The invention relates to a Coriolis measuring transducer as well as to a Coriolis measuring device having a Coriolis measuring transducer for registering a property of a medium located in measuring tubes of the measuring transducer. Media properties of interest are, in such case, usually density or mass flow of the medium.
Coriolis measuring devices utilize the feature that measuring tube oscillations produced by an exciter are influenced by media properties. Measurement signals of the oscillations produced by sensors can be evaluated, in order to win desired information concerning the media properties. In order to define the measuring tube oscillations, in such case, usually fixing elements are provided, which define oscillation nodes. In the case of Coriolis measuring transducers having a measuring tube pair, this is accomplished usually with at least two fixing elements per oscillation node; see, for example, DE102005046319A1.
These fixing elements, however, limit an oscillation range of a measuring tube and, thus, a measuring power of the Coriolis measuring device.
An object of the invention is, consequently, to expand the oscillation range of a measuring tube.
The object is achieved by a Coriolis measuring transducer as defined in independent claim 1 as well as by a Coriolis measuring device as defined in independent claim 6.
A Coriolis measuring transducer of the invention for a Coriolis measuring device for measuring a property of a medium flowing through a pipeline comprises:
Limiting the first separation enlarges the oscillation range. The stiffening elements limit in the region of the outer measuring tube bends a dependence of the measuring tube diameter on a media pressure.
Such a dependence has significant effects on a stiffness of the measuring tubes and, thus, on their oscillation characteristics.
The combination of the limiting of the first separation and the provision of stiffening elements in the region of the measuring tube bends between the measuring tube groups thus improves the measuring power by increasing the oscillation range.
The measuring tube centerline is a line through centers of measuring tube cross-sections.
In an embodiment, the measuring transducer has at least 2 stiffening elements per measuring tube bend.
In this way, the dependence of the measuring tube diameter on the media pressure can be further decreased.
In an embodiment, the stiffening element is ring shaped or follows a ring form.
The stiffening element thus at least partially surrounds the measuring tube, and secures a periphery of the measuring tube.
In an embodiment, the stiffening element has, as the measuring tube, a first material or is produced from this material.
The first material is, in such case, a metal, especially a stainless steel, or a ceramic or a plastic
In an embodiment, the measuring tube has a measuring tube wall thickness,
In this way, the stiffening element can act against a measuring tube internal pressure and compel in very good approximation a measuring tube diameter that remains constant.
In an embodiment, the outer measuring tube bends have relative to the measuring tube centerline, in each case, a bend radius of less than 5 measuring tube diameters and/or at least 2 measuring tube diameters. In the case of a given measuring tube length, for example, established by external specifications, a fraction of the outer measuring tube bends to a measuring tube length can be limited by limiting the bend radii. A minimum size assures that the measuring tubes have a sufficiently high quality in the region of the measuring tube bends and are not damaged by the process for producing the bends.
In an embodiment, the media property to be determined is mass flow or density.
A Coriolis measuring device of the invention comprises a Coriolis measuring transducer of the invention and an electronic measuring/operating circuit for operating the exciter, for registering measurement signals of the sensors and for providing measured values of the media property.
The invention will now be described based on examples of embodiments presented in the appended drawing, the figures of which show as follows:
a) and 2b) a Coriolis measuring transducer of the invention.
a) shows an embodiment of the invention for a pair of measuring tubes of a Coriolis measuring transducer of the invention and
The Coriolis measuring transducer includes a first group of fixing elements 15.1 having two fixing elements 15 as well as a second group of fixing elements 15.2 having two fixing elements 15. The groups of fixing elements are adapted to define an oscillatory node point at each of the outer measuring tube bends.
The outer measuring tube bends have, in each case, a bend length, wherein according to the invention the fixing elements have, in each case, a first separation of at most 0.7 bend length, and, especially, at most 0.5 bend length, from their outer ends. In this way, an oscillation swing of the measuring tube is increased. The Coriolis measuring transducer can, in such case, also have more than two fixing elements 15 per group 15.1, 15.2.
According to the invention, furthermore, each outer measuring tube bend has a stiffening element 17, which supports and reinforces the measuring tube against media pressure. In this way, dependence of the measuring tube diameters on media pressure in the region of the outer measuring tube bends is reduced and, thus, a stiffness of the measuring tubes is stabilized. It is possible, however, also to provide more than only one stiffening element 17 per outer measuring tube bend 11.51, 11.52. The stiffening elements have, in each case, a second separation from the inner ends 11.62 of their measuring tube bends, wherein the second separation is at least 0.1 bend length, wherein the stiffening elements are arranged, in each case, on one measuring tube.
In an embodiment, the outer measuring tube bends have, measured to the measuring tube centerline, in each case, a bend radius of less than 5 measuring tube diameters and/or at least 2 measuring tube diameters. In the case of a given measuring tube length, for example, as established by external specifications, a limiting of the bend radii can limit a fraction of the outer measuring tube bends to a measuring tube length. A minimum size assures that sufficient space for the fixing elements and the stiffening elements is present.
The measuring tubes can, such as shown here, have between the outer measuring tube bends a central measuring tube bend 11.7, which is connected with the outer measuring tube bends by means of two straight sections.
In case the measuring transducer has more than one measuring tube pair, then fixing elements can, in each case, fix a pair of measuring tubes or more than one pair of measuring tubes.
In an embodiment, the stiffening element is ring shaped or follows a ring form.
A stiffening element thus surrounds any given measuring tube at least partially and reinforces a periphery of the measuring tube. In an embodiment, the stiffening element comprises, as the measuring tube, a first material or is produced from such material. The first material is, in such case, a metal, especially a stainless steel, or a ceramic or a plastic.
In an embodiment, the measuring tube has a measuring tube wall thickness, wherein the stiffening element has an outer radius, which is at least one measuring tube wall thickness more than a measuring tube radius and/or
In this way, the stiffening element can act against a measuring tube internal pressure and restrain in very good approximation a measuring tube diameter to remains constant.
Between the manifolds and the outer ends of the outer measuring tube bends, a straight measuring tube section can be arranged. In this way, it is assured that the manifold is connected with a measuring tube section of circularly shaped cross section. The process of bending the measuring tube bends causes locally small deviations from a circularly round shape of measuring tube cross-sections. Such can be disadvantageous for welding of manifold and measuring tube.
Number | Date | Country | Kind |
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10 2020 128 094.7 | Oct 2020 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2021/076257 | 9/23/2021 | WO |