The present application relates to a tank vessel, particularly, an equipment for measuring a fluid pressure and a liquid level inside a tank vessel.
Most conventional tank containers and tank vehicles are equipped with pressure sensors and liquid level sensors for transmitting analog quantity values of pressures and liquid levels of tankers to analog dashboards. To learn a pressure and a liquid level of a certain tank container or tank vehicle, one has to observe the dashboard by naked eye. Moreover, for sake of safety, a driver has to closely observe the value of the pressure inside tank vehicle during transportation, in order to ensure the tank is not in danger of an explosion or the like due to increased pressure. Such a mode has defects as follows, first, the signals picked up are not sufficiently accurate; second, observation is not convenient: because the dashboard is attached to the tank, the driver has to turn his head for observing the pressure value during transportation, which further increases danger of transportation. Moreover, the dashboard of the liquid level meter is generally mounted inside a control box, it is not easy for the driver to learn variation of the liquid level while driving, if there is a medium leakage during transportation, however, the driver cannot find out it in time, then on the one hand, the cargo may lose, and on the other hand, a safety accident may take place because the transported medium itself has characteristics of flammability and toxicity, etc.
The invention is aimed to overcome the defects of the prior art, realizing digitalization of values of pressures and liquid levels of the tank containers and tank vehicles, allowing both of drivers and remote controlling terminals, during transportation of the tank containers and tank vehicles, timely knowing variation conditions of the transportation medium, such as pressures and liquid levels, so as to improve safety of transportation.
For achieving the above purposes, the invention provides a pressure and liquid level sensing system for a tank container or tank vehicle, the tank container or tank vehicle comprises a vessel for containing a liquid substance. The pressure and liquid level sensing system for a tank container or tank vehicle comprises a pressure sensor for measuring a gas pressure inside the vessel and a liquid level sensor for measuring a liquid level inside the vessel. The pressure sensor comprises a first pressure sensitive element having a pressure input port which is connected to a gas-phase space of the vessel via a tube. The liquid level sensor comprises a second pressure sensitive element having a first and a second pressure input ports, wherein the first pressure input port is connected to a gas-phase space of the vessel via a tube; and the second pressure input port is connected to a liquid-phase space of the vessel via a tube. The pressure sensor comprises a first circuit board which in turn comprise a first processing circuit for converting a pressure at the pressure input port into an electric signal of voltage or current; the liquid level sensor comprises a second circuit board which in turn comprises a second processing circuit for converting pressure signals at the first and second pressure input ports into an electric signal of voltage or current.
The first circuit board further comprises a first signal adjusting circuit which converts the electric signal provided by the first processing circuit into an electric signal of 4-20 mA or 0-10V standard. The electric signal provided by the first signal adjusting circuit is an output signal of the pressure sensor.
The second circuit board further comprises a calculating circuit which calculates a liquid level value based on the electric signal provided by the second processing circuit, and a second signal adjusting circuit which converts the electric signal provided by the calculating circuit into an electric signal of 4-20 mA or 0-10V standard. The electric signal provided by the second adjusting circuit is an output signal of the liquid level sensor.
The calculating circuit comprises a microprocessor.
The pressure input port of the first pressure sensitive element comprises a pressure interface which has a thread connection with a body of the pressure sensor. In the second pressure sensitive element, the first pressure input port comprises a first pressure interface, and the second pressure input port comprises a second pressure interface. The first and second pressure interfaces are located at a same interface component which has a thread connection with a body of the liquid level sensor. Compared with the prior art, the pressure and liquid level sensing system of the invention for tank containers and tank vehicles are accurate for measurement, and the measured value can be digitalized, allowing drivers and remote controlling terminals knowing variation conditions of the transported medium, such as pressures and liquid levels, etc, thereby improving transportation safety.
The invention will be described more detailed hereinbelow by referring to the drawings. According to an embodiment of the pressure and liquid level sensing system of the invention for tank containers and tank vehicles, as shown in
The components of the pressure sensor 100, as shown in
The components of the liquid level sensor 200, as shown in
For the application to a tank containing LNG, since LNG is a flammable and explosive hazardous material, the mechanical structures of the sensors 100, 200 are required to be explosion suppressible and tightly sealed accordingly. In this embodiment, tightness is secured mainly by utilizing the O-rings, as well as the outgoing line locking apparatus at a protection level of IP68 and the upper cover of a cap structure. The casing may be made of a material of stainless steel. In periodically verifying the sensors, zero and full scale calibrations of the sensors can be carried out by opening the upper cover, and adjusting the two potentiometers on the printed circuit board.
As for the circuits on the first printed circuit board 104 in the sensor 100 and the second printed circuit board 203 in the sensor 200, as shown in
The above content is only some preferred embodiments of the present invention, not the solutions to limit the present invention. Those skilled in the art may easily carry out variations and modifications according to the basic contemplation and spirit of the invention, so the protecting scope of the invention should be defined by the appended claims.
Number | Date | Country | Kind |
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200620015182.0 | Oct 2006 | CN | national |