Flow rate measuring apparatus for fluid media
Abstract
Gegenstand der Erfindung ist eine Durchflussmengenmesseinrichtung für fluide Medien bestehend aus einem Gehäuse (1), dessen Inneres durch eine Gehäuseinnenwand (2) begrenzt ist, einem innerhalb des Gehäuses (1) angeordneten Messrohr (3), das eine Messstrecke (4) für eine Laufzeitmessung bestimmt, und einer Ultraschallmesseinrichtung umfassend mindestens einen Ultraschallwandler (5) zur Abstrahlung von Ultraschallwellen in das Gehäuseinnere, mindestens einen Umlenkspiegel (6) an der Messtrecke (4) mit einer Vorderseite (7), mittels dem die Ultraschallwellen des Ultraschallwandlers (5) in die Messtrecke (4) umgelenkt werden, und einer der Vorderseite gegenüberliegenden Rückseite (8), wobei der Umlenkspiegel (6) einen Tragearm (9) aufweist, der zwischen der Gehäuseinnenwand (2) und dem Messrohr (3) gehaltert ist. Die Erfindung ermöglicht eine einfache Bauweise und Handhabbarkeit der Durchflussmengenmesseinrichtung.

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Projected expiry passed 16 December 2025, 0.8 years ago.
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15 claims: 9 independent, 6 dependent
- c-de-0001Flow rate measuring device for fluid media with a housing (1) whose inside by a casing inner wall (2) is limited, one within the housing (1) arranged measuring tube (3), which determines a measuring section (4) for a delay time measurement, and an ultrasonic measuring device comprising at least one ultrasound transducer (5) for emitting ultrasonic waves into the housing interior, at least one deflection mirror (6) on the measuring section (4) having a front face (7), by means of which the ultrasonic waves of the ultrasonic transducer (5) in the measuring section (4) are deflected and a rear side opposite the front side (8), characterized in that the deflecting mirror (6) comprises a support arm (9) which is between the casing inner wall (2) and the measuring tube (3) is supported.
- c-de-0004Flow rate measuring device according to one of the preceding claims, characterized in that is the angle between the support arm (9) and the front side (7) of the deflection mirror (6) 45 ° -150 °, preferably 90 ° -135 °, particularly preferably 135 °.
- c-de-0005Flow rate measuring device according to one of the preceding claims, characterized in that the support arm (9) is flat with a front side (10) and a back (11), wherein the front side (10) of the outer wall of the measuring tube (3) and the back (11) opposite to the housing inner wall (2).
- c-de-0006Flow rate measuring device according to one of the preceding claims, characterized in that the deflecting mirror (6) and its support arm (9) are integrally formed.
- c-de-0007Flow rate measuring device according to one of the preceding claims, characterized in that the support arm (9) over a length of at least 1.0, preferably 1.5, more preferably 2.0 of the width of the measuring tube (3) between the housing inner wall (2) and the measuring tube (3) is supported.
- c-de-0008Flow rate measuring device according to one of the preceding claims, characterized in that the housing inner wall (2) and / or the outer wall of the measuring tube (3) comprise a guide (12) for the support arm (9).
- c-de-0010Flow rate measuring device according to one of claims 2 to 9, characterized in that the support arm (9) in the area of a receptacle for the housing inner wall (2) and / or outer wall of the measuring tube (3) has congruent shape and in this region on the casing inner wall (2) and / or outer wall of the measuring tube (3).
- c-de-0011Flow rate measuring device according to one of the preceding claims, characterized in that the measuring tube (3) has on its outer wall spacers (13) which are in direct contact with the casing inner wall (2), whereby the measuring tube (3) within the housing (1) is held.
- c-de-0013Flow rate measuring device according to one of the preceding claims, characterized in that the measuring tube (3) over part of the circumference having a return portion (14) receiving a portion of the ultrasonic transducer (5).
