Schlagwort-Archiv Heat pump

Wärmepumpen-Frischluftventilatorsystem in China

A heat pump fresh air ventilator system combines ventilation and energy recovery, using a heat pump to manage the temperature of incoming fresh air while simultaneously removing stale air from a space. This type of system is especially energy-efficient, as it not only improves indoor air quality but also recycles the thermal energy from the exhaust air.

Here’s how it typically works:

  1. Fresh Air Intake: The system draws in fresh air from the outside.
  2. Heat Pump Operation: The heat pump extracts heat from the exhaust air (or vice versa depending on the season) and transfers it to the incoming fresh air. In the winter, it can warm up the cold outside air; in the summer, it can cool the incoming air.
  3. Ventilation: As the system works, it also ventilates the space by removing stale, polluted air, maintaining a constant flow of fresh air without wasting energy.

The benefits include:

  • Energieeffizienz: The heat pump reduces the need for additional heating or cooling, saving on energy costs.
  • Improved Air Quality: Constantly introducing fresh air helps remove indoor pollutants, ensuring better air quality.
  • Temperature Control: It can help maintain comfortable indoor temperatures year-round, whether heating or cooling is needed.

These systems are commonly used in energy-efficient buildings, homes, and commercial spaces where both air quality and energy savings are priorities.

Heat pump drying heat recovery energy saving system

With the further development of China's economy, the use of green energy will be more and more extensive. Heat pump dehumidification dryers with plate type obvious heat recovery function have developed rapidly in recent years and have been widely used in the Yangtze River basin, southwest China and South China.

The unit using the inverse cano principle at the same time, combined with efficient heat recovery technology, in the whole drying dehumidifying process, through the duct the wet air within the chamber connected to the host using the sensible heat plate heat collector recovery of the sensible heat and latent heat of hot and humid air, thermal recycling, greatly improve the performance of the host, improve the drying speed and material quality. The waste heat can not only improve the performance of the unit, but also reduce the thermal pollution to the environment and alleviate the urban heat island effect.

The heat pump drying heat recovery system is not only used in the mud drying system, but also widely used in many other drying industries. It has the characteristics of good drying quality and high degree of automation, and is the best choice product for energy saving, green and environmental protection in the modern drying industry.

Heat pump dryers with and without heat recovery working principle

When the heat pump dryer dries the air, the air forms a closed cycle between the drying chamber and the equipment. The evaporator's heat absorption function is used to cool and dehumidify the hot and humid air, and the condenser's heat release function is used to heat the dry cold air, so as to achieve the effect of cycle dehumidification and drying.

The main difference between heat recovery function and heat pump dryers without heat recovery function lies in the different air circulation modes. The former is equipped with plate type sensible heat exchanger, which plays the function of pre-cooling and preheating in the air circulation process, reducing the load of compressor operation and achieving the purpose of energy saving.

Heat pump drying system operation mode

Energy saving analysis of heat recovery

Taking a heat pump dryer as an example, the air temperature of drying is designed to be 65℃, the relative humidity is 30%, the circulating air temperature is 65℃, the temperature before passing through the evaporator is 65℃, and the temperature after evaporation cooling is 35℃. The condenser needs to heat the air of 35℃ to 65℃ before it can be used.

After matching with BXB500-400-3.5 heat exchanger, 35℃ return air absorbs heat from exhaust air after passing through plate heat exchanger, and the temperature rises to 46.6℃. The condenser only needs to heat the air from 46.6℃ to 65℃ to meet the use requirements, greatly reducing the load of evaporator and condenser, thus reducing the power of the whole machine, achieving the purpose of energy saving.

Energy saving analysis of heat recovery


Selection and economic calculation

We are very glad to show you the calculation and selection software of plate heat exchanger jointly developed by us and Tsinghua University. If you need, please contact us!

Abgaswärmetauscher zur Wärmepumpentrocknung

Der Abgaswärmetauscher für die Wärmepumpentrocknung ist ein Gerät zur Rückgewinnung und Wiederverwendung der beim Trocknungsprozess entstehenden Abwärme. Er kann die Energieeffizienz verbessern, die Betriebskosten senken und die Umweltbelastung minimieren und ist daher ein unverzichtbarer Bestandteil der modernen Industrie.
Funktionsprinzip:
Plattenwärmetauscher bestehen aus Wärmetauscherkernen, Leitschaufeln, festen Rahmen usw. Sie verfügen über Kreuzstrom-, Gegenstrom- oder Kreuzgegenstromstrukturen, um sicherzustellen, dass sich die beiden Luftströme nicht vermischen und die Übertragung von Gerüchen und Feuchtigkeit vermieden wird. Dieses Design verbessert die Effizienz und Zuverlässigkeit des Wärmeaustauschs. Bei einem Temperaturunterschied zwischen zwei Luftströmen tauschen diese Wärme über eine wärmeleitende Platte aus. Die wärmere Seite überträgt Wärme an die kühlere Seite, um Energie zurückzugewinnen. Plattenwärmetauscher sind modular aufgebaut, bieten geringe Wartungskosten und sind einfach zu bedienen. Je nach Luftstromkanal können sie in Kreuzstrom-, Gegenstrom- und Kreuzgegenstromtypen unterteilt werden, um unterschiedlichen Anwendungsanforderungen gerecht zu werden.
Plattenwärmetauscher werden nicht nur in Wärmepumpen-Trocknungssystemen verwendet, sondern auch in zahlreichen anderen Branchen, wie etwa Heizungs-, Lüftungs- und Klimatechnik, Kommunikation, Energie, Textil, Automobil, Lebensmittel, Medizin, Landwirtschaft, Tierhaltung usw., zur Belüftung, Energierückgewinnung, Kühlung, Vorwärmung, Entfeuchtung und Abwärmerückgewinnung eingesetzt.

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