Rain shield assembly, pipe assembly and turbine fracturing unit
11105250 · 2021-08-31
Assignee
Inventors
- Peng Zhang (Yantai Shandong, CN)
- Rikui Zhang (Yantai Shandong, CN)
- Shanwu Fu (Yantai Shandong, CN)
- Weipeng YUAN (Yantai Shandong, CN)
- Jianwei Wang (Yantai Shandong, CN)
- Zhuqing Mao (Yantai Shandong, CN)
Cpc classification
F01N13/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E21B43/2607
FIXED CONSTRUCTIONS
F01N2390/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/085
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01N13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D25/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02C7/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present disclosure provides a rain shield assembly, a pipe assembly and a turbine fracturing unit. The rain shield assembly comprises at least two sets of cover plate assemblies, wherein each set of cover plate assembly comprises a cover plate, a transmission mechanism and a locking device. When the cover plate(s) is(are) at a closed position, the opening is covered; when the cover plate of each set of cover plate assembly is at an open position, an additional pipe structure which is open at both ends and extends along an extension direction of the pipe is formed by which. According to the present disclosure, the cover plate(s) of the rain shield assembly, when opened, will jointly form an additional pipe structure connected to the open end of the pipe to guide the exhaust gas of the pipe to a further space. Such an arrangement may reduce noise on the one hand, and prevent backflow of the exhaust gas on the other hand. The cover plate(s) of the rain shield assembly, when closed, can shield the opening of the pipe to prevent entry of rainwater.
Claims
1. A rain shield assembly for mounted on an opening of a pipe (200), wherein the rain shield assembly (100) comprises at least one set of cover plate assembly, where each set of cover plate assembly comprises: a cover plate (1) mounted on the opening of the pipe (200) and being movable relative to the pipe (200) between a closed position where the cover plate covers the opening and an open position where the cover plate exposes the opening; a transmission mechanism (22) whose one end is fixed with the cover plate (1); a locking device (3) which is directly or indirectly connected to the other end of the transmission mechanism (22), and configured to lock the transmission mechanism (22) to maintain the cover plate (1) at the open position, wherein the at least one set of cover plate assembly is configured such that when at least part of the cover plate(s) (1) is(are) at the closed position, the opening is shielded by the at least part; when the cover plate (1) of each set of cover plate assembly is at the open position, an additional pipe structure that opens at both ends and extends along an extension direction of the pipe (200) is formed by the cover plate(s).
2. The rain shield assembly according to claim 1, wherein the rain shield assembly comprises at least two sets of cover plate assemblies, the pipe (200) opens upward, and the cover plate (1) of each of the cover plate assemblies is mounted on an edge of the pipe and capable of pivoting about a pivot axis perpendicular to a centerline of the pipe.
3. The rain shield assembly according to claim 2, wherein there are two cover plate assemblies, the two cover plate assemblies are disposed about the open end opposite to each other, and at least one of cover plate(s) (1) comprises(comprise) an intermediate plate (11) and two side plates (12) respectively connected to two opposite ends of the intermediate plate (11), and the intermediate plate (11) is perpendicular to the side plates (12); when the two cover plates (1) are at the open position, the intermediate plate(s) (11) and the side plates (12) all extend in a vertical direction; and when the two cover plates are at the closed position, the intermediate plate(s) (11) covers(cover) the open end and the side plates (12) are located outside the pipe (200).
4. The rain shield assembly according to claim 2, wherein each of the cover plate assemblies further comprises a connecting member (4) connecting the cover plate (1) with the pipe (200), and the connecting member (4) comprises: a base (41) being an integral fixed member and fixed on the outside of the pipe (200); a pivoting portion (42) fixed on the cover plate (1) and pivotally connected with the base (41).
5. The rain shield assembly according to claim 4, wherein the base (41) comprises a base plate (411) and an ear (412), a portion of the base plate (411) is parallel to a pivot axis of the cover plate (1) and abuts an outer side wall of the pipe (200), and the ear forms a pivot mounting hole (4121), and the pivoting portion (42) has a plate-shaped structure and is pivotally connected to the pivot mounting hole (4121) of the ear (412).
