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Hydraulic separators - SP

Hydraulic separators  - SP
Hydraulic separator - SP

Hydraulic separators  SP - construction
Hydraulic separator SP - a construction

Hydraulic separator type SP can be fitted between a primary liquid circuit and a secondary liquid circuit for examlpe to separate boiler cycle and thermal cycle. Hydraulic separator has been desinged for middle and high power heatting systems consisting of one or many boilers and one or many thermals cycles. Hydraulic separator type SP ensured independence work those systems without compensate of flow.

Description:

  • separates boiler cycle and thermal cycle
  • keeps independence fluid flux in boiler cycle and thermal cycle,
  • excluded necessity flow compensate boiler cycle and thermal cycle,
  • cleans,
  • deaerates.

Construction:

Hydraulic separator is made of low-carbon steel and externally painted. On the shell (1) are mounted four pipe connectors. To the inlet and outlet connectors (2) and (3), is connected the boiler cycle. To inlet and outlet connectors (4) and (5), is connected the thermal cycle. Inside the vessel is localized a perforated sreen (9). It prevents flow water from the boiler to the thermal and also increase deaerating effect. For eliminate of air, on the top part of the vessel is connector pipe (7) for connecting deaerating valve. Water passes through division cleaning sreens (10) and exits the outlet. For get rid of pollutions from the Hydraulic separator is connector pipe (10), where is connected a blowdown valve.

Priciple of operation:

Using the Hydraulic separator in a boiler system to separate the boiler cycle from the thermal cycle. Stand out cases:

  • the state, where quantity thermal factor on primary side is equal quantity heat received by thermal system (pic.1.). The quantity delivered heat QD is equal quantity heat received QO.
  • when demand for heat is lower  QO, the valves on system heat are closing. Part of stream passes along the Hydraulic separator (pic.2). The heat excess QD give back and boiler sensors receive signal to decrease the boilers power or turn off them.
  • when demand for heat QO is bigger than heat deliver by boilers QD, the pumps on heating system force return stream (pic.3), by this temperature in thermal cycle is decreasing. Boiler sensor receive signal to increase heat power or turn on next boiler.
rozdzielenie obiegu kotłowego od obiegu grzewczego

Dane techniczne:

Series DN Max.
Q
[m³/h]
Press.
nom.
[bar]
Temp.
nom.
[°C]
Weight
netto
[kg]
Val.
[dm³]
Dimensions
D L A B H R O S T
SP50/100 50 4 6 100** 16 4,6 108 265 148 350 605 - ½" 1" -
SP65/150 65 9 23 16 159 320 190 550 930 45 ½"
SP80/200 80 12 35 41 219 380 265 700 1230 70
SP80/250 80 20 42 65 273 450 275 700 1250 70 1" 1"
SP100/200 100 20 40 41 219 380 265 700 1230 70 ½" ½"
SP100/250 100 25 45 65 273 450 275 700 1250 70 1" 1"
SP125/250 125 30 54 72 273 450 325 740 1390 70
SP125/300* 125 40 80 126 324 500 350 1000 1700 110 2" 2"
SP150/300* 150 50 85 126 324 500 350 1000 1700 110
SP200/450* 200 100 160 345 457 630 450 1450 2350 110
SP250/650* 520 180 150 290 870 650 830 635 1500 2770 110
SP300/650* 300 200 300 870 650 830 635 1500 2770 110
SP350/800* 350 280 512 1660 810 1065 735 2100 3570 110
SP400/800* 400 350 544 1660 810 1065 735 2100 3570 110
SP450/900* 450 440 613 2149 910 1175 760 2100 3620 110
SP500/1000* 500 550 795 2680 1012 1275 795 2080 3670 110
Hydraulic separator SP - dimensions

* it may be made with legs,
** for individual order it may be made for temperature 150°C.
- connection flanged PN16,
- flangeds dimension PN-ISO 7005-1.