- c-de-0014Flow rate measuring device according to one of the preceding claims, characterized in that a flow conditioner (16) for a vortex flow poor steering of the fluid medium is provided in the region of the mirror (5).
Independent claims10
21 paragraphs, as filed
p0001The invention relates to a flow rate measuring device for fluid media.
p0002Flow measuring devices for fluid media, use the ultrasonic waves to measure the flow, are known from the prior art, for example, the Danish utility model specification 38 808 known. The device contains a flow-through of the medium measured section, at opposite ends thereof deflecting mirrors are provided. Via the deflecting mirror the sound waves of the ultrasonic transducer can be deflected in the measuring section. The deflecting mirrors are held by multi-piece reflector inserts, which are mounted at right angles to the flow-through measurement section in holes in the housing inner wall of the flow meter.
p0003The design effort for production and assembly of reflector inserts for deflecting is costly.
p0004The present invention has for its object, a flow rate measuring device which it combines the simple design with ease of handling in the preamble claim 1 to provide the type mentioned.
p0005The invention solves this problem by a flow rate measuring device according to claim 1. Preferred embodiments of the invention can be found in the dependent claims. Thereafter, the deflection mirror on a support arm which is supported between the housing inner wall and the measuring tube.
p0006Advantageously, the support arm is designed for insertion into a space or receptacle between the measuring tube and the housing inner wall. The inserted support arm is then preferably parallel to the measuring tube or the flow-through measuring section oriented.
p0007The support arm may have any shape which enables supporting of the deflecting mirror. The support arm can, for example, as a pin or even surface, be in the form of a Tragerarmplatte with a front and back. In the last case are in the assembled state of the front side, the outer wall of the measuring tube and the rear side opposite to the housing inner wall.
p0008The angle between the support arm and the deflection mirror depends in relation to the deflection mirror and the measurement section essentially on the positioning of the ultrasonic transducer. At right angle reflection of the sound waves of the ultrasonic transducer through the front side of the deflection mirror in the measurement path, the angle between the support arm and the front of the deflection mirror preferably about 135 ° when the support arm is oriented parallel to the measuring tube or the flow-through measuring section. In general, it will be necessary that the angle between the support arm and the front of the deflection mirror 45 ° -150 °, preferably 90 ° -135 °.
p0009the invention of the reflecting mirror and its support arm Further are integral to a preferred feature. This simplifies to a significantly prepare the construction of the flow rate measuring device and allows the other folding mirror and the support arm in a single operation. The invention has recognized that certain materials, such as stainless steel sheet, excellent both as a reflecting mirror, as are also suitable as support arm. Thus, deflecting mirror and support arm may be integrally stamped from stainless steel sheet, before subsequently whose reflection properties can be improved by polishing the front side of the deflection mirror and the support arm is angled relative to the deflecting mirror.
p0010The longer the distance is, with the support arm between the measuring tube and the inner housing wall is held, the better the support arm is secured against changes in position. For this reason, the carrier arm according to a preferred embodiment of the invention over a length of at least 1.0, preferably 1.5, particularly preferably supported 2.0 the width of the diameter of the measuring tube between the housing inner wall and the measuring tube.
p0011The support arm can be clamped between the housing inner wall and the measuring tube. A more precise and firmer positioning of the support arm may, however, be achieved by a guide for the support arm, for example, a groove in the inner housing wall and / or the outer wall of the measuring tube in which the supporting arm is guided and supported. Of particular advantage, it is also, when the supporting arm in the region of the receptacle comprises a congruent to the housing inner wall and / or outer wall of the measuring tube form and is applied in this region on the casing inner wall and / or outer wall of the measuring tube.
p0012In order to keep the measuring tube in the housing and fix the measuring tube may have on its outer wall spacers, which are in direct contact with the housing inner wall. These spacers can be formed or rib, for example, nose-like and engage in axial grooves or corrugation on the housing inner wall.
