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D-GA44 FUEL DISPENSER

D-GA44

D-GA44 FUEL DISPENSER

Pump Type: Optional

Inlet Pressure : >=54kPa.

Flow rate (L/min.) :55±5

Suction Distance (m): 6(verticalmente) / 50(orizzontalmente)

FlowMeter Type: Optional

Accuracy :±0.2%

Motor Voltage(V) :110V/220V/380V,50Hz/60Hz

Capacity(hp) :1HP(0.75kw)

Input Voltage : 110V/220V/380V,50Hz/60Hz

Nozzle : Auto Shut-off Nozzle

Environmental Condition : -40~~+55degree

Control Type: Solenold Vale Control Type

Preset : Function Provided(Small LCDIndicator)

Display(Counter) :Type LCD and Bright Backlight

Digit of Volume : 0~~999,999(6 Digits),Decimal point can be changed

Digit of Amount : 0~~999,999(6 Digits),Decimal point can be changed

Digit of Unit price : 0~~9999(4 Digits),Decimal point can be changed

Digit of Total Range : 0~~99,999,999,99

Optional Display :Type LCD and Bright Backlight

Digit of Volume : 0~~99,999,999(8 Digits),Decimal point can be changed

Digit of Amount : 0~~99,999,999(8 Digits),Decimal point can be changed

Digit of Unit price: 0~~999999(6 Digits),Decimal point can be changed

Digit of Total Range : 0~~99,999,999,99

Totalizer :1~~9,999,999

Hose :4.5m

Weight : 335kg

Dimension(L×W×H): 1270 x 620 x 2420(mm)

Dimension(L×W×H)Of Qty of Container: 40ft: 45 20ft: 22

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    result during approval progress. The other is to make adjustment as temperature fluctuate 20 degree. Stopwatch, minimum value 0.1 second, is used for measuring how long a certain volume medium discharge out of fuel dispenser so as to calculate its flow rate. Gradienter, precision being 0.05mm/m, measures the degree of level. Article III Indicating appraisal method and data processing Appraisal of fuel dispenser actually is an indicating access. Presently, cubage compare method is mostly used defining basic tolerance between the volumes flow over flow meter and in metal standard measurer. Diagram 6-2 is illustrated the fuel dispenser’s appraisal flow. 1: Check valve 2: Pump 3: Vapor separator 4: Flow meter 5: Indicating device 6: Hose 7: Nozzle 8: Standard measurer 9: Measurer 10: Switch & zeroing 11: Container 12: Motor 13: Tank 14: Filter net Diagram 6-2: Appraisal of fuel dispenser using metal standard measurer Preparation before appraisal Place metal standard measurer on the hard ground and adjust with gradienter. It also put on vehicle or other bracket, as long as not waving or vibration during appraisal progress. Metal standard measurer should be earthing- connected. It is suggested to connect the measurer to ground terminal of fuel dispenser, making them being same potential. Running-in and wet measurer. Putting indicator device at zero fuel dispenser , open nozzle and observe oil indicator. Oil is transparent as there is no foam in it. If have foam or bubble oil would be feculent and opaque. If foam exists in oil for a long time, fuel dispenser would have trouble. Appraise again after solving failure. Close nozzle as measurer full of oil. Empty measurer in accordance with relative m fuel dispenser ethod and time, and shut off bottom valve, putting measurer in preparation state. Appraisal procedure of indicating valve Set unit price; Adjust flow to the maximum Qmax; Wet measurer and place it according to regulation; Tune indicator finger to zero position; Infuse measurer as preset volume, measure outlet t fuel dispenser

technical specification

    with a view to opening up in the medium  fluence to describe radiation fields and   term completely new prospects for radiation  various absorbed and dose equivalent quanti-   metrology by innovative approaches such as  ties to describe the radiation energies ab-   the computation of the generation of ioniza-  sorbed to material. To allow for the significant   tion clusters in nanometric targets and the  differences between the measuring methods   application of the results to metrological  for the individual physical quantities the   concepts.  Division was subdivided into the following  departments. In the following chapters special results will   be described in some more detail which in  As the methods for measuring the activity in   2003 were of particular importance for the  the fields of radiation protection and medi-   fuel dispenser individual departments. Further information  cine are closely related they can be handled   can be found under Headlines at the end of  in one department (6.1 Radioactivity). On the   fuel dispenser this report.  other hand the dose measuring procedures in  these two fields differ so much from each Within the scope of the reorganization not  other and the fields are so vast that it was only six departments were created fuel dispenser

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    ithms are used to construct images images reach a limit from mountains of data. In late 1972 Dr Ter-Pogossian and Dr Phelps, who was then a in what they can young assistant professor at Washington University and worked in Dr Ter-Pogossian s reveal, PET s ability lab, went to a meeting of the Radiological Society of North America in Chicago where an to look at early CT scanner was on display. Both came back convinced of the importance of the underlying approach, and subsequently applied it to PET. Using a computer to analyse thousands of biological processes pairs of detected photons, it was possible to construct a more detailed image of the is just starting to be distribution of the radiotracer within the pa fuel dispenser tient. Despite competition from other laboratories, Dr Ter-Pogossian s group succeeded in constructing a series of prototypes tapped.� that led to the first commercial PET scanner. Because there was little grant money available for his group s research pursuits, Dr Phelps decided in 1973 to contact EG&G ORTEC, a scientifi fuel dispenser c-instrument company in Oak Ridge, Tennessee, to see if he could get a favourable deal on supplies. He reached Terry Douglass, then the chief engineer of ORTEC s life-sciences division, who invited him to visit. Dr Phelps made the nearly eight-hour drive in his red Volkswagen Beetle, along with his colleagues Nizar M fuel dispenser