CN1247974A - Pneumatic liquid level indicator - Google Patents

Pneumatic liquid level indicator Download PDF

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Publication number
CN1247974A
CN1247974A CN98122843A CN98122843A CN1247974A CN 1247974 A CN1247974 A CN 1247974A CN 98122843 A CN98122843 A CN 98122843A CN 98122843 A CN98122843 A CN 98122843A CN 1247974 A CN1247974 A CN 1247974A
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CN
China
Prior art keywords
liquid level
pump
pressure
supply pipe
air supply
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Granted
Application number
CN98122843A
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Chinese (zh)
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CN1109235C (en
Inventor
山田岩
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MUSASHINO MACHINE CO Ltd
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MUSASHINO MACHINE CO Ltd
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Publication of CN1247974A publication Critical patent/CN1247974A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F23/00Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm
    • G01F23/14Indicating or measuring liquid level or level of fluent solid material, e.g. indicating in terms of volume or indicating by means of an alarm by measurement of pressure
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B57/00Tank or cargo hold cleaning specially adapted for vessels
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F17STORING OR DISTRIBUTING GASES OR LIQUIDS
    • F17CVESSELS FOR CONTAINING OR STORING COMPRESSED, LIQUEFIED OR SOLIDIFIED GASES; FIXED-CAPACITY GAS-HOLDERS; FILLING VESSELS WITH, OR DISCHARGING FROM VESSELS, COMPRESSED, LIQUEFIED, OR SOLIDIFIED GASES
    • F17C13/00Details of vessels or of the filling or discharging of vessels
    • F17C13/02Special adaptations of indicating, measuring, or monitoring equipment
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D5/00Mechanical means for transferring the output of a sensing member; Means for converting the output of a sensing member to another variable where the form or nature of the sensing member does not constrain the means for converting; Transducers not specially adapted for a specific variable
    • G01D5/12Mechanical means for transferring the output of a sensing member; Means for converting the output of a sensing member to another variable where the form or nature of the sensing member does not constrain the means for converting; Transducers not specially adapted for a specific variable using electric or magnetic means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F15/00Details of, or accessories for, apparatus of groups G01F1/00 - G01F13/00 insofar as such details or appliances are not adapted to particular types of such apparatus
    • G01F15/005Valves
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B57/00Tank or cargo hold cleaning specially adapted for vessels
    • B63B2057/005Tank or cargo hold cleaning specially adapted for vessels of ballast tanks, e.g. from deposits, biological organisms; Ship-borne installations therefor

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Fluid Mechanics (AREA)
  • Mechanical Engineering (AREA)
  • Automation & Control Theory (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Ocean & Marine Engineering (AREA)
  • Measurement Of Levels Of Liquids Or Fluent Solid Materials (AREA)

Abstract

A liquid-level meter, permit controlling of the drive of a pump or the like according to short- time changes in the liquid level. This liquid-level meter has a feed pipe 2 insertable into the liquid in a tank, a pump 12 capable of supplying a compressed gas into the feed pipe 2, a check valve 14 provided between the pump 12 and the feed pipe 2, a pressure sensor 15 for measuring the air pressure in the feed pipe 2 and a control means 16 to control the pump 12 by a pressure data fed from the pressure sensor 15. In this case, the feed pipe 2, the pump 12, the check valve 14 and the pressure sensor 15 are arranged for each tank.

Description

Pneumatic liquid level indicator
The present invention relates to can be applicable to the Pneumatic liquid level indicator of the flow container of boats and ships etc.
On the ballast box or oil tank, water pot etc. of boats and ships such as container ship or oil tanker, be provided with the liquid level meter of the liquid level of the liquid that is used to detect storage.As everyone knows, the existing mode of these liquid level meters is float-type, bubble type etc.
The bubble type liquid level meter of current version is will be by the air supply pipe dispensing of pressurized air in being separately positioned on the liquid of being furnished with a plurality of flow containers of the compressor manufacturing of machine room by pipe arrangement.By giving the air of providing and delivering in the air supply pipe, the state that reaches capacity gradually of the air in the air supply pipe when being full of pressurized air in the air supply pipe, forms bubble and discharge by the bottom of the air supply pipe of opening.
At the flow container that will put into liquid, forms the air supply pipe that the pipe of free open constitutes along vertical direction configuration by the bottom, when liquid injects, in air supply pipe, supply with pressurized air in flow container, make the bottom of air supply pipe form bubble and discharge.This moment, the interior pressure P of air supply pipe equaled the value (total head) that pressure head (head) ρ H that liquid depth H multiply by fluid density ρ gained adds the air pressure of liquid upper, so the value that will deduct gained behind the air pressure of liquid upper from the total head of measuring is presented on the index gauge as the liquid level of liquid.Pressurized air is supplied with to the liquid level meter of each flow container through arm by the person in charge who lays above deck, or is supplied with to the liquid level meter of each flow container through independent pipe arrangement by the air compressor manufacturing of engine room.