6. The rain shield assembly according to claim 1, wherein the transmission mechanism (22) comprises a transmission rod, the transmission rod comprises two first rod portions (2211) and a second rod portion (2212) located between the two first rod portions (2211), both ends of the second rod portion (2212) are respectively sleeved in corresponding first rod portions (2211), and the transmission rod is configured in a way that the two first rod portions (2211) can move away from or close to each other to adjust a total length of the transmission rod.
7. The rain shield assembly according to claim 1, wherein a bottom end of the transmission mechanism (22) is fixedly connected with a support rod (231), the rain shield assembly further comprises a power mechanism (21) comprising: a hydraulic cylinder (236) pivotable about a first pivot (235) relative to the pipe; a hydraulic rod (237); and a hydraulic rod ear (232) fixedly disposed at a top end of the hydraulic rod (237) and pivotally connected with the support rod (231) via a second pivot (233) parallel to the first pivot (235), wherein the support rod (231) is provided with a through hole, the locking device (3) includes a pull bolt, and the pull bolt is configured to be inserted into the through hole on the support rod (231) to lock the position of the transmission mechanism (23).
8. The rain shield assembly according to claim 2, wherein the rain shield assembly (100) further comprises an additional locking device (73) connected between any two adjacent cover plates, the additional locking device (73) is fixedly mounted on one of the two adjacent cover plates, and the additional locking device (73) is releasably fixed with the other of the two adjacent cover plates.
9. The rain shield assembly according to claim 8, wherein the two adjacent cover plates are a first cover plate (71) and a second cover plate (72), the second cover plate (72) is provided with a metal rim, and the additional locking device (73) comprises: a mounting plate (731) fixedly connected to the first cover plate (71) and protruding toward the second cover plate (72); a magnet (733) disposed on a portion of the mounting plate (731) protruding from the first cover plate (71), and the magnet (733) and the metal rim of the second cover plate (72) facing each other.
10. The rain shield assembly according to claim 9, wherein the mounting plate (731) is provided with a through hole, and the additional locking device (73) further comprises: a U-shaped pressing plate (734) whose both ends are detachably connected to a surface of the mounting plate (731) facing the second cover plate (72), so that the magnet (733) is cooperatively received in a space jointly defined by the U-shaped pressing plate (734) and the pressing plate (731); an ejector rod (732) penetrating through the through hole on the mounting plate (731) and configured to be locked relative to the mounting plate (731), and configured to press the magnet (733) in a direction towards the second cover plate (32) so that the magnet (733) can be pressed tightly between the ejector rod (732) and U-shaped pressing plate (734).
11. The rain shield assembly according to claim 9, wherein an arcuate segment (7311) bent towards the second cover plate (72) is disposed at an edge of the mounting plate (731), and a size of the arcuate segment (7311) in a thickness direction of the mounting plate (731) is smaller than a size of the magnet (733) in the thickness direction of the mounting plate (731).
12. The rain shield assembly according to claim 1, wherein the rain shield assembly comprises only one set of cover plate assembly, and the cover plate in the cover plate assembly comprises: a pipe-shaped structure (851) configured to translate relative to the pipe along an extension direction of the pipe; a shielding plate (852) disposed at one end of the pipe-shaped structure (851) and configured to pivot relative to the pipe-shaped structure to open and close the pipe-shaped structure (851), the cover plate is configured in a way that when the cover plate is at the open position, the pipe-shaped structure (851) is formed as the additional pipe structure, and the shielding plate (852) is located outside or inside the pipe-shaped structure (851); when the cover plate is at a closed position, the pipe-shaped structure (851) is sleeved inside or outside the pipe, and the shielding plate (852) shields the opening of the pipe-shaped structure (851).
13. The rain shield assembly according to claim 12, wherein one end (852a) of the shielding plate is connected to the pipe, and the other end (852b) of the shielding plate is connected to the pipe-shaped structure (851) via an articulation lever (853).
14. A pipe assembly, wherein the pipe assembly comprises a pipe (200) with an opening and the rain shield assembly (100) according to claim 1.
