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Heat Exchange & Water Treatment | YONGFAN
Thermal Duty & Water Chemistry Coordination · Plate, Tube & Storage Exchangers · Physical & Ion-Exchange Water Treatment

Heat Exchange & Water Treatment Systems: Thermal Transfer Matched to Water Chemistry

Heat-transfer equipment and water treatment should be selected together. The exchanger defines the thermal duty, while water chemistry and fouling risk determine how well that duty can be maintained.

Integrate YONGFAN gasketed plate heat exchangers (0.2–500 m² area, 4–900 m³/h, approach to ~1 °C), packaged plate units (0.21–21 MW), JFSW double-thread turbulent tube exchangers (0.35–5.6 MW), U-tube & floating coil storage exchangers (100–15,000 L), direct-mixing heating units, inline JFGP electronic water treatment (<700 mg/L CaCO3), wrap-around induction processors (to 2,000 mg/L CaCO3), RLC ion-exchange softeners (residual <=0.03 mmol/L), and WHQC physical full-process filters.

Plate Exchangers 0.2–500 m² · Approach ~1 °C
Packaged Units 0.21–21 MW · ZS/ZW Skids
Storage Exchangers 100–15,000 L · U-Tube / Floating
Water Softening RLC ≤0.03 mmol/L · JFGP & Induction
Commercial packaged plate heat exchanger station with integrated pumps, control cabinet, and electronic water treatment unit
Heat Exchange & Water Treatment Gasketed Plate Exchangers · Packaged Units · JFSW Tube · Storage Exchangers · JFGP & RLC Softeners
01 / Thermal & Water Quality Analysis

Heat-Transfer Performance Changes When Water Quality Is Ignored

A heat exchanger is sized correctly at commissioning, but calcium scaling and biofouling narrow flow channels, increase pressure drop, and destroy thermal transfer efficiency.
Stainless steel heat exchanger plates with EPDM gaskets alongside electronic descaling transmitters and ion-exchange vessels
Coordinated Thermal & Water Engineering

Thermal Program (4 Temperatures) + Water Chemistry Analysis

Plate exchangers provide close ~1 °C approach; tube/storage exchangers handle peak draw and fouling; physical treatment (JFGP/Induction) controls scale; RLC softeners remove hardness.

Unchecked Scale in Plate Channels

Operating gasketed plate heat exchangers on high-hardness water without softening or physical treatment causes rapid scaling of 0.5 mm channels.

Impact: Severe pressure drop spike, secondary flow reduction & thermal loss

Storage Undersizing for Peak DHW Demand

Sizing storage heat exchangers purely on average hourly kW without buffering peak morning hot-water draw causes sudden cold water supply.

Impact: Inability to meet peak domestic hot water draw demand

Physical Treatment vs Hardness Removal Confusion

Installing electronic/induction descalers where true soft water (<0.03 mmol/L) is required by boiler or process specifications.

Impact: Non-compliant water chemistry & failed boiler inspections

Chloride Stress Cracking in Stainless Plates

Using standard SUS304/316 plates in high-chloride or seawater cooling circuits without upgrading to Titanium TA1 metallurgy.

Impact: Pinhole corrosion, plate perforation & cross-circuit contamination

The Four Pillars of Thermal & Water Treatment Integration

Gasketed plate exchangers, tube/storage vessels, physical scale control, and ion-exchange softening.

01 / Gasketed Plate Exchangers Compact indirect heat transfer (0.2–500 m²) & packaged skids (0.21–21 MW)
02 / Enhanced Tube & Storage JFSW turbulent tube vessels & U-tube/floating coil storage units (100–15,000 L)
03 / Physical Scale Control Inline JFGP (<700 mg/L) & non-invasive wrap-around induction processors (to 2,000 mg/L)
04 / Hardness Removal & Filtration RLC ion-exchange softeners (≤0.03 mmol/L) & WHQC self-cleaning filters
02 / Portfolio Showcase

Heat Exchange & Treatment Product Families

Detailed engineering review of YONGFAN’s heat exchangers, packaged stations, physical treatment, and softeners.
01 · Plate Exchangers Gasketed Plate & Frame · 0.2–500 m² · Approach ~1 °C

Gasketed Plate Heat Exchangers

Compact indirect heat transfer between fluid loops (plate area 0.02–1.3 m²/plate, assembly area 0.2–500 m², flow 4–900 m³/h, DN15–DN250, PN 1.0/1.6/2.5 MPa, design temp to 170 °C, approach to ~1 °C). Plates in SUS304, 316L, 321, Titanium TA1, Hastelloy, RS-2; gaskets in EPDM, NBR, FKM, Silicone.

