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Do Not Ignore 200 kg per Hour Fuel Planning
2026-09-23 11:10:50

When a veneer dryer machine is specified for fresh veneer dried to 0–5% moisture, buyers often focus on throughput and electrical power initially, only to realize later that their fuel line was inadequate. With the FBH30-13 configuration, the fuel number is not a minor detail: fuel consumption is listed as 200 kg/h, while total electrical power is 15 kW. These are two distinct operating inputs, and treating them as one “energy” figure can distort both budgeting and production planning.


Veneer dryer with separate power and fuel


Why 200 kg/h is Crucial in the Veneer Drying System Budget

In any Veneer Drying System, electrical power and fuel serve different purposes and are measured in different units. The FBH30-13 specification makes this distinction explicit:

  • Total power: 15 kW (the combined electrical load of key components)

  • Fuel consumption: 200 kg/h (the thermal input requirement under the listed drying condition)

For procurement teams planning plywood veneer drying around this operating point, the practical implication is clear: do not let the 15 kW figure “hide” the 200 kg/h fuel requirement. If fuel supply, storage, handling, and delivery are not designed around 200 kg/h, the project can end up constrained by fuel logistics rather than machine capacity.

Experienced buyers, in fact, often maintain two distinct entries in their cost models for this very reason:

  • Electricity cost based on 15 kW and the local tariff

  • Fuel cost based on 200 kg/h and the local fuel price

This separation helps avoid a common oversight—assuming the listed electrical power is the primary operating input, while the larger hourly fuel demand is treated as optional or “variable.”

FBH30-13 Vertical Veneer Dryer Specifications at a Glance

The FBH30-13 is published as a reference model for drying fresh veneer to 0–5% moisture with a rated 2 m³/h output. It is frequently evaluated in projects where the final moisture target is low and the production line needs a compact, continuous vertical configuration.

ParameterFBH30-13
Moisture contentFresh veneer dried to 0–5%
Output2 m³/h
Machine size13 × 3 × 4 m
Hot air fan9 kW
Traction motor1.5 kW
Induced draft fan3 kW
Built-in furnace1.5 kW
Total power15 kW
Fuel consumption200 kg/h

These values should always be considered in conjunction. The output figure is tied to the final moisture condition, while the power and fuel numbers indicate what the veneer dryer machine needs to run at that condition.

Turning the 200 kg/h Figure into a Simple Planning Ratio

Because the FBH30-13 lists both hourly output and hourly fuel consumption, buyers can translate the specification into a simple ratio for high-level planning.

Using the rated values:

  • 200 kg/h ÷ 2 m³/h = 100 kg of fuel per m³

This isn't a standalone performance claim—it's simply a planning ratio derived directly from the published operating point. It assists in addressing practical questions that arise early in vendor evaluation and plant design, such as:

  • Whether the fuel supply system can support continuous operation at the target final moisture.

  • How fuel logistics scale when production hours increase.

  • How to keep fuel budgeting separate from the 15 kW electrical load.

A similarly clean approach can be used for cost modeling without mixing units:

  • Hourly fuel cost = 200 kg × (fuel price per kg)

  • Electricity cost = 15 kW × operating hours × (electricity tariff)

Once both are calculated, they can be combined with labor and maintenance assumptions used in the project’s internal model.

Why This Vertical Veneer Dryer is Positioned as a Low-Cost Option

Published product information positions the vertical configuration as a Low Cost Veneer Dryer based on several system-level factors—not a single energy number.

Key aspects consistently highlighted for the vertical design involve:

  • Drying cost is less than $8/m³, described as 30–60% of the drying cost of other dryers.

  • The equipment uses three-dimensional loading of veneer, increasing loading capacity by 30–80% compared with other dryers.

  • The occupied area is described as only two-thirds of the roller dryer, supporting space-limited installations.

  • Standardization and modular production of parts are described as a way to reduce production losses of raw and auxiliary materials and improve working efficiency.

  • A hot-air circulation arrangement is described with uniform airflow, uniform temperature, and a countercurrent drying cycle.

  • Supporting heat-source products are described as high-efficiency, energy-saving, and environmentally protective, with waste heat reheating technology.

Collectively, these points clarify why the vertical configuration is frequently considered a comprehensive Veneer Drying System solution: compact footprint, high loading capacity, and controlled circulation are presented as the core levers behind the cost positioning.


Infographic of vertical dryer cost savings


In practical terms, this means the machine is often evaluated not just on hourly output, but on how well it supports continuous operation in a limited production area. Buyers comparing equipment options typically look at drying cost, site use, loading structure, heat circulation, and staffing together instead of relying on a single headline specification.

Installation and Staffing Details Buyers Often Confirm Early

Beyond fuel and power, buyers usually confirm installation parameters early on—especially when planning plywood veneer drying lines around limited space.

For the vertical core veneer configuration, the equipment is described as being divided into Feeding area, Heating area, Cooling area, and Discharging area. It also uses a chain to bring the veneer or finished board into the drying room for circulating drying.

Two operational considerations are frequently relevant in early planning discussions:

  • The equipment is described as needing to be assembled on the customer’s factory site, allowing installation according to specific location requirements.

  • The vertical veneer drying equipment is described as requiring 2 workers per shift (as stated for the vertical tunnel-type core veneer dryer description).

While these points don't replace a detailed engineering layout review, they help procurement teams capture the non-negotiables of a Veneer Drying System project: site assembly, space constraints, and the practical realities of continuous production.

A Buyer's Checklist to Prevent Undersized Fuel Supply

When the target is fresh veneer dried to 0–5% moisture, the most reliable strategy is to prioritize fuel planning as a primary design element.

A practical checklist aligned with the FBH30-13 specification includes:

  • Is the target condition fresh veneer dried to 0–5%?

  • Is the rated output 2 m³/h suitable for the line plan?

  • Can the site accommodate the machine size 13 × 3 × 4 m?

  • Is the electrical infrastructure prepared for 15 kW total power?

  • Is the fuel system designed for 200 kg/h fuel consumption during continuous operation?

  • Has site assembly been considered as part of the installation plan?

Buyers looking for a China veneer dryer manufacturer or China veneer dryer supplier often use this type of checklist to keep discussions specific and comparable across vendors. For the FBH30-13 operating point, the core principle is straightforward: keep fuel and electrical power separate, and never omit the 200 kg/h fuel line when the moisture target is 0–5%.

For product pages and published parameters, see Shandong Shine Machinery Co., Ltd;Shine Machinery at www.veneersdryer.com.

FAQs

What is the listed fuel consumption for the FBH30-13?

The FBH30-13 specification lists fuel consumption of 200 kg/h for fresh veneer dried to 0–5% moisture.

What is the rated output for this Vertical Veneer Dryer model?

The FBH30-13 lists an output of 2 m³/h under the stated moisture condition.

Is 15 kW the total energy requirement?

No. 15 kW is listed as total electrical power, while 200 kg/h is fuel consumption. They are separate operating inputs.

How can buyers convert the specification into a fuel-per-output planning number?

Using the rated figures, 200 kg/h ÷ 2 m³/h = 100 kg/m³. This is a planning ratio derived from the published specifications.

Why is the vertical configuration described as a Low Cost Veneer Dryer?

Published information highlights drying cost less than $8/m³, three-dimensional loading with 30–80% higher loading capacity, and an occupied area described as two-thirds of a roller dryer, alongside airflow and temperature uniformity.

Does the equipment require on-site assembly?

Yes. The vertical equipment is described as needing to be assembled on the customer’s factory site, so it can be installed according to location requirements.

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