As the type of the bubble type liquid level meter of the current version of such form, air-air type liquid level meter as shown in figure 15, the liquid level meter of air as shown in figure 16-electric type are known.The machine room that liquid level meter shown in Figure 15 does not show is in the drawings made pressurized air by air compressor, and this pressurized air is carried to each liquid level meter by arm 11.Pressurized air is to air supply pipe 2 inner fillings of the bottom of the terminal box 6 that is located at the liquid level meter.The lower end of air supply pipe 2 extends to the bottom near flow container always.Store up the liquid 3 that constitutes by goods oil, fuel wet goods lade, as water of ballast etc. in the flow container.When filling in the air supply pipe 2 during a certain amount of pressurized air, just form bubbles and discharge to liquid 3 in from the bottom 4 of air supply pipe 2.Air pressure in the air supply pipe 2 is corresponding with the liquid level of liquid 3 at this moment.Air pressure in this air hose 2 is measured by the pressure gauge that is arranged on pulpit 1, and this measured value is converted into electric signal.Be formed on the mode that in the pulpit 1 this electric signal is scaled the liquid level demonstration.In pulpit 1, the pipe of telling from the arm corresponding with each flow container 11 is introduced into, and pressure gauge is connected on each pipe, and is provided with the display device that the measured value that each pressure gauge is recorded is converted to electric signal, this electric signal is scaled the liquid level demonstration.
In addition, liquid level meter shown in Figure 16 adopts following manner, that is, the pressurized air of sending here by arm 11 is filled to the inside of the air supply pipe 2 of terminal box 6 bottoms that are located at the liquid level meter, when being filled to when a certain amount of, just forming bubbles and discharge from the bottom 4 of air supply pipe 2.The compressed-air actuated mensuration pressure of this moment is converted to electric signal by the clear to send devices (パ-ジ ト ラ Application ス ミ ッ -) 6 that are located in the terminal box 6, and this electric signal is delivered to the pulpit, and this electric signal further is scaled liquid level and shows.The pulpit is provided with the display device corresponding with each flow container.
The bubble type liquid meter of this existing type has advantage of simple structure, and air-air type especially as shown in figure 15 is because therefore the weak point that unrolls of signal wire, has the high advantage of degree of safety to the inflammability goods.Simultaneously, owing to fricton-tight portion except that the valve class, therefore has the advantage of being convenient to maintain.
But the liquid level meter of above-mentioned existing type has following shortcoming, although that is: the pressure variation before and after bubble is discharged in the pipe lower end of terminal box is different because of liquid head.And, liquid head is different because of different flow containers, but because pressurized air is supplied with by an air compressor, so, compressed-air actuated air pressure need keep the maximum pressure with the maximum liquid head balance that will measure, like this, and with respect to the flow container degree of depth or liquid head at that time, air pressure will be too high, and measuring accuracy will produce delicate variation.And, owing to be subject to Temperature Influence, therefore sufficient countermeasure must be arranged, in case the leakage of pipe joint just can not get required air pressure because of temperature variation etc. causes, this is fatal.And also there is following shortcoming in the ballast box that imports seawater, adheres to, grows owing to have marine creatures such as oyster, barnacle, sea grass from bottom to the inside of air supply pipe, also need how much carry out some preliminary works in flow container.
The present invention be directed to above-mentioned prior art problems and develop, its objective is provides a kind of small-sized liquid level meter, and this small-sized liquid level meter can be used as boats and ships flow container level gaging, it is the simple liquid level meter of kind of principle, can simplify preliminary work, save engineering cost, the reduction of erection time.
Another object of the present invention provides and a kind ofly can change the driving of control pump etc. according to short time of liquid level, and can realize economizing the Pneumatic liquid level indicator that can change.
In order to solve above-mentioned problem, the present invention the 1st aspect provides a kind of Pneumatic liquid level indicator, comprise: can insert the air supply pipe in the liquid in the flow container, can in air supply pipe, supply with the pump of pressure gas, be located at the retaining valve between pump and the air supply pipe, measure the pressure transducer of air supply pipe internal gas pressure, the control device of the pressure data control pump of sending here according to pressure transducer; It is characterized in that: air supply pipe, pump, retaining valve and pressure transducer are arranged on each flow container.
The present invention the 2nd aspect is characterised in that, in the Pneumatic liquid level indicator aspect the present invention the 1st, is measured by certain time interval by pressure transducer by the air pressure of the pressure gas that is pumped into air supply pipe, and this measured value is sent to control device successively.
The present invention the 3rd aspect is characterised in that in the Pneumatic liquid level indicator aspect the present invention the 2nd, control device is by the force value detected air pressure change value that detects successively, and the change value is the actuating speed that timing increases pump.
The present invention the 4th aspect is characterised in that, in the Pneumatic liquid level indicator aspect the present invention the 2nd, control device is according to the force value detected air pressure change value that detects successively, when the change value reduces the actuating speed of pump when negative.
The present invention the 5th aspect is characterised in that, in the Pneumatic liquid level indicator aspect the present invention the 1st, the continuous drive time of control device testing pump, when the continuous drive time reaches certain value, pump is suspended.
The present invention the 6th aspect is characterised in that in the Pneumatic liquid level indicator aspect the present invention the 5th, the time out of control device testing pump when time out reaches certain value, drives pump.
The present invention the 7th aspect is characterised in that, in the Pneumatic liquid level indicator aspect the present invention the 1st, pressure transducer reaches the certain upper limit value when above at the air pressure that detects, and carries out fault processing.