15. The pipe assembly according to claim 14, wherein the pipe assembly further comprises a mounting frame (300) fixed on the pipe (200), and the rain shield assembly (100) comprises a power mechanism (21) mounted on the mounting frame.
16. A turbine fracturing unit, comprising: a turbine engine; the rain shield assembly according to claim 1 mounted at an exhaust port of the turbine engine.
17. The turbine fracturing unit according to claim 16, wherein the turbine fracturing unit further comprises a control device (400), the rain shield assembly comprises a power mechanism, a position sensor (500) communicatively connected with the control device (400) is integrated in the power mechanism, the position sensor (500) is configured to sense a position state of the cover plate of the rain shield assembly, and the control device (400) is configured to disable the state of the turbine engine (600) when the position sensor (500) monitors the cover plate is at the closed position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Reference may be made to preferred embodiments shown in the figures to enable better understanding of the above and other objects, features, advantages and functions of the present disclosure. The same reference numerals in the figures denote the same parts. Those skilled in the art should appreciate that the figures are intended to schematically illustrate the preferred embodiments of the present disclosure, and not intended to impose any limitations to the scope of the present disclosure. All parts in the figures are not drawn to scale.
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LISTING OF REFERENCE NUMBERS
(15) 100, 700 Rain shield assembly 1, 83, 84 Cover plate 11 Intermediate plate 12, 831, 841 Side plates 2 Driving device 21 Power mechanism 22 Transmission mechanism 222 Forced ear 223 Second pin 2211 First rod portion 2212 Second rod portion 231 Support rod 232 Hydraulic rod ear 233 Second pivot 234 Clamp plate 235 First pivot 236 Hydraulic cylinder 237 Hydraulic lever 3 Locking device 4 Connecting member 41 Base 42 Pivoting portion 43 First pin 411 Base plate 412 Ear 4121 Pivot mounting hole 413 Limiting portion 4131 Extension plate 4132 Limiting plate 5 Baffle 200, 800 Pipe 300 Mounting plate 400 Control device 500 Position sensor 600 Turbine engine 601 Diffuser duct 71, 81 First cover 72, 82 Second cover 73 Additional locking device 731 Mounting plate 732 Ejector rod 733 Magnet 734 U-shaped pressing plate 7311 Arcuate segment 851 Pipe-shaped structure 852 Shielding plate 852a One end of the shielding plate 852b The other end of the shielding plate 853 Articulation lever
DETAILED DESCRIPTION OF EMBODIMENTS
(16) Specific embodiments of the present disclosure will now be described in detail with reference to the figures. Those skilled in the art can implement other manners of the present disclosure on the basis of the preferred embodiments, and said other manners also fall within the scope of the present disclosure.
(17)
(18) First, referring to
(19) As shown in
(20) The cover plate 1 is mounted at the open end of the pipe 200 and capable of pivoting in a vertical plane between a closed position where the cover plate covers the opening and an open position where the cover plate exposes the opening. It may be appreciated that its pivot axis is perpendicular to the centerline of the pipe 200. It needs to be clarified that when the cover plate 1 is at the closed position, the entire opening may be covered or only a portion of the opening may be covered; when all the cover plates 1 are at the closed position, they may jointly cover the opening of the cover 200 completely. One end of the transmission mechanism 22 is connected to the cover plate 1 and can drive the cover plate 1 to pivot between the open position and the closed position. The other end of the transmission mechanism 22 is indirectly connected to the locking device 3 through the power mechanism 21, and is configured to lock the transmission mechanism 22 and thereby lock the cover plate 1 when the cover plate 1 is at the open position. Certainly, it is also possible that there is not a power mechanism 21, and the transmission mechanism 22 is directly connected to the locking device 3. At this time, manual operation is required.
(21) Continuing to refer to
(22) In an embodiment not shown, the rain shield assembly may include more cover plate assemblies, the cover plates of respective cover plate assemblies are evenly arranged around edges of the opening, and the cover plates of respective cover plate assemblies are configured in a way that when the cover plates are at the open position, the cover plates are connected end-to-end in the horizontal direction (or may be partially overlapped) to form a closed additional pipe structure which extends in the vertical direction with both ends open. The additional pipe structure is located above the pipe and communicated with the opening of the pipe. When the cover plate of each cover plate assembly is at the closed position, the cover plates at least partially overlap.