p0013A positioning and fixing of the measuring tube in the housing can also be effected in that the measuring tube over a portion of the periphery has a continuation section with receptacle for a head portion of the ultrasonic transducer. The sound waves radiating head region of the integrated into the housing ultrasonic transducer thus breaks through both the housing inner wall, and the continuation of the range of the measuring tube. This is the position the measuring tube and the deflection mirror, which is held by the supported between the measuring tube and the housing inner wall support arm, fixed with respect to the ultrasonic transducer. Measuring inaccuracies or false readings due to an unwanted change in position of the deflection mirror with respect to the ultrasonic transducers in the course of use, can thus be avoided.
p0014To reduce measurement inaccuracies founded turbulence of flowing past the deflecting mirrors fluid medium flow conditioner can be used. For example, the rear side of the deflection by appropriate attachments are designed verwirbelungsberuhigend.
p0015Embodiments of the invention are illustrated below with reference to drawings. Show it:<dl id="dl0001"><dt>Fig. 1</dt><dd>an interrupted cut long through the housing in the end regions of the measuring tube;</dd><dt>FIG. 2</dt><dd>a partial section through the housing already in the end of the measuring tube to a further embodiment of the invention;</dd><dt>Fig. 3</dt><dd>a section transversely through the housing; </dd><dt>Fig. 4</dt><dd>a section transversely through the housing taken along a line IV-IV of Fig. 1;</dd><dt>Fig. 5</dt><dd>Support arm and mirror (in one piece);</dd><dt>Fig. 6</dt><dd>Support arm and mirror (in one piece), with hood;</dd><dt>Fig. 7</dt><dd>a partial section through the housing already in the end of the measuring tube to a further embodiment of the invention.</dd></dl>
p0016FIGS. 1 and 4 schematically show the structure of a flow rate measuring device for fluid media. The flow rate measuring device has a housing 1, whose interior is bounded by a casing inner wall of the second In the interior of a measuring tube 3 is arranged. In the vicinity of both ends of the measuring tube 3, the housing 1 seats for the ultrasonic transducer 5, the break with their head area, the housing inner wall. Seals 18, for example from the prior art known quad rings seal the existing between the ultrasonic transducer 5 and the housing 1 interspaces. Seals 18 also seal the two-part measuring tube 3 from the contact area of both parts and are secured by a circumferential collar 19 on the measuring tube. 3 With particular reference to FIG. 4 to see, the peripheral collar 19 in the ultrasonic transducer 5 opposite region was suspended at when required withdrawal of the measuring tube 3 at the ultrasonic transducer 5 past allow. The ultrasonic transducer opposite a deflection mirror 6 having a front face 7 and a rear side 8 is arranged. About the front sides 7 of the deflection mirror 6, the sound waves of the ultrasound transducer 5 are diverted into the measuring section. 4 The deflection mirror 6 is held by a support arm. 9 The support arm 9 has a front side 10 and a back side 11. The deflection mirror 6 is formed integrally with the support arm. 9 The support arm 9, which has an angle of about 135 ° relative to the front face 7 of the deflection mirror 6, is held in an intermediate space between the housing inner wall 2 and the measuring tube 3rd In this case, each of the front face 10 and the outer wall of the measuring tube 3 and the rear side 11 and the inner housing wall 2 are opposite.
p0017The illustrated in, Figures 1 and 4 embodiment of the invention is easy to handle due to the simple design, maintain and repair. Thus, measuring tube 3, support arm 9 can be removed with the reflecting mirror 6 as a unit or individually through the side opening of the housing 1 and the ultrasonic transducer 5 over. An important advantage of this construction is that the so-consuming development of ultrasonic transducers 5 can be avoided in order to access the measuring tube 3 and the reflecting mirror 6 can.
p0018In FIG. 4 is further shown that the supporting arm 9 in a guide 12, formed of a groove having a groove base 17 in the inner housing wall 2 on the one hand, and on the opposite side of the Tragerarms 9 by a arranged on the outer wall of the measuring tube 3 saddle piece 15 with a flat bottom surface, out. On these surfaces, the carrier arm 9 is located with its front side 10 and its rear side 11 binding to.