The present invention the 8th aspect is characterised in that, in the Pneumatic liquid level indicator aspect the present invention the 1st, pressure transducer during less than certain lower limit, carries out fault processing at the air pressure that detects.
The present invention the 9th aspect is characterised in that, in the Pneumatic liquid level indicator aspect the present invention the 1st, with respect to the primary data no change, and carry out zero point and revise when being roughly zero by the force value of this moment at the air pressure that detects for pressure transducer.
The present invention the 10th aspect is characterised in that, in the Pneumatic liquid level indicator aspect the present invention the 1st, has in the bottom of air supply pipe or peristome that level is cut off, is provided with the hole at the edge part of this peristome.
The present invention the 11st aspect is characterised in that in the Pneumatic liquid level indicator aspect the present invention the 1st, air supply pipe forms dual structure, and inside is provided with the little pipe of basal area, the outside protection tube that forms.
The present invention the 12nd aspect is characterised in that in the Pneumatic liquid level indicator aspect the present invention the 10th, the bottom of air supply pipe is made of the material that sea grass and shellfish are difficult to adhere to.
The present invention the 13rd aspect is characterised in that in the Pneumatic liquid level indicator aspect the present invention the 10th, the bottom of air supply pipe is by being used to prevent that the protection network that sea grass and shellfish adhere to from covering.
The present invention the 14th aspect is characterised in that in the Pneumatic liquid level indicator aspect the present invention the 1st, pump is intermittently driven, and the air pressure in the air supply pipe that records when the driving of pump is stopped to send to control device.
The present invention the 15th aspect is characterised in that in the Pneumatic liquid level indicator aspect the present invention the 1st, the air-breathing of pump utilizes the gas in the flow container to carry out.
The Pneumatic liquid level indicator of the present invention the 1st aspect comprises: can insert the air supply pipe in the liquid in the flow container, can in air supply pipe, supply with compressed-air actuated pump, be located at the retaining valve between pump and the air supply pipe, measure the pressure transducer of air supply pipe internal gas pressure, the control device of the pressure data control pump of sending here according to pressure transducer; Because air supply pipe, pump, retaining valve and pressure transducer are arranged on each flow container,, can operate as the electrical equipment that works independently simply so do not need numerous and diverse pipe arrangement operation.Because pressure gas just is full of the pipe of measurement section, so just enough as long as the pump of low capacity is installed.And, owing to be to supply with pressure gas from the near especially distance of distance measurement section, so be subjected to the influence of external temperature hardly.And, owing to be to supply with pressure gas from the near especially distance of distance measurement section, so control is simple, because the measurement section folding and unfolding is among the test section terminal box, so easy to maintenance.
The 2nd aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, measure by certain time interval by pressure transducer by being pumped into the compressed-air actuated air pressure of air supply pipe, this measured value is sent to control device successively, so can be according to the driving of variation control pump of short time of liquid level etc.
The 3rd aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, control device is by the force value detected air pressure change value that detects successively, the change value is the actuating speed that timing increases pump, so liquid level can correctly be measured liquid level when rising.
The 4th aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, control device is according to the force value detected air pressure change value that detects successively, when the change value reduces the actuating speed of pump when negative, so liquid level can correctly be measured liquid level when descending.
The 5th aspect according to the present invention is owing in the Pneumatic liquid level indicator aspect the present invention the 1st, the continuous drive time of control device testing pump, when the continuous drive time reaches certain value, suspend pump, so can economize energy.
The 6th aspect according to the present invention is because in the Pneumatic liquid level indicator aspect the present invention the 5th, the time out of control device testing pump when time out reaches certain value, drives pump, so can economize energy.
The 7th aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, pressure transducer reaches the certain upper limit value when above at the air pressure that detects, and carries out fault processing, so obstruction that can the emergency treatment air supply pipe, the fault of pressure transducer etc.
The 8th aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, pressure transducer during less than certain lower limit, carries out fault processing at the air pressure that detects, thus can be at one-way valve fault, carry out emergency treatment when gas leaks etc.
The 9th aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, with respect to the primary data no change, and carry out zero point and revise when being roughly zero by the force value of this moment at the air pressure that detects for pressure transducer.So needn't carry out zero point successively revises.
The 10th aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, has the peristome that inclination or level are cut off in the bottom of air supply pipe, edge part at this peristome is provided with the hole, so,, or resemble the situation of rolling always such as boats and ships even when air supply pipe is obliquely installed, also can pressure gas be emitted from the hole, reduce the gaging pressure error.
The 11st aspect according to the present invention; because in the Pneumatic liquid level indicator aspect the present invention the 1st; air supply pipe forms dual structure; inside is provided with the little pipe of basal area; outside form protection tube, thus the gas supplied amount seldom just can, so the little pump of use capacity is just passable; therefore, can realize the miniaturization of liquid level meter.
The 12nd aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 10th, the bottom of air supply pipe is made of the material that sea grass and shellfish are difficult to adhere to, so the gaseous emission portion of air supply pipe can be not blocked, can measure correct hydraulic pressure, thereby measure correct liquid level position.
The 13rd aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 10th, the bottom of air supply pipe is by being used to prevent that the protection network that sea grass and shellfish adhere to from covering, so the gaseous emission portion of air supply pipe can be not blocked, can measure correct hydraulic pressure, thereby measure correct liquid level position.
