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Material
The PLASTIC HEAT EXCHANGER CORE is made of special fibrous paper, which have high moisture permeability,
good air-tightness, anti-rends, aging resistance, anti-mildew features; and with ABS framework, which is
hard to break, long service life, pro-environment, good impermeability; also with galvanized sheet cover plate and
plastic handle.
Fibrous paper ABS framework Cover and handle
Working principle
When the different temperature and humidity exist in two air streams, the transfer of humidity and heat will be occurs.
Then the outdoor air and exhaust air will be completely separate, stop the exchange of odor and moisture.
Two air streams cross enter into the heat exchanger, temperature transfer from the hotter side to the colder side,
humidity transfer from the bigger side to the smaller side, two air exchange the energy through the plates, so as to
recover energy from exhaust air.
Cross flow
Feature
1. Made of special fibrous paper, has high moisture permeability, good air-tightness, anti-rends, aging resistance, anti-mildew features.
2. ABS framework, beautiful, hard to break, long service life, pro-environment, good impermeability,
ensure the intensity and tightness of structure, reduce back flow.
3. Rectangular channel, reasonable plate distance, less interior brace, small on-way resistance,
small air loss, ensured the maximum heat exchanger area, achieved to maximum efficiency. 4. Module structure, provide different size combination of edges and plate thickness.
5. No moving parts, and low maintenance cost.
6. Compact structure, small volume, suitable for various occasions.
7. Use the vacuum cleaner purify the dust and foreign bodies on the devices, easy to use and maintenance.
vvModel range
Dimension (mm) | Plate distance (mm) | ||
A | B | C | |
163*163 |
≤1000 | 230 | 2.5 |
170*170 | 240 | ||
230*230 | 325 | ||
250*250 | 354 | ||
270*270 |
≤ 800 | 382 | |
315*315 | 446 | ||
345*345 | 488 |
Applied range
1. Especially suitable for small temperature difference and high humidity area.
2. Apply to energy recovery in room ventilation system.
3. Cold energy recovery in summer and heat energy recovery winter.
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