(23) Each cover plate assembly further includes a connecting member 4 connecting the cover plate 1 with the pipe 200.
(24) Referring to
(25) The arrangement of such as connecting member 4 can facilitate the proper connection between the cover plate 1 and the pipe 200, and not only ensures the connection strength of the two, but also satisfies the flexibility of the cover plate 1 relative to the pipe 200.
(26) Preferably, the limiting portion 413 is configured in a way that the limiting portion 413 abuts against the cover plate when the cover plate 1 pivots to the open position, to limit further pivoting of the cover plate 1. A state when the limiting portion 413 limits the cover plate 1 to the open position is shown in
(27) Preferably, the rain shield assembly 100 further includes a baffle 5 fixed relative to the pipe 200 and extending along a connection gap between the pipe 200 and the cover plate 1 to shield the gap. The baffle 5 may be fixed together with the connecting member 4.
(28) Referring to
(29) As described above, the forced ear 222 of the driving device 2 and the pivoting portion 42 of the connecting member 4 are both fixed on the cover plate 1, and the three move jointly. In the joint movement of the forced ear 222 and the cover plate 1, the forced ear 222 is a driving member, and the cover plate 1 is a driven member; in the joint movement of the cover plate 1 and the pivoting portion 42, the cover plate 1 is a driving member, and the pivoting portion 42 is a driven member.
(30) Preferably, the length of the transmission rod of the driving device 2 is adjustable. For example, the transmission rod includes a first rod portion 2211 and a second rod portion 2212, and the second rod portion 2212 is sleeved in two adjacent first rod portions 2211 to form a telescopic structure. Such a telescopic structure may be realized by any suitable mechanism in the prior art.
(31) The power mechanism 21 may include an electric power mechanism or a pneumatic power mechanism, which includes, for example, a hydraulic cylinder or an electric cylinder. For example, the transmission mechanism 22 may be provided with a gear-rack mechanism, a cam mechanism, an electric winch mechanism, etc., in addition to or instead of the transmission rod for transmission.
(32) When the rain shield assembly is applied to a small pipe, the cover plate may be opened and closed manually. In such an embodiment, the rain shield assembly may only include the transmission mechanism and not include the power mechanism, and the end of the transmission mechanism opposite to the cover plate may be set to be directly connected to a locking device to lock the cover plate at a predetermined position.
(33) The locking device 3 may include the pull bolt shown in the figure. During the opening and closing the cover plate 1, the pull bolt may be pulled outward to make the driving device 2 operable; when the cover plate 1 reaches the open position, the pull bolt may be inserted into a bolt hole to lock the driving device 2 to further lock the cover plate 1 at the open position. When the cover plate 1 is at the closed position, the locking device 3 may lock the driving device 2, or may keep an unlocked state so that the cover plate 1 may rest at the closed position freely.
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(35) Furthermore, the support rod 231 is provided with a through hole, the locking device 3 includes a pull bolt, and the pull bolt can be inserted into the through hole on the support rod 231 to lock the position of the transmission mechanism 22. After the locking device 3 locks the position of the transmission mechanism 22, the hydraulic cylinder is in an unstressed state.
(36) In addition to the above arrangement, the rain shield assembly may further include some other preferred structures. For example, in the embodiment shown in
(37) Referring to
(38) Furthermore, there are two U-shaped pressing plates 734, and both ends of each U-shaped pressing plate 734 are detachably connected to the surface of the mounting plate 731 facing the second cover plate 72, so that the magnet 733 is cooperatively received in a space jointly defined by the U-shaped pressing plates 734 and the mounting plate 731. The two U-shaped pressing plates 734 are arranged along the X direction. The U-shaped pressing plates 734 can function to protect the magnet 733 and avoid damages to the magnet caused by direct collision and contact between the magnet 733 and the second cover 72.