The 14th aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, pump is intermittently driven, the air pressure in the air supply pipe that records when the driving of pump is stopped to send to control device, so can obtain the little correct measured value of error at pressure variation hour mensuration pressure.
The 15th aspect according to the present invention, because in the Pneumatic liquid level indicator aspect the present invention the 1st, the air-breathing of pump utilizes the gas in the flow container to carry out, so can revise liquid portion pressure poor of suffered pressure in air supply pipe bottom and liquid upper automatically, reduce the measuring error that pressure, humidity, the density of gas cause.
Below, the embodiment to Pneumatic liquid level indicator of the present invention describes with reference to accompanying drawing, wherein,
Fig. 1 can use the outboard profile of one of the boats and ships of Pneumatic liquid level indicator of the present invention example for expression;
Fig. 2 is the outboard profile of the embodiment of expression Pneumatic liquid level indicator of the present invention;
Fig. 3 is the outboard profile of another embodiment of expression Pneumatic liquid level indicator of the present invention;
Fig. 4 is the sectional drawing of one of the inner structure of expression Pneumatic liquid level indicator of the present invention example;
Fig. 5 is another routine sectional drawing of the inner structure of expression Pneumatic liquid level indicator of the present invention;
Fig. 6 is the sectional drawing of another embodiment of expression Pneumatic liquid level indicator of the present invention;
Fig. 7 is an example of the control calcspar of Pneumatic liquid level indicator of the present invention;
Fig. 8 is the process flow diagram of the control action example of expression Pneumatic liquid level indicator of the present invention;
Fig. 9 is another process flow diagram of the control action example of expression Pneumatic liquid level indicator of the present invention;
Figure 10 is the another process flow diagram of the control action example of expression Pneumatic liquid level indicator of the present invention;
Figure 11 is the ballast box that the shows boats and ships liquid level when rising and the curve of an example of time relation;
Figure 12 is the ballast box that the shows boats and ships liquid level when draining and the curve of an example of time relation;
Figure 13 is the curve of an example of liquid level in the flow container of ballast box when the draining of rising stops that showing boats and ships and time relation;
The curve of one example of detected pressures and time relation when Figure 14 is used for the ballast box etc. of boats and ships for showing with Pneumatic liquid level indicator of the present invention;
Figure 15 is the planimetric map of the example of the existing Pneumatic liquid level indicator of expression;
Figure 16 is the planimetric map of another example of the existing Pneumatic liquid level indicator of expression.
In boats and ships shown in Figure 1 100, the flow container etc. that is used to adjust the oil tank of the ballast box of draft amount of ship or lade oil or fuel oil or loads clear water or potable water is located at the hull bottom or the shipboard position of hull interior.In above-mentioned various flow containers, need detect the liquid level meter of the liquid level of the liquid that stores.
Fig. 2 is the A-A sectional drawing of boats and ships shown in Figure 1, and hull bottom or shipboard portion in boats and ships inside are provided with flow containers 31,32 such as ballast box.In these flow containers, be provided with the Pneumatic liquid level indicator 21 of measuring liquid level in the flow container.In the flow container 32 of shipboard portion, be provided with the Pneumatic liquid level indicator 21a that has long air supply pipe 2a along vertical direction.Be provided with Pneumatic liquid level indicator 21b in the flow container 31 alow with crooked rectangular air supply pipe 2b.Above-mentioned air supply pipe 2b runs through the wall of flow container 31, and along continuous straight runs extends, and bends to the right angle in flow container downwards.Can detect liquid level in each flow container by these liquid level meters.
Fig. 3 shows another embodiment different with Fig. 2, shows that the flow containers such as ballast box that are located at hull bottom and shipboard portion are the boats and ships of continuous shape.In such flow container 33 because both sides 34,34 bendings of hull bottom, so, if with air supply pipe along the vertical direction straight line configuration, the bottom 4 of air supply pipe 2 does not just arrive hull bottom, can not measure correct liquid level.Therefore,, avoid the both sides 34,34 of hull bottom, make the bottom 4 of air supply pipe 2 arrive position, thereby can correctly measure liquid level near hull bottom with air supply pipe 2 bendings.
The inner structure of Fig. 4, Fig. 5 illustration Pneumatic liquid level indicator of the present invention.Fig. 4 (a) is the air-breathing direct attraction type Pneumatic liquid level indicator of outer gas that carries out from outer gas of pump, and Fig. 4 (b) shows the bottom of air supply pipe 2.Fig. 5 shows that pump sucks the flow container top attraction type Pneumatic liquid level indicator of gas in the flow container, and Fig. 5 (b) shows the bottom of air supply pipe 2.In Fig. 4 and example shown in Figure 5, but Pneumatic liquid level indicator 21 mainly is made of the terminal box 6 of pump 12, built-in pressure transducer 15 etc. and the air supply pipe 2 of inside filling gas.The upper end of air supply pipe 2 is connected the bottom of terminal box 6.
In example shown in Figure 4, the side of terminal box 6 be provided be used to suck outside the tail pipe 22 of gas.This tail pipe 22 connects the side of terminal box 6, is connected in terminal box 6 on the pump 12.Between the sidewall of tail pipe 22 and terminal box 6, be provided with liner.
