| MOQ: | 1 Sets |
| Price: | 10000 USD |
| Delivery Period: | 2 months |
| Payment Method: | L/C,T/T |
| Supply Capacity: | 200 sets / days |
China Industrial Stream Heat Exchanger Manufacturer for Industrial Fluid Streams
A stream heat exchanger transfers heat between industrial process streams - liquid-to-liquid, gas-to-liquid, or gas-to-gas - often where one or both streams are dirty, pressurized, or corrosive. Selection turns on fluid phase, fouling, pressure, and temperature; Chinese manufacturers serving global plants now build to ASME, EN 13445, and GB/T 150 with qualified welding and traceability.
This article explains stream-exchanger design and what to specify for reliable operation.
A "stream" here means a continuous process flow to be heated, cooled, condensed, or used as the heating medium. Liquid streams favor plate (clean) or shell-and-tube (harsh) exchangers; gas streams need finned or plate-fin surface because gases have low coefficients. When both streams are process fluids, contamination control via the wall and proper pass layout is essential.
The verified Hubei chemical project used S30408 stainless for clean hot streams (e.g., the 196 degC / 1.2 MPa steam header) and S32168 for corrosive separation services. For stream exchangers, the same alloy logic applies: match material to each stream's corrosivity, and choose geometries that allow cleaning of the fouling side.
Fabrication discipline - WPS/PQR, post-weld heat treatment where required, and RT/UT/MT/PT at specified levels, with traceable materials and hydrostatic testing - protects against failures in continuous stream service.
Define both streams' phases, temperatures, flows, fouling, and corrosivity; pick type and alloy per side; require the welding/NDT plan and cleaning access; confirm pressure-drop limits.
| Stream Pair | Recommended Type | Material | Key Requirement |
|---|---|---|---|
| Liquid-liquid (clean) | Plate | 304/316 stainless | Cleanability |
| Liquid-liquid (dirty) | Shell-and-tube | Carbon / stainless | Tube access |
| Gas-liquid | Finned / S&T | Carbon / stainless | Extended surface |
| Corrosive stream | Shell-and-tube | 321/316L stainless | Alloy selection |
| Project | Location | Industry | Application | Product | Key Spec | Material | Standards |
|---|---|---|---|---|---|---|---|
| Hubei Chemical Plant | Hubei, China | Chemical | Process stream heating and condensate recovery | Steam header, condensate tank | 196 degC / 1.2 MPa | S30408 | GB/T 150 |
A chemical plant in Hubei operates verified process stream heating and condensate recovery equipment - a 196 degC / 1.2 MPa stainless steel steam header and an atmospheric condensate tank in S30408. It illustrates real heat transfer between process streams in continuous chemical service.
The challenge was stable high-temperature stream transfer and corrosion resistance. Stainless construction and drainage solved it; shared as verified stream-equipment, not a product sale.
Shijiazhuang Zhengzhong Technology Co., Ltd (Center Enamel) fabricates process thermal and pressure equipment for chemical and energy streams, including heat-transfer and separation equipment in carbon and stainless steel. The company works to ASME, EN 13445, and GB/T 150 with qualified welding, NDT, and ISO 9001 systems.
What is a stream heat exchanger?
Equipment that transfers heat between two or more process streams (liquid-liquid, gas-liquid, or gas-gas) for heating, cooling, or condensation.
Which type is best for gas streams?
Finned or plate-fin designs, because gases have low heat-transfer coefficients and need extended surface.
How is fouling handled?
Through conservative fouling allowances and cleanable geometry - tube access for shell-and-tube, plate access for plate units.
What materials are used for corrosive streams?
Stainless grades such as 304/321 are used where the stream is corrosive; carbon steel where the medium allows.
What should I verify before ordering?
The welding procedure and NDT plan, material certificates, and cleaning/maintenance access.
What details are needed for a quotation?
Both streams' phase, flow, temperatures, fouling, corrosivity, and allowable pressure drop.
Suggested CTA: Provide both stream profiles and request a stream-exchanger specification and quotation.
Tags: Heat Exchanger, Stream Heat Exchanger, Shell and Tube Heat Exchanger