increasers to drive each of the pumps at a faster rate than would be possible with an engine alone. For example, if the engine runs at 2100 rpm, the pumps may run at 4600 rpm. Where a second gearbox is driven by first gearbox, the second gearbox may further increase the speed of pumps driven by the second gearbox as compared to the speed of pumps driven by the first gearbox.
[0036] The engines may be any suitable engine, such as a diesel engine used for powering heavy duty machinery, an example being a Caterpillar C15™ engine, and the pumps may be any pump suitable for use in a pig pumping unit.
[0037] Other clutch and drive shaft configurations may be used to configure a single engine to drive three or four pumps.
[0038] Each pumping circuit in operation may be connected to a different pipe, and the pipe is cleaned using the pumping of fluid through the pumping circuit and through the pipes using the pumps. As disclosed in the inventor's own prior patents, pipes may be cleaned by running pigs through specific sections repeatedly by reversing flow using the valve banks 32 etc. as operated by the operators. Flow bypass and diversion may also be accomplished by the operators in conventional manner. Location of the pigs may be determined from the pressure recorders. As the pigs pass bends in the pipes being cleaned, the pressure spikes, which is observable to the operator. When to switch from flowing return fluid to the clean water tank or the dirty water tank may be determined by visual inspection by the operator looking out of the window of the operator's cabin 18 at the flow of water from the return conduits.
[0039] A single operator may manage four pipes being cleaned at a time, so that two operators in a pumping unit having eight pumps may manage eight pipes being cleaned at a time. A single pig handler may be used for four pumping circuits, so that the total staff required to perform eight passes at a time is 4 and only a single trailer is required.
Hydraulic Embodiments
[0040] Additional embodiments may drive the water pumps using hydraulic motors powered by hydraulic pumps. The hydraulic pumps may be smaller than the water pumps, the hydraulic circuits they power may be smaller in cross section than the suctions and outputs of the water pumps, and do not need to be located at a low height Thus, they can be positioned much more flexibly than the water pumps, and in particular, multiple hydraulic pumps can be positioned to be driven mechanically by a single engine much more easily than multiple water pumps.
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[0043] The top end of each valve bank portion in the embodiment shown in
[0044] Immaterial modifications may be made to the embodiments described here without departing from what is covered by the claims.