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SWEP B16x53x52/2S brazed plate heat exchanger, 1 1/4" NPT / G 1 1/4", 53+52 (105) plates, PN 30

SWEP B16x53x52/2S brazed plate heat exchanger, 1 1/4" NPT / G 1 1/4", 53+52 (105) plates, PN 30

€ 416,85€ 573,39+ PVM
SKU
B16x53x52/2S
Model
B16x53x52/2S
Delivery
Contact for delivery term
Brand
SWEP
used_for
sildymui-karstam-vandeniui
Connection Type
iorsriegis_dn32
Number Of Plates
53
Connection nozzles
6
degrees
2
Weight
15kg.
TL;DR: SWEP B16x53x52/2S — brazed plate heat exchanger: 53+52 (105) stainless steel plates with copper brazing, PN 30 (frame design pressure), 1 1/4" NPT / G 1 1/4". Higher-capacity 2-section B16 — combined substations for multi-family and mixed-use buildings.
  • Application: dual-loop separation — heating + DHW in one housing
  • Heat capacity: ~220-450 kW per section (plate pack split between two duties)
  • Nominal pressure: PN 30 (30 bar)
  • Connection: 1 1/4" NPT / G 1 1/4"

Where SWEP B16x53x52/2S is used

Higher-capacity 2-section B16 — combined substations for multi-family and mixed-use buildings. SWEP T-series "turbulence" plate profile provides a high heat transfer coefficient even at low flow rates — important for condensing boilers and heat pumps where ΔT between loops is small (5-10 °C). The brazed gasket-free construction requires no periodic maintenance that gasketed exchangers would need — so SWEP is often chosen for modular substation skids where each service visit carries logistics cost.

Technical specifications

Parameter Value
SKUB16x53x52/2S
SeriesSWEP B16
ModelB16x53x52/2S
Configuration2-sekcijų (2S) — vienas šilumokaitis dviem nepriklausomoms darbo užduotims
Number of plates53+52 (105)
ConstructionBrazed, hermetic — gasket-free
Nominal pressure (PN)30 bar
Temperature range-40 °C ... +200 °C (copper brazed)
Connection1 1/4" NPT / G 1 1/4"
Plate materialStainless steel AISI 316 (standard)
Brazing fillerCopper
MediaWater, glycol solutions, refrigerants (compatible with stainless steel and copper)
StandardsPED 2014/68/EU

Heat transfer capacity — quick calculation

Capacity depends on flow rate, ΔT and logarithmic mean temperature difference (LMTD). General formula: P = Q × ΔT × 1.163 (P — kW, Q — m³/h, ΔT — °C).

Example for DHW mode (primary 65/40 °C → secondary 10/55 °C, ΔT ≈ 20 °C): at Q = 2 m³/h → P ≈ 46 kW. This 53+52 (105)-plate pack typically delivers ~220-450 kW per section (plate pack split between two duties).

Designer note: brazed SWEP capacity and Δp are sensitive to the approach temperature — the smaller the difference between outgoing and incoming secondary flow, the more plates you need. Run a calculation via SWEP SSP or request Amegata's technical consultation before final selection.

When to choose SWEP B16x53x52/2S

  • Combined substations — heating + DHW in one housing
  • Modular substation skids with footprint constraints
  • Dual DHW stage (e.g., primary + preheat) in one product
  • Heat pump secondary loop separation + DHW — two duties in one sale

B2B delivery and logistics via Amegata.lt

  • Delivery within 3-7 business days across Lithuania (made-to-order from SWEP)
  • Competitive B2B pricing — often below market average
  • 30-day payment terms for companies (per contract)
  • Free technical consultation for sizing (SSP calculations)

Official SWEP product page: swepgroup.com

Frequently asked questions

What do "T" and "x" mean in the SWEP model name?

"T" (as in B10T) — SWEP "turbulence" plate profile, higher heat transfer coefficient for standard HVAC duties. "x" (as in B12x, B16x) — denotes a specific plate variant within that series. The number after "x" — plate count in the pack. "/1P" — single-pass, "/2S" — two sections.

Can glycol mixtures be used?

Yes. SWEP B-series exchangers are compatible with ethylene glycol and propylene glycol solutions up to 50 %, with proper inhibitors. For DHW — only potable-grade fluids.

What maintenance is required?

Brazed gasket-free construction requires no periodic disassembly maintenance. Recommended only CIP (Clean-in-Place) flushing every 3-5 years if fouling signs appear (rising pressure drop or falling heat transfer).

Is it suitable for potable water?

Yes. Stainless steel plates and copper brazing meet potable water system requirements (WRAS, DVGW and similar certifications, depending on country).

Is it suitable for regions with aggressive water?

In some Lithuanian regions, district heating water contains elevated chlorides or ammonia — in such systems copper brazing may shorten service life. In these cases we recommend the SWEP nickel-brazed variant or a gasketed alternative with titanium plates. For hard water with elevated Ca/Mg carbonate content, limescale gradually builds up on the plates and reduces heat-transfer efficiency; for such systems gasketed (plate-and-frame) exchangers are preferable, as they can be periodically opened for mechanical or CIP cleaning. Contact us — we will select the model best suited to your water conditions.

When to choose brazed vs gasketed?

Brazed (SWEP) — when you need a compact, light, "fit and forget" solution without gasket maintenance. Gasketed (e.g., Hexonic F-series) — when you need the ability to clean off fouling, change capacity (add plates) or handle very hard water.

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