The front end of air supply pipe 22 is sought shelter from wind and rain for dustproof and anti-, is bent downwardly along vertical direction.When the front end that can not make air supply pipe 22 because the problem in space is set is bent downwardly, can dust guard be installed at the front end of tail pipe 22.At this moment, the leading section of tail pipe 22 also can or make progress to the side.
Pump 12 is connected on the air supply pipe 2 via retaining valve 14.Pump 12 is driven by the revolving force of pulse motor 11, and the gas that sucks from tail pipe 22 is compressed by pump 12, is filled in the air supply pipe 2.Be provided with control basal plate 50 in the terminal box 6 as control device.Control basal plate 50 has the control circuit of above-mentioned motor 11, and has pressure transducer 15.Gas pressure in the air supply pipe 2 is on pressure transducer 15, thus the output electric signal corresponding with this air pressure.Be provided with terminal disc 46 in the terminal box 6.Terminal box 6 is connected with general distribution by suitable connector with pulpit 1 interior control device 16.Be furnished with display 17 in the pulpit 1, the electric signal that 50 transmission come according to control basal plate shows the liquid level of flow container.The measured value of above-mentioned pressure transducer 15 is imported, is presented on the display 17 in the pulpit 1 via terminal disc 46, above-mentioned general distribution.In addition, between the display 17 in control basal plate 50 and pulpit 1, via terminal disc 46, general distribution transmitting-receiving control signal.
The lower end 4 of air supply pipe 2 by sideling or level cut off, form opening.In illustrated embodiment,, has the structure of rake 28 for cutting off sideling.In the time of in gas is full of air supply pipe 2, gas is 4 formation bubbles and discharge from the lower end.In illustrated example, the obtuse angle of rake 28 one 29 near above edge part be provided with hole 30, the pressurized air in the air supply pipe 2 are discharged thus.Since be provided with above-mentioned hole 30, even under the situation that air supply pipe 2 is obliquely installed, or rolling often as boats and ships, because pressure gas 30 discharges from the hole always, so also can reduce to measure pressure error.Under the situation about being cut off by level in the lower end 4 of air supply pipe 2, hole 30 can be located on the optional position of open end edge portion.
Top attraction type Pneumatic liquid level indicator shown in Figure 5 is except that the suction unit of pump 12, and structure is with shown in Figure 4 identical.Tail pipe 22 is exposed to the top in the flow container above the bottom surface of pump 12 penetrating terminal casees 6 and flow container.Be provided with pipe adapter on the bottom surface of penetrating terminal case 6 and the hole above the flow container, tail pipe is installed on this pipe adapter.Adopt the Pneumatic liquid level indicator of structure like this, carry out in the gas of the air-breathing liquid upper filling in flow container of pump, thereby can revise liquid portion pressure poor of the pressure that is subjected to from the air supply pipe bottom and liquid upper automatically, reduce the caused measuring error of pressure, humidity, density because of gas.
Fig. 6 shows another example of air supply pipe.This air supply pipe 2 constitutes double structure by the pipe 24 of inboard and the protection tube 25 in the outside.That is, inside is provided with the little pipe of basal area 24, and the outside is a protection tube 25.The pipe arrangement that comes self-pumping 12 is connected with pipe 24 in the air supply pipe 2 that hangs down from the flow container upper wall by pipe adapter 26a.The bottom of air intake duct 2 is fixed with the holding plate 27 in order to stationary pipes 24 and protection tube 25.Manage 24 lower ends pipe adapter 26b also is installed, pipe adapter 26b connects above-mentioned holding plate 27.The bottom that is held the air supply pipe 2 that plate 27 separates forms the shape with rake 28 that the lower end 4 with air supply pipe shown in Figure 42 cut off equally sideling.In the time of in pressurized air is full of pipe 24, gas is 4 discharges from the bottom.Like this, when the pipe that is used for air feed adopts the little pipe 24 of basal area,,, improve and measure precision so can improve sensitivity by air feed gently because the change of the compression in the pipe can be less.In addition and since the pump of low capacity just can, so can realize the miniaturization of liquid level meter.
In addition, because the peristome of pipe adapter 26b is narrow and small, the inaccessible peristome so adhere to shellfish such as sea grass or barnacle sometimes.Therefore, holding plate 27 is made metals such as material that sea grass or shellfish be difficult to adhere to such as copper.Like this, just can solve that peristome is blocked can not measure correct air pressure, thereby can not measure the problem of correct liquid level position.Perhaps, also can be by covering the front end of pipe adapter 26b to prevent to adhere to sea grass or shellfish with protection network.Be electrically connected identical with embodiment shown in Figure 4.
As shown in Figure 4, be located at the air pressure that terminal box 6 interior pressure transducers 15 are measured the pressure gas of delivering to air supply pipe 2, this measured value be converted to serial signal, be transferred to the index gauge 17 in the pulpit 1 that is connected with cable with terminal box 6 with control basal plate 50.The mensuration of the air pressure of the pressure gas in the air supply pipe 2 that is undertaken by this pressure transducer 15 is carried out as 100msec at interval at interval by certain hour, and this measured value sends to the interior control device 16 in pulpit 1 successively, is presented on the index gauge 17.