Assembly Area
0.2 to 500 m² Surface Range
Flow Capacity
4 to 900 m³/h (DN15 to DN250)
Plate Metallurgy
SUS304, 316L, Titanium TA1, Hastelloy
Gasket Options
EPDM, NBR, Fluororubber (FKM), Silicone
Primary Applications

Central HVAC chiller/boiler decoupling, district cooling substations, swimming pool heating, and industrial heat recovery.

02 · Packaged Stations Packaged Plate Station · 0.21–21 MW · ZS / ZW

Packaged Plate Heat Exchanger Units

Factory-assembled skid integrating plate heat exchangers, circulation pumps, make-up system, valves, sensors, piping, and electrical control cabinet (capacity 0.21–21 MW per unit, heating area 3,000–300,000 m²). Available in steam-to-water (≤0.4 MPa steam) and water-to-water (95/70 °C to 60/85 °C or 45/55 °C) with ZS VFD or ZW expansion make-up.

Thermal Capacity
0.21 to 21 MW per Packaged Skid
Heating Coverage
3,000 to 300,000 m² Floor Area
Heat Sources
Saturated Steam (≤0.4 MPa) or Hot Water
Make-Up Type
ZS (VFD Make-Up) or ZW (Expansion Make-Up)
Primary Applications

District heating substations, commercial building heating/cooling plants, and centralized hot water stations.

03 · JFSW Tube Exchanger Double-Thread Turbulent Tube · 0.35–5.6 MW

JFSW Double-Thread Turbulent Heat Exchanger

Enhanced tube-type heat exchanger for heating, air conditioning, and domestic hot water (0.35–5.6 MW, steam-to-water 0.2 MPa steam or water-to-water). Features double-thread copper or stainless-steel tubes in vertical or horizontal vessels, delivering high turbulence, low scaling tendency, and easy mechanical cleaning.

Thermal Range
0.35 to 5.6 MW Capacity
Temperature Programs
Heating (70→95 °C), A/C (50→60 °C), DHW (5→60 °C)
Tube Options
Double-Thread Enhanced Copper / Stainless
Vessel Form
Vertical or Horizontal Pressure Vessel
Primary Applications

Industrial heating plants, boiler hot-water stations, institutional domestic hot water, and HVAC loops.

04 · Storage Exchangers U-Tube & Floating Coil · 100–15,000 L Storage

Storage Heat Exchangers (U-Tube & Floating Coil)

Buffers peak hot water demand with built-in storage (100–15,000 L volume). U-tube storage (10 kW–10 MW, to 2.5 MPa) features a removable flanged tube bundle for easy descaling; Floating-coil storage (steam 21–1,045 kW, water 10–523 kW, 1.0/1.6 MPa) utilizes coil thermal movement for automatic scale-shedding in hard water.

Storage Volume
100 to 15,000 L Vessel Capacity
U-Tube Variant
Removable Flanged Tube Bundle (to 2.5 MPa)
Floating Coil
Thermal Shock Dynamic Scale-Shedding
Tube Materials
Copper, SUS304, 316, 316L, 316Ti
Primary Applications

Hotels, hospitals, university dormitories, sports complexes, and facilities with high-peak domestic hot water demand.

05 · Direct-Mixing Units High-Rise Direct Mixing · 0.14–4.2 MW

High-Rise Direct-Mixing Heating Units

Connects high and low heating zones hydraulically without an intermediate heat exchanger (0.14–4.2 MW per unit, 20–60 m elevation difference, flow 0.5–360 m³/h, system pressure 0.5–1.0 MPa, motor 0.75–110 kW). Eliminates heat exchanger approach loss and simplifies high-rise district heating connections.

