Siemens
ÑÐÅÄÑÒÂÀ ÏÐÎÌÛØËÅÍÍÎÉ ÀÂÒÎÌÀÒÈÇÀÖÈÈ
îôèöèàëüíûé ïàðòíåð Ñèìåíñ
Êàòàëîã ÑÀ01 2018
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Solids flowmeter selection guide

Criteria

SITRANS WF100

SITRANS WF200

SITRANS WF250

SITRANS WF330

SITRANS WF340

SITRANS WF350

Typical industries

Food, grain, milling, animal feed, plastics, glass

Aggregates, grain, cement

Cement, mineral processing

Food, grain, milling, animal feed, chemicals, plastics, glass, cement, mineral processing

Food, grain, milling, animal feed, chemicals, plastics, glass, cement, mineral processing

Cement, mineral processing, mining

Typical applications

Monitoring of
food ingredients,
pet food blending, plastic pellet production, silica sand in glass making

Grinding mill rejects in cement, load-out of grains and seeds

Cement in aerated gravity conveyor

 

Fly-ash, lime dosing, cement flow and control in mining, flour stream monitoring

 

Fly-ash load-out, lime dosing, gypsum flow

Powders and granulates conveyed by aerated gravity conveyors, fly-ash load-out, precipitator dust

Typical capacity

1 â€¦ 200 t/h
(4 â€¦ 220 STPH)

200 â€¦ 900 t/h
(220 â€¦ 990 STPH)

200 â€¦ 900 t/h
(220 â€¦ 990 STPH)

Sensing element dependent, see 'Sensing element' chart below.

Sensing element dependent, see 'Sensing element' chart below.

Sensing element dependent, see 'Sensing element' chart below.

Volumetric capacity

90 m3/h (3 178 ft3/h)

500 m3/h (17 657 ft3/h)

600 m3/h (21 189 ft3/h)

40 t/h: 90 m3/h (3 178 ft3/h)
300 t/h: 290 m3/h (10 241 ft3/h)

40 t/h: 96 m3/h (3 390 ft3/h)
300 t/h: 230 m3/h (8 122 ft3/h)

40 t/h: 178 m3/h (6 286 ft3/h)
300 t/h: 545 m3/h (19 246 ft3/h)

Maximum particle size

13 mm (0.5 inch)

25 mm (1 inch)

25 mm (1 inch)

Sensing element dependent, see 'Sensing element' chart, page 6/5.

Sensing element dependent, see 'Sensing element' chart, page 6/5.

Sensing element dependent, see 'Sensing element' chart, page 6/5. 

Ambient temperature

-20 ... +65 ºC
(-4 ... +150 ºF)

-40 ... +65 ºC
(-40 ... +150 ºF)

-40 ... +65 ºC
(-40 ... +150 ºF)

-40 ... +60 ºC
(-40 ... +140 ºF)

-40 ... +60 ºC
(-40 ... +140 ºF)

-40 ... +60 ºC
(-40 ... +140 ºF)

Maximum process temperature

65 ºC (150 ºF)

100 ºC (212 ºF)

100 ºC (212 ºF)

232 °C (450 °F)

232 °C (450 °F)

232 °C (450 °F)

Inlet sizes

100 â€¦ 250 mm (4 â€¦ 10 inch) in universal ANSI/DIN flanges

305 x 533 mm
(12 x 21 inch)
305 x 635 mm
(12 x 26 inch)

406 x 635 mm
(16 x 25 inch)
508 x 940 mm
(20 x 37 inch)

Sensing element dependent, see 'Sensing element' chart, page 6/5.

Sensing element dependent, see 'Sensing element' chart, page 6/5.

Sensing element dependent, see 'Sensing element' chart, page 6/5.

Accuracy1)

± 1 % (33 â€¦ 100 % of rate)

± 1 % (33 … 100 % of rate)

± 1 % (33 … 100 % of rate)

± 1 % (33 … 100 % of rate)

± 1 % (33 … 100 % of rate) 

± 1 % (33 … 100 % of rate) 

Repeatability

± 0.2 %

 ± 0.2 %

± 0.2 % 

± 0.2 % 

± 0.2 % 

± 0.2 % 

Options

304 or 316 stainless steel, bead blast finish (1 ... 6 Î¼in, 4 ... 240 Î¼in) construction (meets FDA
and USDA requirements for food processing)

304 or 316 stainless steel, bead blast finish (1 ... 6 Î¼in, 4 ... 240 Î¼in) construction (meets FDA
and USDA requirements for food processing)

304 or 316 stainless steel, bead blast finish (1 ... 6 Î¼in, 4 ... 240 Î¼in) construction (meets FDA
and USDA requirements for food processing)