p0019In another embodiment shown in FIG. 2, the measuring tube 3 a continuation section 14 which extends over part of the periphery of the measuring tube 3 at the tube end and has a receptacle for the sound waves radiating head region of the ultrasound converter 5.
p0020The measuring tube 3 further comprises spacer 13 (s. Fig. 3 and 4), which (not shown) can engage in axial grooves of the housing inner wall 2. In FIG. 3, the front side 10 of the support arm 9 is located opposite a flattening at the Au βenwand the measuring tube 3. That is, the opposing surfaces abut each other and are congruent in the sense of the present invention. Simultaneously, the support arm 9 is guided in the guide formed by the two spacers 13 of the measuring tube. 3 The rear side 11 of the support arm 9 is rounded at the side edges and thus has a larger contact area on the surface of the inner housing wall 2. Thus, the positioning and fixing of Tragerarms between measuring tube 3 and the housing inner wall 2 is supported.
p0021FIGS. 5 and 6 show a detailed illustration of the deflection mirror 6 with support arm 9. The support arm 9 has on its longitudinal sides on semicircular recordings, in the corresponding regions of the outer wall of the measuring pipe 3 (not shown) engage. This is a fixed connection, quasi, which links between support arm 9 and the measuring tube. 3 The deflection mirror 6 has in relation to the supporting arm 9 in the region of the solid line by an angle of 135 °, which is not visible in plan view. The deflection mirror 6 may be a flow stabilizer 16 mounted on its rear side 8 in the form of a shoe-like cover for a vertebrate poor flow steering, which the front of the deflection mirror 7 6 encompassing edge portions are shown in FIG. 6. The use of the shoe-like cover 16 as an integral part of the embodiment shown in Fig. 2 is shown in Fig. 7.
8 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8
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| DE202012007472U1 | Cited by | Germany | – | Search report | – |
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| EP2267416A1 | Cited by | European Patent Office (EPO) | – | Search report | – |
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| US9933291B2 | Cited by | United States of America | – | Applicant | – |
| EP2317288A1 | Cited by | European Patent Office (EPO) | – | Search report | – |
| WO2015049122A1 | Cited by | World Intellectual Property Organization (WIPO) | – | International search | – |
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| WO2019214780A1 | Cited by | World Intellectual Property Organization (WIPO) | – | Applicant | – |
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| EP1493998A2 | Cites | European Patent Office (EPO) | X | Search report | 1-15 |
| DE20107894U1 | Cites | Germany | X | Search report | 1-15 |
2 members in 1 office; this record represents the family
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| EP1798528A1This record | European Patent Office (EPO) | A1 | |
| EP1798528B1 | European Patent Office (EPO) | B1 |
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Numbers
- Publication
- 1798528
- Application
- 50276369
Titles3
- German
- Durchflussmengenmesseinrichtung für fluide Medien
- English
- Flow rate measuring apparatus for fluid media
- French
- Dispositif de mesure de débit destiné à des fluides
Classification
- CPC, 1
- G01F1/662
- IPC, 1
- G01F1 66
Designated states36
- Contracting states, 31
- Austria
- Belgium
- Bulgaria
- Switzerland
- Cyprus
- Czechia
- Germany
- Denmark
- Estonia
- Spain
- Finland
- France
- United Kingdom
- Greece
- Hungary
- Ireland
- Iceland
- Italy
- Liechtenstein
- Lithuania
- Luxembourg
- Latvia
- Monaco
- Netherlands (Kingdom of the)
and 7 moreShow fewer
- Poland
- Portugal
- Romania
- Sweden
- Slovenia
- Slovakia
- Türkiye
- Extension states, 5
- Albania
- Bosnia and Herzegovina
- Croatia
- North Macedonia
- Yugoslavia, later Serbia and Montenegro (until 2006)