Heat Load
0.14 to 4.2 MW per Skid
Elevation Diff
20 to 60 m High/Low Zone Height
Flow Capacity
0.5 to 360 m³/h Regulated Flow
Control Modes
Manual, Automatic & Remote PLC/BMS
Primary Applications

High-rise residential and commercial district heating connections with substantial vertical elevation differences.

06 · JFGP Electronic Inline Physical Descaling · Hardness <700 mg/L · DN15–DN600

JFGP Electronic Water Treatment Equipment

Inline high-frequency electromagnetic water processor installed directly into the pipe (DN15–DN600, ≤95 °C water, 220 V 50 Hz, 10–500 W, head loss ≤1.5 m H2O, frequency to 12 MHz). Treats water with hardness <700 mg/L as CaCO3 to prevent crystalline scale adhering to pipe walls and heat exchangers.

Applicable Hardness
<700 mg/L as CaCO3
Pipe Diameters
DN15 to DN600 Inline Installation
High Frequency
Up to 12 MHz Electromagnetic Field
Materials & Enclosure
Carbon Steel / SS304 / SS316L (IP54)
Primary Applications

Cooling tower circulating water loops, central HVAC condenser water, boiler feed lines, and heat exchanger protection.

07 · Induction Processor Non-Invasive Coil Wrap · Hardness ≤2,000 mg/L · DN15–DN700

Broad-Spectrum Induction Water Processor

Non-invasive physical water treatment utilizing external coils wrapped around the outside of existing pipes without cutting pipework (DN15–DN700, <120 °C, 220 V 50 Hz, 10 Hz–500 kHz, 25–600 W). Treats high-hardness water up to 2,000 mg/L as CaCO3, altering crystal nucleation to prevent scale formation.

High Hardness Limit
Up to 2,000 mg/L as CaCO3
Installation
Non-Invasive Wrap-Around (No Pipe Cutting)
Frequency Range
10 Hz to 500 kHz Swept Induction
Pipe Size Envelope
DN15 to DN700 All Pipe Materials
Primary Applications

Existing facility retrofits, high-hardness industrial circulating water, geothermal loops, and zero-shutdown upgrades.

08 · RLC Softeners & WHQC Ion-Exchange Softeners & Integrated Filtration

RLC Water Softeners & WHQC Physical Filters

RLC fully automatic sodium ion-exchange softeners remove calcium and magnesium ions, reducing residual hardness to ≤0.03 mmol/L from raw water ≤10.0 mmol/L (inlet turbidity ≤1 NTU, resin life >3 yrs). WHQC provides physical integrated circulating water treatment with automatic self-cleaning backwash filtration (hardness ≤800 mg/L, ≤1.6 MPa).

RLC Residual Hardness
≤0.03 mmol/L True Soft Water
RLC Raw Hardness
≤10.0 mmol/L (Inlet Turbidity ≤1 NTU)
WHQC Filter
Hardness ≤800 mg/L, Auto Backwash
Regeneration
Automated Brine/Salt Ion Exchange
Primary Applications

Steam boiler feed water, domestic hot water softening, cooling tower make-up, and industrial closed loops.