(39) Furthermore, the mounting plate 731 is provided with through holes. The ejector rods 732 run through the through holes and can be locked relative to the mounting plate 731. The ejector rods 732 can press the magnet 733 in the Y direction, so that the magnet 733 can be pressed tightly between the ejector rods 732 and U-shaped pressing plates 734. There are two ejector rods 732, and the two ejector rods 732 are arranged in a direction perpendicular to both the X direction and the Y direction.
(40) Since the U-shaped pressing plates 734 are detachable, U-shaped pressing plates 734 of different sizes may be selected according to actual needs. For example, U-shaped pressing plates having a larger size in the Y direction than the U-shaped pressing plates 734 shown in
(41) More preferably, the edge of the mounting plate 731 is provided with an arcuate segment 7311 bent toward the second cover plate 72. The arcuate segment 7311 is provided to prevent the magnet 733 from being hit by other components. The size of the arcuate segment 7311 in a thickness direction of the mounting plate 731 (i.e., the Y direction) is smaller than the size of the magnet 733 in the thickness direction of the mounting plate 731, so the arcuate segment 7311 will not interfere with the second cover plate 72.
(42) The cover plate of the rain shield assembly according to the present disclosure may also have various structural forms. For example, in stead of the cover structure shown in
(43) In
(44) In
(45) In
(46) The rain shield assembly may further include only one set of cover plate assembly. For example, in
(47) A more specific structure of the above solution is shown with reference to
(48) When the opening of the pipe 800 needs to be exposed, when the pipe-shaped structure 851 moves upward relative to the pipe 800, the other end 852b of the shielding plate 852 is indirectly driven by the pipe-shaped structure 851 via the articulation lever 853 to pivot upwards, and one end 852a of the cover plate is always fixed relative to the pipe 800 in this process so that the shielding plate 852 is opened (approximately as shown in
(49) When the opening of the pipe 800 needs to be shielded, when the pipe-shaped structure 851 moves downward relative to the pipe 800, the pipe-shaped structure 851 drives the other end 852b of the shielding plate 852 to pivot downward via the articulation lever. In this process, the one end 852a of the shielding plate is always fixed relative to the pipe 800 so that finally the shielding plate 852 covers the opening of the pipe 800 (approximately as shown in
(50) In addition to the above-mentioned pivotal movement and translational movement, in other unshown embodiments, the cover plate may also include pivotal movements in other directions. For example, there may be a section of pivotal movement during the pivoting of the cover plate, and the pivot axis of the pivotal movement is parallel to a centerline of the pipe. In other words, a pivot axis may be added to one of the cover plates. For example, when the cover plates needs to be closed, one cover plate may be pivoted horizontally to a position overlapping with the other cover plate, and then the two overlapping cover plates may be pivoted together around an axis perpendicular to the centerline of the pipe.
(51) The figure also shows a mounting frame 300 fixed on the pipe 200, and the driving device 2 of the rain shield assembly 100 is mounted on the mounting frame 300.
(52) In particular, the present disclosure further provides a turbine fracturing unit, which includes a turbine engine and an exhaust muffler mounted at the exhaust port of the turbine engine. The exhaust muffler may be the pipe 200 described in the above embodiment. Further, as shown in
(53) Referring
(54) According to the above solution, it may be understood that the rain shield assembly according to the present disclosure has at least two cover plate assemblies, which, when opened, will jointly form a closed additional pipe structure connected to the open end of the pipe to guide the exhaust gas of the pipe to a further space. Such an arrangement may reduce noise on the one hand, and prevent backflow of the exhaust gas on the other hand. The cover plates, when closed, can shield the opening of the pipe to prevent entry of rainwater.
(55) The above depictions of various embodiments of the present disclosure are provided to those having ordinary skill in the art for depiction purpose, and are not intended to exclude other embodiments from the present disclosure or limit the present disclosure to a single disclosed embodiment. As described above, various alternatives and modifications of the present disclosure will be apparent to those of ordinary skill in the art. Accordingly, although some alternative embodiments have been described in detail, those having ordinary skill in the art will understand or readily develop other embodiments. The disclosure is intended to cover all alternatives, modifications and variations of the present disclosure described herein, as well as other embodiments falling within the spirit and scope of the present disclosure described herein.