FLOW-THROUGH MEASURING STATION
20200173974 ยท 2020-06-04
Inventors
- Stephan Jugert (Dresden, DE)
- Thomas Pfauch (Leipzig, DE)
- Holger Lippert (Leisnig, DE)
- Hongshuo Domnick (Dresden, DE)
Cpc classification
International classification
Abstract
A flow-through measuring station includes at least one flow cell having a fluid channel. The fluid channel has a fluid inlet and a fluid outlet and is configured to conduct a liquid medium. One or more flow cells each include at least one sensor configured to be contacted with the medium and to determine at least one respective media property. At least one illumination unit is configured to indicate a respective state of at least one sensor. The measuring station also includes a transmitter/measuring transducer which is configured to operate the at least one sensor and the at least one illumination unit, and to determine in each case a state of at least one sensor.
Claims
1. A flow-through measuring station, comprising: at least one flow cell having a respective fluid channel, wherein the fluid channel has a fluid inlet and a fluid outlet, and wherein the fluid channel is configured to conduct a liquid medium; at least one sensor which is arranged in or on a flow cell, wherein each flow cell has at least one sensor, wherein the at least one sensor is configured to be contacted with the medium and to determine at least one respective media property; and at least one illumination unit; wherein the measuring station comprises a transmitter/measuring transducer which is configured to operate the at least one sensor and the at least one illumination unit, and to determine in each case a state of at least one sensor, wherein the transmitter/measuring transducer is connected in each case to the sensor using an electrical sensor connection cable; wherein the at least one illumination unit is configured separately from the sensor and transmitter/measuring transducer, and is mechanically connected to the flow measuring cell; and wherein the at least one illumination unit is configured to indicate in each case a state of at least one sensor.
2. The measuring station of claim 1, wherein the measuring station has at least two sensors which are arranged in or on at least one flow cell, and wherein the at least one illumination unit is configured to indicate the states of at least two sensors.
3. The measuring station of claim 1, wherein the measuring station has at least two flow cells and an illumination unit for each flow cell.
4. The measuring station of claim 1, wherein at least one flow measuring cell has at least two sensors, and wherein an illumination unit is associated with the flow measuring cell having at least two sensors, wherein the illumination unit is configured to indicate a respective state of individual sensors of the associated flow measuring cell.
5. The measuring station of claim 4, wherein the illumination unit comprises at least one signal lamp for individual sensors or individual flow cells.
6. The measuring station of claim 5, wherein one or more signal lamps belonging to a sensor or to a flow cell are configured to emit light of different colors, or wherein a signal lamp belonging to a sensor or to a flow cell is configured to emit light having a selectable color.
7. The measuring station of claim 6, wherein the transmitter/measuring transducer is connected to the signal lamps by means of connecting electrical cables, or wherein the illumination unit or the signal lamp has a microcontroller, which microcontroller is configured to activate the signal lamps, wherein the transmitter/measuring transducer is connected to the microcontroller by means of a connecting electrical cable, or wherein the illumination unit has an LED strip which can be activated by means of a connecting electrical cable, wherein the LED strip has a plurality of LEDs or LED groups which are respectively associated with a sensor or a flow cell.
8. The measuring station of claim 5, wherein the illumination unit can be induced, using the transmitter/measuring transducer, to operate at least one signal lamp in a flashing manner.
9. The measuring station of claim 8, wherein the measuring station has at least one command interface, by means of which command interface external commands can be received, wherein the transmitter/measuring transmitter is configured to cause the illumination unit to operate at least one signal lamp in a flashing manner if a corresponding command is input.
10. The measuring station of claim 1, wherein the flow cell is of modular design, wherein modules of the flow cell are configured to accommodate at least one sensor.
11. The measuring station of claim 10, wherein at least one signal lamp is associated with each module.
12. The measuring station of claim 11, wherein signal lamps have at least one illuminant from the following list: LED, OLED, multicolor LED.
13. The measuring station of claim 12, wherein status signals from signal lamps correspond to the User Association of Automation Technology in Process Industries (NAMUR) standard NAMUR 107.
14. The measuring station of claim 1, wherein the flow cell has a flow/media indicator, and wherein the flow/media indicator has an inductive proximity switch, and wherein at least one illumination unit is configured to indicate a respective state of the flow/media indicator.
15. The measuring station of claim 14, wherein the flow/media indicator is arranged in a module.
16. The measuring station of claim 14, wherein the flow/media indicator is configured to output a warning message given a low flow rate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The present disclosure will be described in the following with reference to exemplary embodiments.
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION
[0030]
[0031] Alternatively, the sensors may be arranged on the flow measuring cell without media contact and may be based on a contactless measuring principle. A measuring station according to the present disclosure may also comprise only one sensor.
[0032] The transmitter/measuring transducer is configured to monitor at least one sensor. Depending on the state of the at least one monitored sensor, an optical signal may be output in the area of the flow measuring cell by means of the illumination unit. For example, the signals may be encoded in accordance with the Namur 107 standard dated 10 Apr. 2017. This would identify a sensor failure with red, a function check of the sensor with orange, a sensor operation outside of a specification with yellow, a maintenance requirement of the at least one sensor with blue, and a diagnosis with green. As an alternative to the variant shown in
[0033]
[0034] Given flow cells with numerous sensors, a signal lamp 31 may be associated with each module, since during maintenance a technician may recognize, when viewing the flow cell, sensors of which module or which sensor requires attention.
[0035] Alternatively, only one signal lamp 31 may also be associated with the flow cell; in this way, a cost-effective measuring station can be designed.
[0036] An advantage of a modular embodiment of the flow cell is expandability in the event of a need for further sensors for liquid analysis.
[0037]
[0038] A signal lamp has in each case at least one illuminant from the following list: LED, OLED, multicolor LED. The illuminant can be arranged on an LED strip, for example.
[0039]
[0040] As an alternative to the exemplary embodiments shown in
[0041] The signal lamps 31 shown in
[0042] As shown in
[0043] The illumination units shown in