  • 304 or 316 stainless steel, bead blast finish (1 ... 6 Î¼in, 4 ... 240 Î¼in) construction (meets FDA and USDA requirements for food processing)
  • Food grade epoxy coating on sensing head
  • 304 or 316 stainless steel, bead blast finish (1 ... 6 Î¼in, 4 ... 240 Î¼in) construction (meets FDA and USDA requirements for food processing)
  • Food grade epoxy coating on sensing head
  • 304 or 316 stainless steel, bead blast finish (1 ... 6 Î¼in, 4 ... 240 Î¼in) construction (meets FDA and USDA requirements for food processing)
  • Food grade epoxy coating on sensing head

Sensing
element

One triple beam
parallelogram
style, stainless
steel, strain
gauge load cell

Two triple beam
parallelogram
style, stainless
steel, strain
gauge load cells

Two triple beam
parallelogram
style, stainless
steel, strain
gauge load cells

Deflection measurement using LVDT (linear variable differential transformer)

Deflection measurement using LVDT (linear variable differential transformer)

Deflection measurement using LVDT (linear variable differential transformer)

Sensing plate

  • 304 stainless steel
  • Option: 316 stainless steel
  • 304 stainless steel
  • Option: 316 stainless steel
  • 304 stainless steel
  • Option: 316 stainless steel
  • 304 stainless steel
  • Option: 316 stainless steel
  • 304 stainless steel
  • Option: 316 stainless steel
  • 304 stainless steel
  • Option: 316 stainless steel

Liners

  • PTFE
  • Polyurethane
  • Polyurethane
  • Alumina ceramic
  • Polyurethane
  • Alumina ceramic
  • Plasma A/R
  • PTFE
  • Polyurethane
  • Alumina ceramic
  • Plasma A/R
  • PTFE
  • Polyurethane
  • Alumina ceramic
  • Plasma A/R
  • PTFE
  • Polyurethane
  • Alumina ceramic

Approvals

CE , RCM, CSA, FM, ATEX, IEC Ex, EAC

CE , RCM, CSA, FM, ATEX, IEC Ex, EAC

CE , RCM, CSA, FM, ATEX, IEC Ex, EAC

CE , RCM, EAC

CE , RCM, EAC

CE , RCM, EAC



1)Accuracy subject to: on factory approved installations the flowmeter system’s totalized weight will be within the specified accuracy when compared to a known weighed material test sample. The test rate must be within the specified range of the design capacity and held constant for the duration of the test. The minimum material test sample must be equivalent to a sample obtained at the test flow rate for at least ten minutes running time.

Sensing element
 

SITRANS WF330

SITRANS WF340

SITRANS WF350

Capacity range

 

 

 

  • SITRANS WFS300

0.2 â€¦ 40 t/h (0.2 â€¦ 44 STPH)

0.2 … 40 t/h (0.2 … 44 STPH)

0.2 … 40 t/h (0.2 … 44 STPH)

  • SITRANS WFS320

20 â€¦ 300 t/h (22 â€¦ 330 STPH)

 20 … 300 t/h (22 … 330 STPH)

20 … 300 t/h (22 … 330 STPH) 

Particle size (max.)

 

 

 

  • SITRANS WFS300

12 mm ( 0.5 inch)

12 mm ( 0.5 inch)

3 mm (0.13 inch)

  • SITRANS WFS320

25 mm (1 inch)

25 mm (1 inch)

3 mm (0.13 inch)

Inlet sizes

 

 

 

  • SITRANS WFS300

50 â€¦ 250 mm (2 â€¦ 10 inch)
(ASME or DIN flanges)

  • 76 x 152 mm (3 x 6 inch)
  • 102 x 254 mm (4 x 10 inch)
  • 127 x 305 mm (5 x 12 inch)
  • 203 x 203 mm (8 x 8 inch)
  • 203 x 305 mm (8 x 12 inch)
  • SITRANS WFS320

150 â€¦ 400 mm (6 â€¦ 16 inch)
(ASME or DIN flanges)

  • 127 x 406 mm (5 x 16 inch)
  • 152 x 508 mm (6 x 20 inch)
  • 305 x 254 mm (12 x 10 inch)
  • 305 x 356 mm (12 x 14 inch)
  • 305 x 508 mm (12 x 20 inch)


 

Common flowmeter infeed types

A solids flowmeter’s performance will be as repeatable and consistent as the flow of material it is measuring. The following arrangements are typical of pre-feed chute configurations used to ensure consistent flow patterns. Arrangements will vary depending on the upstream equipment or chute work. Applications should be reviewed by a Siemens solids flowmeter specialist to achieve best results. During initial setup, use pre-weighing or post-weighing of material samples to calibrate the flowmeter and verify accuracy using the material sample weights.

Solids Flowmeters, dimensions in mm (inch)

















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