03 / Selection Routing

Heat Exchange & Treatment Selection Matrix

Match thermal duty and water chemistry challenges to the appropriate YONGFAN equipment platform.
Project ProblemFirst Product FamilyDocumented BoundaryFirst Input to Confirm
Compact two-loop indirect heat transferGasketed Plate Heat Exchanger0.2–500 m² area, 4–900 m³/h, DN15–DN2504 design temperatures & fluid chemistry
Complete factory-assembled heating stationPackaged Plate Unit0.21–21 MW capacity (3,000–300,000 m²)Heat source, secondary temp & thermal load
Tube-type heating / A/C / DHW dutyJFSW Turbulent Exchanger0.35–5.6 MW steam/water capacityDuty temperature program (Heating/DHW)
Hot-water storage + removable bundleU-Tube Storage Exchanger100–15,000 L storage, 10 kW–10 MWPeak draw demand & storage volume
Storage in harder-water scaling dutyFloating Coil Storage Exchanger100–15,000 L (200–10,000 L std)Water hardness & peak draw demand
High-rise hydraulic zone connectionDirect-Mixing Heating Unit0.14–4.2 MW; 20–60 m elevation diffHeat load & high/low zone elevation
Inline physical scale & fouling controlJFGP Electronic Water Treatment<700 mg/L hardness, ≤95 °C, DN15–DN600Water hardness & peak flow rate
Non-invasive wrap-around physical treatmentBroad-Spectrum Induction Processor≤2,000 mg/L hardness, <120 °C, DN15–DN700Hardness & zero-shutdown installation
True calcium/magnesium hardness removalRLC Automatic Water SoftenerRaw hardness ≤10 mmol/L, residual ≤0.03 mmol/LRaw water hardness & required soft flow
Integrated physical treatment + filtrationWHQC Physical Integrated TreatmentHardness ≤800 mg/L, ≤50 °C, ≤1.6 MPaWater chemistry & suspended solids load
04 / Procurement Protocol

Information Required for Thermal & Water Sizing

Provide four operating temperatures, thermal heat load, fluid properties, water analysis data, and storage requirements.
STEP 01

Thermal Program

Provide Primary In/Out temps, Secondary In/Out temps, total heat load (kW/MW), and flow rates.

STEP 02

Exchanger Architecture

Select Gasketed Plate, Packaged Skid, JFSW Turbulent Tube, or U-Tube/Floating Storage (L).

STEP 03

Water Chemistry Analysis

Provide total hardness (mg/L CaCO3 or mmol/L), chloride content (ppm), turbidity, and pH.

STEP 04

Water Treatment Selection

Specify inline JFGP (<700 mg/L), wrap-around induction (≤2,000 mg/L), or RLC softener (≤0.03 mmol/L).

Engineering Handoff

Submit Thermal & Water Quality Schedules for Engineering Sizing

YONGFAN thermal engineers will verify plate heat transfer coefficients (LMTD), check fouling factors, select plate metallurgy (SS316L / Titanium), size water softeners, and supply certified drawings.

Thermal Duty: 4 Design Temperatures (T1/T2 → T3/T4 in °C)
Heat Load (kW / MW) & Design Pressure (PN10 / 16 / 25)
Fluid Type: Water, Glycol %, Steam Pressure (MPa), Seawater
Peak Domestic Hot Water Storage Volume (Liters) if DHW
Water Analysis: Total Hardness, Chlorides, Conductivity, pH
Treatment Method: Electronic (JFGP), Induction, or Softening (RLC)
05 / Manufacturing QA

GB150 / GB151 Hydro Testing & Quality Assurance Standards

Heat exchangers undergo 1.25× hydro testing per GB150/151; electronic electrodes undergo 5,000 V hi-pot electrical verification.
Hydro QA

GB150 / GB151 1.25× Hydro Testing

Plate packs, tube bundles, and pressure vessels undergo hydrostatic pressure verification at 1.25× design pressure.

Leak QA

Separate-Side Cross-Leak Tests

Primary and secondary channels undergo differential pressure testing to verify zero cross-contamination.

Hi-Pot QA

5,000 V Electrode Hi-Pot Test

JFGP electronic water treatment electrodes undergo 5,000 V high-voltage insulation and frequency sweep testing.

Skid QA

Packaged Unit System Test

Packaged heat exchange skids undergo full-load pump flow/head verification and control cabinet functional simulation.

Plate Packs & JFGP: Standard plate heat exchangers and JFGP units dispatched in 15–20 working days. Packaged Skids & Storage: Packaged plate stations, storage vessels, and RLC softeners engineered to order.
06 / Engineering Knowledge

Heat Exchange & Water Treatment FAQ

Direct engineering answers regarding plate vs tube exchangers, storage sizing, electronic vs softening, and titanium plates.

Should I choose a plate or tube heat exchanger?