In addition, because pump is intermittently to drive, pressure error is little when pump stops, and therefore, the force value when pump stops also to be sent to pulpit 1, by the liquid level in the index gauge 17 demonstration flow containers.
By above stated specification as can be known, the Pneumatic liquid level indicator branch that is made of air supply pipe 2, pump 12, retaining valve 14, pressure transducer 15, control basal plate 50 etc. is located on each flow container.And the output signal of each liquid level meter is transported to pulpit 1 concentrated the supervision.
Principle of work with regard to Pneumatic liquid level indicator of the present invention describes below.Under the state in the liquid in flow container is submerged in the bottom of air supply pipe 2, when supplying with pressure gas by pump 12, gas is filled in the air supply pipe 2, with the pressure of liquid in the opposing flow container.When reaching capacity state in the air supply pipe 2, just form bubble and discharge from the bottom 4 of air supply pipe 2.When liquid level top did not have air pressure, establishing the interior liquid level of flow container was H, and fluid density is ρ, and then the pressure P in the air supply pipe equals head pressure ρ H.
For the pressure P in the air supply pipe 2, measure air pressure in the air supply pipe 2 at a certain time interval by the pressure transducers 15 in the terminal box 6.The air pressure of measuring is converted into electric signal by the control basal plate 50 in the terminal box 6, and through terminal board 46, by general distribution, the electric signal of the value of H is fed to the index gauge 17 in the pulpit 1.Because the interior pressure P of air supply pipe 2 equals the pressure head ρ H that the height H of air supply pipe 2 in liquid multiply by the density p gained of liquid 3, so, will show with index gauge corresponding to interior level of pressing the value of P as liquid 3.
In the present invention, the pressure gas that air is filled into air supply pipe 2 is made respectively with the terminal box 6 built-in pumps 12 of flow container, so the pipe arrangement of required in the past numerous and diverse pipe no longer needs, can be used as the electrical equipment that works independently and operates easily.And, owing to as long as supply with in order to be full of the pressure gas of air supply pipe 2, so the pump of pump 12 usefulness low capacities is much of that with regard to pump.
In addition,, therefore, be subjected to the influence of external temperature hardly owing to supply with pressure gas with very near distance by the pump in the terminal box, control easy, and, because tester etc. are collected in the terminal box, therefore, safeguard, overhaul extremely simple.
In addition, the general electric wire of supply power, transmitting-receiving control signal, pressure sensor output detection signal is provided on the deck of boats and ships, via the terminal box of branch line feed to each flow container, the pump that the drive terminal case is built-in.
Figure 11 is for showing the liquid level of ballast box when rising and the curve of time relation of boats and ships.Figure 11 (a) show flow container from the slack tank state to liquid level that becomes the canful liquid level and time relation, Figure 11 (b) shows liquid level and the time relation of flow container from slack tank state liquid level in the middle of become.Block curve is all represented the state that actual liquid level rises with certain speed in time together in Figure 11 (a) and (b), and dashed curve is all represented liquid level and the time relation from the fixed force value conversion of liquid level instrumentation.Dashed curve has the part liquid level to be certain value.This is because the pump of liquid level meter is intermittently to drive, and can suspend every the certain hour pump, and pressure therebetween is roughly certain, therefore the certain cause of conversion liquid level therebetween.
Figure 12 is for showing the liquid level of ballast box when draining and the curve of time relation of boats and ships.Figure 12 (a) show flow container from the canful liquid level to liquid level that becomes the slack tank state and time relation, Figure 12 (b) show flow container from middle liquid level to liquid level that becomes the slack tank state and time relation.Block curve is all represented the state that actual liquid level descends with certain speed in time in Figure 12 (a) and (b), and dashed curve is all represented liquid level and the time relation from the fixed force value conversion of liquid level instrumentation.Dashed curve has the part liquid level to be certain value.This be since with Figure 11 in the same reason of reason narrated.
Liquid level when water filling that curve shown in Figure 13 carries out the ballast box of boats and ships for expression or draining stop in the flow container and the curve of time relation, liquid level is certain therebetween, therefore, and by measuring pressure therebetween at this, this pressure signal is delivered to the pulpit, can measure correct positioning.
Fig. 7 shows the control calcspar of the control basal plate of Pneumatic liquid level indicator of the present invention.The force value of measuring with pressure transducer 15 is taken into MUX by certain time interval, then, be converted to digital signal with AD converter 42 after, import CPU 43.The force value data of 44 pairs of inputs of CPU are handled, and the signal of necessity is sent into motor driver circuit 44, the action of control motor 11.In addition, the pressure signal of sending into CPU 43 is transported to the control device 16 in the pulpit 1 or is converted to simulating signal as serial signal by driven in series device 45, as for example simulating signal of 4~20mA electric current, flows to the control device 16 in the pulpit 1.
According to the process flow diagram of Fig. 8, the control action of the system of Pneumatic liquid level indicator shown in Figure 4 is described.In addition, each action step is with (S1) (S2) (S3) ... expression.
In case system power supply is connected, just carry out RAM check, serial port setting, A/D initialization (S1).Then, storage pressure initial value data finishes initial setting (S2).Initial pump is by driven at low speed (S3).Thereby slowly charged into pressure gas in the air supply pipe.
