작성자 아카이브 샤오하이

Automatic rolling shutter air filter

Automatic rolling shutter air filter is an air pre filtration and dust removal equipment that uses special chemical fiber rolls as the filtering medium, and uses the pressure difference before and after the filter as the sensing signal to automatically control the replacement of filter materials.

The automatic rolling shutter air filter is equipped with synthetic fiber filter material. The thickness is 8-20mm. The main raw material of the filter material is polyester fiber. The structural form often presents a density gradient arrangement and combination. This synthetic fiber composite filter material has the characteristics of good comprehensive ventilation and dust removal performance, high strength, etc. It is non-toxic, odorless, non-volatile, non irritating to the skin, and easy to operate.

The automatic rolling shutter air filter has the advantages of simple structure, low operating cost, and convenient use. It can be used in various intake purification places, especially for air purification of high air volume and low air pressure intake systems, such as in front of ventilation equipment and air conditioning units, and at the intake end of blower rooms.

Biopharmaceutical waste heat recovery heat exchanger

The application principle of waste heat recovery equipment in biopharmaceutical enterprises is mainly to transfer the thermal energy in the pharmaceutical factory exhaust gas to the working medium through a heat exchanger, so as to raise its temperature, and then convert this thermal energy into useful energy, such as preheating air, hot water, steam, etc., to avoid energy waste and reduce exhaust gas emissions while protecting the environment.

Advantages of biopharmaceutical waste heat recovery heat exchanger:

Efficient heat transfer

Energy conservation and environmental protection

Easy to maintain

Customizable design

The use of plate heat exchangers for dehumidification and waste heat recovery in the process of biopharmaceutical waste heat recovery can effectively reduce energy consumption, improve efficiency, extend equipment service life, and help meet environmental requirements.

Coating machine, heating shaping machine, tunnel furnace exhaust gas heat recovery device

A coating machine is a mechanical device used to evenly apply specific functional adhesives, coatings, inks, etc. onto the surface of a substrate and dry it, with a wide range of applications. For example, printing and packaging coating, textile and building materials anti-corrosion and waterproof coating, automotive sheet metal coating, optical coating for circuit boards, semiconductors, and lithium battery production coating.
The coating process of a coating machine mainly includes three steps: coating, drying, and winding. The drying process generates a large amount of waste heat during the heating process. Therefore, designing an effective waste heat recovery device can effectively reduce the energy consumption of the coating machine, which is important for its energy conservation and environmental protection.
Principle of residual heat recovery of coating machine
The waste heat recovery device of the coating machine uses a heat exchanger to recover waste heat. Using the waste heat gas emitted by the coating machine (coating machine) to preheat the new air, the preheated new air enters the oven through the pipeline, achieving the goal of energy conservation. The heat exchanger achieves waste heat recovery by exchanging heat between the hot air and flue gas generated during the drying process of the coating machine and the recovery medium (such as air, water, or other fluids). Hot air and flue gas flow through the heat exchanger through one side channel, while the recovery medium flows through the other side channel. The plate structure of the heat exchanger increases the surface area for heat transfer and improves the efficiency of heat recovery.
Advantages of Coating Machine Waste Heat Recovery Device
Compact structure, high heat transfer efficiency, and strong adaptability. They are suitable for heat transfer and energy recovery in high temperature, high humidity, and corrosive environments. Through a well-designed waste heat recovery system, lithium battery coating machines can operate more efficiently and reduce their impact on the environment.

Wood drying waste heat recovery plate heat exchanger

In the conventional drying process of wood, the traditional ventilation method results in significant heat loss due to the removal of moisture and exhaust gas. The forced ventilation and waste heat recovery system in the wood drying room is a new technology that improves the indoor and outdoor dry wet air exchange process in drying production and effectively recovers waste heat.
The counterflow plate heat exchanger adopts high-quality hydrophilic coated aluminum foil, epoxy resin coated aluminum foil and other materials. The two air streams enter the channel in reverse, increasing the heat transfer area. The fresh air and exhaust air are completely separated to avoid the transmission of odors and moisture. Fast thermal conductivity, no secondary pollution, achieving ventilation and heat recovery functions.