Choose based on fluid, approach temperature, and footprint. Plate exchangers are compact, highly efficient (approach to ~1 °C), and serviceable. JFSW double-thread tube exchangers suit higher fouling and industrial duties.

When do I need a storage heat exchanger?

Use storage when hot water demand has high short-duration peaks (e.g. hotels, dorms) that are better buffered by stored volume (100–15,000 L) than oversized instantaneous heaters.

What is the difference between U-tube and floating coil storage?

U-tube bundles can be withdrawn completely for cleaning. Floating-coil exchangers use coil thermal movement under temperature cycling for automatic scale-shedding in harder water.

When should I use a packaged plate unit?

Use packaged units when you want the heat exchanger, circulation pumps, make-up system, valves, instruments, and controls factory-assembled on a single skid.

What is the difference between JFGP and the induction processor?

JFGP is installed inline into the pipe (<700 mg/L hardness, ≤95 °C, DN15–DN600). The induction processor wraps around the outside of existing pipework without cutting (≤2,000 mg/L, <120 °C, DN15–DN700).

Does electronic water treatment soften water?

No. Electronic and induction processors alter crystal nucleation to prevent scale adhesion, but they do not remove calcium/magnesium ions. For true ion removal, specify an RLC softener.

What residual hardness does RLC achieve?

The documented RLC softener reduces water hardness to ≤0.03 mmol/L from raw water up to ≤10.0 mmol/L.

Does RLC need pre-filtration?

Yes. Raw water inlet turbidity should be ≤1 NTU to prevent fouling the ion-exchange resin beads; install upstream pre-filtration for higher turbidity.

When are Titanium TA1 plates required?

Specify Titanium TA1 plates whenever chloride levels are high (e.g. seawater cooling, swimming pools, aggressive saline fluids) to prevent chloride stress cracking in stainless steel.

Can direct-mixing heating replace heat exchangers in high-rise buildings?

Yes, where the project permits direct hydraulic connection between high and low heating zones, eliminating intermediate heat exchanger approach losses.

07 / Application Boundaries

Heat Exchange & Treatment Engineering Boundaries

Key operational boundaries to respect when designing heat exchange and water treatment systems.
Boundary 01 / Physical vs Softening

Not Ion Removal

Physical/electronic water treatment alters scale crystal morphology; it does not replace ion-exchange softening where soft-water standards (<0.03 mmol/L) are mandated.

Boundary 02 / Temperature Limits

Gasket Compatibility

Gasket materials must match fluid chemistry and temperature (EPDM ≤150 °C, NBR ≤110 °C, FKM ≤170 °C); do not exceed gasket limits.

Boundary 03 / High Hardness Sizing

JFGP <700 mg/L Limit

Do not specify JFGP for water hardness exceeding 700 mg/L as CaCO3; use broad-spectrum induction processors or RLC ion-exchange softeners.

Boundary 04 / Direct-Mixing Rules

Zone Pressure Approval

High-rise direct-mixing units require approval for hydraulic connection between zones; verify static pressure ratings on lower-zone radiators and pipework.

08 / Engineering Handoff

Plan Your Heat Exchange & Water Treatment System

Send your four design temperatures, heat load, fluid composition, and water analysis report. YONGFAN thermal and water treatment engineers will calculate heat transfer areas, select metallurgy, size water softeners, and supply certified submittals.

Gasketed Plate Heat Exchangers (0.2–500 m² Area)Packaged Plate Units (0.21–21 MW, ZS/ZW Skids)JFSW Double-Thread Turbulent Tube ExchangersU-Tube & Floating Coil Storage (100–15,000 Liters)High-Rise Direct-Mixing Heating Units (0.14–4.2 MW)JFGP Inline Electronic Water Treatment (<700 mg/L)Broad-Spectrum Induction Processors (≤2,000 mg/L)RLC Automatic Ion-Exchange Softeners (≤0.03 mmol/L)
YONGFAN thermal engineers calculating LMTD heat transfer coefficients and reviewing water softening chemistry reports
Direct Thermal Engineering Handoff
LMTD heat transfer modeling, Titanium/SS plate selection & water softener submittal drawings.