When gas was supplied with in air supply pipe 2, its air pressure was with pressure transducer 15 sequentially determinings, by the change of the control basal plate 50 of accepting this pressure signal calculating pressure successively, the time diffusion value of measuring pressure variation on the occasion of the time, promptly
DP/dt>0 o'clock in the relation of dP/dt=ρ dH/dt shows that the fluid level in the flow container is in the state of increase, therefore be judged as pressure rise in (S4), then, judge whether specific ray constant A (S5) greatly of rate of pressure rise.When rate of pressure rise specific ray constant A is big, judge again the pressure rise time, whether specific ray constant B grew (S7).When pressure rise time specific ray constant B was long, it was quite high to infer liquid level, therefore pump will be converted to high-speed driving (S8).Carry out self diagnosis (S9) then, carry out inner setting check (S10) again, repeat from S4 action of starting then again.
When in S4, when the time diffusion value that detects pressure variation is negative value, that is,
DP/dt<0 o'clock in the relation of dP/dt=ρ dH/dt, the level that shows liquid in the flow container is in the reduction state, therefore, judges then whether pump 12 is in (S11) in the high-speed driving, if in high-speed driving, then make it form driven at low speed (S6), carry out the later action of S9 then.In addition, not that pressure rises when judging, and judge that at S11 pump is not when being in the driven at low speed in the high-speed driving, then at S12 pump to be stopped, returning S4 through above-mentioned S9, S10 at S4.
Be judged as in the pressure rising, when S5 judges ascending velocity less than constant A at S4, the unnecessary actuating speed of pump that makes becomes at a high speed, so will be converted to the driven at low speed of pump at S6.In addition, even when S5 judges that ascending velocity specific ray constant A is big,, do not need to make the actuating speed of pump at a high speed, so will be converted to the pump driven at low speed at S6 if in short-term at the rise time of S7 pressure specific ray constant B yet.Constant B is by the suitably settings such as scale of flow container.
As described above described, initial in the mensuration of liquid level action beginning, the pump of driven at low speed liquid level meter, utilize the driving of pump that pressure is risen, when this ascending velocity more than certain value, and the duration of rising be that certain hour is when above, can infer the liquid level that will measure is high liquid level, so,, can reach the pressure that can measure liquid level rapidly by the actuating speed of pump being converted at a high speed at S8.
In addition, when at the S6 rate of pressure rise when certain value is following, and, even rate of pressure rise is more than certain value, duration can be estimated as the pressure that approaches to measure liquid level, therefore when certain value is following but this pressure rises, be converted to the pump driven at low speed at S6, but make it to be in the state that precision is carried out level gauging well.
As if the pressure rising being stopped or making pressure begin to descend on the contrary,, will be converted to the pump driven at low speed at S6, and then at S12 pump be stopped through S9, S10, S4, S11 if then be judged as in the pump high-speed driving at S1 this moment.
Aforementioned self diagnosis carries out according to flow process shown in Figure 9.When the temperature (S13) when certain value is above of pump 12 or motor 11, carry out fault processing (S14), with alert notification pump or motor abnormality.At this moment, can carry out electric treatment by under analog case, setting 4~20mA certain electric current in addition according to various erroneous condition.Under digital situation, can set up sign by various setting utilizations and carry out.
In addition, if preestablish maximum head in the air supply pipe of this flow container, when the air pressure of measuring by pressure transducer 15 when above-mentioned maximum pressure is above (S15), carry out fault processing (S16), utilize alert notification unusual.Unusual as this moment can be considered the obstruction of air supply pipe 2, the fault of pressure transducer 15 etc.
In addition, the air pressure of measuring when pressure transducer 15 is certain value as being atmospheric pressure when following (S17), carries out fault processing (S18), and is unusual by alert notification.Unusual as this moment considers that one-way valve fault causes that gas leaks.
When the primary data with power connection the time does not relatively have pressure to change (S19), and pressure carries out automatic zero point correction (S21) when being roughly zero (S20).
Carry out inner setting check (S10) after self diagnosis (S9) finishes, then, repeat action of starting again from S4.
In addition, at pump during by low speed or high-speed driving, if as shown in figure 10, the continuous drive time is certain hour as more than 10 seconds the time (S22), makes pump stop (S23).Reach certain hour (S24) as more than 10 seconds time the, driven at low speed pump (S25) when the pump stand-by time again.Like this, by intermittence driving pump also can economize energy.
Figure 14 is the curve of expression with an example of Pneumatic liquid level indicator of the present invention is actual when being used in boats and ships detected pressures and time relation.
At first, the pump in the Pneumatic liquid level indicator is by driven at low speed (S51).At this moment, detected pressures rises with certain gradient.When the ascending velocity of detected pressures is more than the certain value, and detected pressures rises the duration when certain value is above, and pump switches to high-speed driving (S52).Preceding half section detected pressures at S52 increases in time as seen from the figure, but in the second half section detected pressures in narrow and small scope internal vibration.This is because air supply pipe inside is full of pressure gas, and forms the cause of bubble from air supply pipe lower end escape hole.Then, when said pump in high-speed driving, the ascending velocity of detected pressures is certain value when above, or detected pressures duration of rising be certain value when following, make pump formation driven at low speed (S53).In the pump driven at low speed of S53, detected pressures is also in narrow and small scope internal vibration.When in the pump driven at low speed, when the ascending velocity of detected pressures does not have, stop the driving (S54) of pump.
