Method for characterizing the hydrocarbon content of a reformate stream
US-9933408-B2 · Apr 3, 2018 · US
US12523587B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12523587-B2 |
| Application number | US-202218548943-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 21, 2022 |
| Priority date | Mar 5, 2021 |
| Publication date | Jan 13, 2026 |
| Grant date | Jan 13, 2026 |
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A modular measuring device for determining a density of a measurement medium includes a support module, a first measuring tube module and at least one further measuring tube module, wherein the support module has a receptacle for detachably fastening the measuring tube modules, a contactless temperature sensor, a primary exciter component along with a primary sensor component, wherein each measuring tube module has a restraint complementary to the receptacle of the support module, a vibrating tube, a secondary exciter component complementary to the primary exciter component, and a secondary sensor component complementary to the primary sensor component, wherein each vibrating tube of the measuring tube modules has a different tube diameter, a straight first tube leg, a straight second tube leg, a curved first tube bend and a curved second tube bend.
Opening claim text (preview).
The invention claimed is: 1 . A modular measuring device for determining a density of a measurement medium, the device comprising: a support module; a first measuring tube module; and at least one further measuring tube module, wherein the support module includes: a receptacle for detachably fastening the first measuring tube module and at least one further measuring tube module; a contactless temperature sensor; a primary exciter component; and a primary sensor component, wherein each measuring tube module includes: a restraint that is complementary to a restraint of the support module; a vibrating tube; a secondary exciter component that is complementary to the primary exciter component; and a secondary sensor component that is complementary to the primary sensor component, wherein each vibrating tube of each measuring tube module has a different tube diameter and includes a straight first tube leg, a straight second tube leg, a curved first tube bend and a curved second tube bend, wherein the first tube legs are each connected to a respective first tube bend at a primary connection point, the respective first tube bends are each connected to a respective second tube bend, and the respective second tube bends are each connected to a respective second tube leg at a secondary connection point, wherein the primary connection point and the secondary connection point of each measuring tube module lie in a respective plane, wherein the respective planes have a respective distance relative to one another, which corresponds to a difference between the respective tube diameters of each vibrating tube, and wherein each first tube bend and each second tube bend have an identical inner radius or an identical outer radius, such that center lines associated with each respective vibrating tube intersect at a first intersection point and at a second intersection point, wherein the contactless temperature sensor is arranged such that, when the first measuring tube module and/or the at least one further measuring tube module is received in the support module, the contactless temperature sensor is directed at the respective first intersection point or the respective second intersection point. 2 . The modular measuring device according to claim 1 , wherein a respective tube section is arranged between each first tube bend and each second tube bend, which tube section connects the first tube bend and the second tube bend. 3 . The modular measuring device according to claim 2 , wherein each tube section is straight. 4 . The modular measuring device according to claim 1 , wherein each first tube leg and each second tube leg extend parallel to one another. 5 . The modular measuring device according to claim 1 , wherein the secondary exciter component of each measuring tube module is arranged on its measuring tube module on a longitudinal axis, wherein the respective vibrating tube is symmetrical with respect to the longitudinal axis. 6 . The modular measuring device according to claim 1 , wherein the primary exciter component comprises a coil and each secondary exciter component comprises a permanent magnet, or wherein each secondary exciter component comprises a coil and the primary exciter component comprises a permanent magnet. 7 . The modular measuring device according to claim 1 , wherein each secondary sensor component is arranged on the first tube leg or on the second tube leg of its measuring tube module. 8 . The modular measuring device according to claim 1 , wherein each measuring tube module includes at least two identical vibrating tubes. 9 . The modular measuring device according to claim 1 , wherein each measuring tube module extends along a longitudinal axis, about which its vibrating tube is symmetrical, and wherein all measuring tube modules have a same length extending along the longitudinal axis. 10 . The modular measuring device according to claim 1 , wherein each measuring tube module extends along a longitudinal axis, about which its vibrating tube is symmetrical, and wherein all vibrating tubes of all measuring tube modules intersect at a third intersection point on the longitudinal axis.
vibrating tube, tuning fork · CPC title
by using flow properties of fluids, e.g. flow through tubes or apertures · CPC title
using variation of the resonant frequency of an element vibrating in contact with the material submitted to analysis (G01N9/34 takes precedence) · CPC title
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