D-TYPE WATER TUBE STEAM BOILER

SZS Gas & Oil Fired Water Tube Steam Boiler

A double-drum water-tube boiler route for larger industrial steam loads, with saturated and superheated configurations engineered around fuel, pressure, steam condition, operating profile and site constraints.

Reference cutaway of an industrial water tube boiler heat-transfer structure
SZS water-tube boiler configuration shown for product illustration.
Steam Capacity
10–35 t/h
Steam Condition
Saturated / Superheated
Structure
Double-Drum D-Type
Fuel Options
Gas / Diesel / Heavy Oil

PRODUCT OVERVIEW

A Water-Tube Route for Larger and More Demanding Steam Loads.

The SZS series uses a double-drum D-type arrangement. Water and steam circulate through the drums, membrane water walls and convection tube bank while combustion heat passes across the external tube surfaces.

The product route can be engineered for saturated or superheated steam. Final capacity, pressure, steam temperature, burner, heat recovery and auxiliary scope are confirmed from the approved project design.

01

Double-Drum D-Type Layout

The furnace and convection bank are arranged within a compact water-tube structure designed around steam circulation and heat transfer.

02

Membrane Water-Wall Furnace

Close-packed water-wall construction forms the furnace enclosure and supports a controlled gas-side boundary.

03

Saturated or Superheated Steam

The steam condition is selected from the downstream process, pressure, temperature and operating requirements.

04

System-Level Engineering

Combustion, feedwater, heat recovery, controls, flue-gas routing and site interfaces are coordinated within the agreed supply boundary.

HOW THE SZS BOILER WORKS

Water Circulates Inside the Tubes as Heat Moves Across the Furnace and Tube Bank.

The burner fires into the D-type furnace. Radiant heat is absorbed by the membrane water walls, and the flue gas then passes through the convection tube bank before entering the configured heat-recovery and flue system.

Steam-water separation takes place in the drum system. Where superheated steam is required, the superheater and gas-side arrangement are engineered for the approved outlet condition.

Engineering noteCirculation, heating surfaces, superheater, burner and flue-gas route must follow the approved thermal calculation and project drawings.

REFERENCE SYSTEM DIAGRAM

How the SZS Boiler Connects to the Complete Steam Plant.

The reference route coordinates the burner, water-tube boiler, steam header, process user, deaeration and feedwater equipment, economizer, chimney and plant control boundary.

Reference system diagram for an SZS gas or oil fired water tube steam boiler with burner, steam header, process user, deaerator, feedwater pump, economizer, chimney and PLC controls
Reference arrangement only. Saturated or superheated steam equipment, heat recovery, redundancy and site interfaces are finalized in the approved proposal, P&ID and project drawings.

DESIGN FEATURES

Structured for Heat Transfer, Access and Project Integration.

These points describe the current JINHONG SZS product route. Detailed construction, materials, component brands and performance requirements are fixed in the approved proposal and drawings.

01 / STRUCTURE

Compact D-Type Arrangement

The double-drum layout organizes the furnace and convection bank within a defined water-tube body.

02 / FURNACE

Membrane Water-Wall Enclosure

Close-packed water-wall tubes form the furnace boundary and support gas-side tightness.

03 / HEAT TRANSFER

Convection Tube Bank

The tube bank provides additional heating surface after the furnace radiation section.

04 / ACCESS

Inspection-Oriented Openings

Access and explosion-relief provisions on the furnace side support inspection and safe design coordination.

05 / INSULATION

Protected External Enclosure

High thermal-resistance insulation and pressed outer guard plates reduce exposed heat loss and provide a finished exterior.

06 / DELIVERY

Transport and Installation Planning

The packaged body route simplifies site assembly planning, subject to transport dimensions and destination limits.

TECHNICAL DATA

Reference Configurations for Initial SZS Selection.

The JINHONG SZS product range lists five rated capacities and saturated or superheated steam routes. The final model code, pressure, temperature, dimensions and performance follow the approved technical proposal and drawings.

Rated Capacity10–35 t/h
Rated Pressure Routes1.25 / 1.57 / 2.45 MPa
Steam Temperature Routes193–400°C
Fuel RoutesGas / Diesel / Heavy Oil
10 t/h15 t/h20 t/h25 t/h35 t/h
SZS steam-condition routes — reference values
ConfigurationRated Capacity
t/h
Rated Pressure
MPa
Steam Temperature
°C
Selection Route
Saturated Steam10 / 15 / 20 / 25 / 351.25193General industrial process steam
Saturated Steam10 / 15 / 20 / 25 / 351.57204Higher-pressure saturated-steam route
Superheated Steam10 / 15 / 20 / 25 / 351.25250Moderate superheat requirement
Superheated Steam10 / 15 / 20 / 25 / 352.45400Project-engineered high-pressure superheat route
Maximum transport dimensions by rated capacity — reference values
Rated Capacity10 t/h15 t/h20 t/h25 t/h35 t/h
L × W × H6.8 × 3.4 × 3.54 m7.8 × 3.6 × 3.8 m8.8 × 4.1 × 4.0 m10.5 × 4.2 × 4.1 m13.0 × 4.5 × 4.2 m

Efficiency basis: the technical data references design heating efficiency above 90%. A value up to 98% is associated with suitable natural-gas condensing heat recovery and must not be treated as a universal operating guarantee.