In pump stopped, pressure was also detected, showed certain value in preceding half section detected pressures of S54, but thereafter detected pressures then in time increase and descend.This means that the liquid in the flow container is discharged from, liquid level descends, and simultaneously, liquid head ρ H also descends, because the interior pressure of air supply pipe, bubble is discharged in liquid from the lower end of air supply pipe, and the interior pressure of air supply pipe becomes the value with aforesaid liquid pressure head ρ H balance.When 54 nearly finished, detected pressures began to rise.This means that liquid in as the ballast box of boats and ships (ballast) is just refilled.When the ascending velocity of detected pressures reaches more than the certain value, and detected pressures duration of rising reach certain value when above, pump begins driven at low speed (S55) once more.At this moment, detected pressures rises with certain gradient.When this detected pressures ascending velocity more than certain value, and detected pressures rises the duration when certain hour is above, pump is switched to high-speed driving (S56).At preceding half section of S56, detected pressures increases in time, but in the second half section, the interior pressure in the air supply pipe surpasses liquid head, and bubble is discharged in liquid, and whenever the bubble discharge, detected pressures is just in the narrow range internal vibration.Because below certain value, institute is so that pump forms driven at low speed (S57) in the rising of the second half section of S56 detected pressures.In the pump driven at low speed of S57, detected pressures also can because of rolling of boats and ships etc. in the narrow range internal vibration.At last, because the boats and ships posture is stable, the rising of detected pressures disappears, so, the driving of pump is stopped (S58).When detected pressures rose in the driving at pump stops, the pump quilt is driven at low speed (S59) again.And when the rising of detected pressures in the driven at low speed of pump stopped, the driving of pump was stopped (S60).
In addition, because when the height of flow container was big, the length of air supply pipe also will increase, therefore, the bottom 4 of air supply pipe 2 also can be installed in the bottom surface or the side of flow container with installing component.Again, the used gas of the present invention is according to environment and atmosphere gas, also can be the liquid evaporation gas beyond the air or the mixed gas of air and other gases.
In the above-described embodiments, motor is illustrated with the example that uses pulse motor, but motor is not limited to pulse motor, for example also can be servomotor.

Claims (15)

1, a kind of Pneumatic liquid level indicator, comprise: can insert the air supply pipe in the liquid in the flow container, can in air supply pipe, supply with the pump of pressure gas, be located at the retaining valve between pump and the air supply pipe, measure the pressure transducer of air supply pipe internal gas pressure, the control device of the pressure data control pump of sending here according to pressure transducer; It is characterized in that described air supply pipe, pump, retaining valve and pressure transducer are arranged on each flow container.
2, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, is measured by certain time interval by pressure transducer by the described air pressure that is pumped into the pressure gas of air supply pipe, and this measured value is sent to control device successively.
3, Pneumatic liquid level indicator as claimed in claim 2 is characterized in that, described control device is by the force value detected air pressure change value that detects successively, and the change value is the actuating speed that timing increases pump.
4, Pneumatic liquid level indicator as claimed in claim 2 is characterized in that, described control device is according to the force value detected air pressure change that detects successively, when the change value reduces the actuating speed of pump when negative.
5, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, the continuous drive time of described control device testing pump, when the continuous drive time reaches certain value, pump is suspended.
6, Pneumatic liquid level indicator as claimed in claim 5 is characterized in that, the time out of described control device testing pump when time out reaches certain value, drives pump.
7, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, described pressure transducer reaches the certain upper limit value when above at the air pressure that detects, and carries out fault processing.
8, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, described pressure transducer during less than certain lower limit, carries out fault processing at the air pressure that detects.
9, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, with respect to the primary data no change, and carry out zero point and revise when being roughly zero by the force value of this moment at the air pressure that detects for described pressure transducer.
10, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, has in the bottom of described air supply pipe to tilt or peristome that level is cut off, is provided with the hole at the edge part of this peristome.
11, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, described air supply pipe forms dual structure, and inside is provided with the little pipe of basal area, the outside protection tube that forms.
12, Pneumatic liquid level indicator as claimed in claim 10 is characterized in that, the bottom of described air supply pipe is made of the material that sea grass and shellfish are difficult to adhere to.
13, Pneumatic liquid level indicator as claimed in claim 10 is characterized in that, the bottom of described air supply pipe is by being used to prevent that the protection network that sea grass and shellfish adhere to from covering.
14, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, described pump is intermittently driven, and the air pressure in the air supply pipe that records when the driving of pump is stopped to send to control device.
15, Pneumatic liquid level indicator as claimed in claim 1 is characterized in that, the air-breathing of pump utilizes the gas in the flow container to carry out.
CN98122843A 1998-09-17 1998-12-15 Pneumatic liquid level indicator Expired - Fee Related CN1109235C (en)

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JP263245/1998 1998-09-17
JP10263245A JP2951954B1 (en) 1998-09-17 1998-09-17 Barometric level gauge

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CN1109235C CN1109235C (en) 2003-05-21

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KR100385541B1 (en) 2003-08-14
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CN1109235C (en) 2003-05-21
JP2000088629A (en) 2000-03-31

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