Selection note: actual output, efficiency, fuel consumption, emissions, dimensions and component configuration depend on fuel quality, load, feedwater condition, steam requirement, site conditions and heat recovery. The final technical agreement and approved drawings take precedence.

Reference cutaway of an industrial water tube boiler heat-transfer structure
Reference cutaway showing the D-type furnace and water-tube heating-surface arrangement; final construction follows approved drawings.

COMPLETE SYSTEM SCOPE

Define the Boiler and Every Plant Interface Together.

A workable SZS proposal coordinates the boiler body with combustion, feedwater, steam condition, controls, heat recovery, flue-gas routing and the customer’s existing production utilities.

Boiler body and enclosureMatched gas or oil burnerFeedwater tank and pumpsWater-treatment equipmentPLC and safety controlsValves and instrumentsEconomizer / condenser optionFlue duct and chimney route

Not every item is included by default. The final supply scope, component brands, documentation and site interfaces are stated in the approved proposal.

Define your system boundary

INDUSTRIAL APPLICATIONS

For Continuous Steam Demand Across Larger Production Systems.

Industry name alone cannot select a boiler. Load profile, required pressure and temperature, process stability, condensate return, fuel and site limits must be reviewed together.

01

Textile & Dyeing

Central steam for dyeing, washing, drying, finishing and multi-line production loads.

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02

Paper & Pulp

Steam for drying sections, process heating and continuous mill utility demand.

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03

Chemical Processing

Process steam for reactors, heat exchangers, distillation and plant utilities.

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04

Food & Beverage

Coordinated steam supply for cooking, sterilization, cleaning and thermal processing.

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05

Pharmaceutical

Engineered plant steam for production, cleaning and controlled process-heating duties.

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06

Large Manufacturing Plants

Centralized steam generation for multiple production lines and varied operating loads.

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SELECTION INPUTS

Confirm the Steam Condition Before Confirming the Model.

Approximate project information is enough for an initial review. JINHONG engineers will use it to compare capacity, saturated or superheated steam, pressure, fuel and system direction.

  1. 01
    Steam Demand

    Average load, peak load, load changes and daily operating hours.

  2. 02
    Steam Condition

    Saturated or superheated steam, required pressure and outlet temperature.

  3. 03
    Fuel Conditions

    Fuel type, lower heating value, supply pressure and local availability.

  4. 04
    Feedwater & Condensate

    Water quality, inlet temperature and expected condensate-return ratio.

  5. 05
    Site & Transport

    Boiler-room layout, altitude, utilities, route limits and lifting conditions.

  6. 06
    Project Boundary

    Required auxiliaries, heat recovery, controls, documentation and site support.

TECHNICAL FAQ

Common Questions About SZS Boiler Selection.

What capacity range is listed for the JINHONG SZS series?

The SZS product range lists 10, 15, 20, 25 and 35 t/h rated capacities. Final selection is based on average and peak demand, steam condition, redundancy and operating profile.

Can the SZS boiler provide superheated steam?

Yes. The SZS product range includes saturated-steam routes and superheated routes at 250°C or 400°C. The applicable pressure, superheater and heat-transfer arrangement must be engineered for the project.

Which fuels can be considered?

the product range includes diesel, heavy oil and gaseous fuels, including natural gas, LPG and city gas. Burner and fuel-train selection must match the actual fuel analysis, supply pressure and local requirements.

Does every SZS boiler reach 98% efficiency?

No. The technical data references design heating efficiency above 90%, with up to 98% associated with suitable natural-gas condensing recovery. Actual performance depends on the approved design, load, fuel, feedwater and recovery conditions.

How is SZS different from a WNS fire-tube boiler?

SZS is a water-tube route intended for larger or more demanding steam conditions, while WNS is a packaged fire-tube route for many saturated-steam applications. The choice must come from project data rather than model name alone.

Are the listed dimensions final?

No. They are reference maximum transport dimensions from the SZS product range. Final body arrangement, transport splits and site interfaces follow the approved drawings and delivery plan.

SZS TECHNICAL PROPOSAL

Tell Us the Capacity, Pressure, Steam Temperature and Fuel Available.

We will organize an initial boiler and auxiliary-system direction from the project information you provide.