판형 열교환기, 히트펌프, 건조용 열교환기, 산업용 신선공기 팬, 열회수 장비

제품 소개:
Plate heat exchanger is a detachable energy recovery heat exchange device composed of multiple corrugated heat transfer plates. The heat exchange core is made of hydrophilic aluminum foil, oxygen resin aluminum foil, stainless steel and other materials. The air flows in a cross flow manner, and the fresh exhaust is completely separated to avoid the transmission of any odor and moisture.

Product features:

  1. Using hydrophilic coated aluminum foil as the heat transfer conductor, processed by special technology, it has the characteristics of high heat transfer efficiency, easy maintenance, and long service life.
  2. Epoxy resin aluminum foil can be used, which is corrosion-resistant and suitable for special occasions.
  3. Multiple specifications, sizes, and spacing (3-12mm) are available for selection.
  4. Modular structure, capable of providing combinations of cross-sections of any size and plate stacking thickness, with no moving parts and low equipment maintenance costs.
  5. Compact structure, small volume, suitable for various occasions.
  6. Flexible assembly: The combination form of plate heat exchangers can be reasonably selected according to the size of the usage and installation site space, as well as the operating conditions.

Application areas:
Widely used in ventilation, energy recovery, cooling, heating, dehumidification, and waste heat recovery industries such as HVAC, telecommunications, power, textile, automotive, food, medical, agriculture, animal husbandry, baking, drying, welding, and boilers.
Heat pump system: Plate heat exchangers are widely used in air source heat pump systems, suitable for household and small commercial projects.
Industrial sector: Suitable for large-scale heat exchange in industrial production, such as chemical, food processing, energy and power industries.
Ground source heat pump system: suitable for ground source heat pump systems, with high heat transfer efficiency.
Seawater desalination: suitable for seawater desalination process, corrosion-resistant and high-temperature resistant.

데이터 센터 냉각 교환기

데이터 센터에 냉각 열교환기를 적용하는 것은 데이터 센터 에너지 효율 관리의 중요한 요소입니다. 효율적인 열 관리 기술을 통해 에너지 소비를 크게 줄이고 시스템 성능을 향상시킵니다.

air-to-air heat exchanger
판형 열교환기의 기능
에너지 효율성 개선: 판형 열교환기는 데이터센터 냉각 시스템에서 중요한 역할을 합니다. 효율적인 열교환 과정을 통해 판형 열교환기는 서버에서 발생하는 열을 냉각수로 효과적으로 전달하고, 냉각수는 냉각탑을 통해 대기 중으로 방출됩니다. 이러한 효율적인 열교환 과정은 데이터센터의 에너지 효율을 향상시킬 뿐만 아니라 에너지 소비와 운영 비용도 절감합니다.
온도 제어 최적화: 판형 열교환기는 데이터 센터 내부의 온도와 습도를 정확하게 제어하여 서버 장비가 적절한 환경에서 작동하도록 보장합니다. 냉각수의 유량과 온도를 조절함으로써 판형 열교환기는 다양한 데이터 센터의 냉각 요구를 충족하여 서버 장비의 안정적인 작동과 효율적인 성능을 보장합니다.
에너지 절약 및 환경 보호: 판형 열교환기를 사용하면 데이터 센터가 환경에 미치는 영향을 줄이는 데 도움이 됩니다. 친환경 소재와 에너지 절약 기술을 사용하는 판형 열교환기는 지속 가능한 개발이라는 개념에 따라 에너지 소비와 배출량을 줄일 수 있습니다. 또한, 판형 열교환기의 효율적인 열교환 과정은 천연자원 낭비를 줄여 데이터 센터의 친환경 운영을 강력하게 지원합니다.
유연하고 안정적입니다. 판형 열교환기는 구조가 콤팩트하고 설치 면적이 작으며 설치가 간편하다는 장점이 있어 데이터 센터와 같이 공간이 제한된 곳에서 널리 사용됩니다. 또한, 판형 열교환기의 설계 및 제조는 엄격한 품질 관리 및 시험 검증을 거쳐 장기간 안정적이고 신뢰할 수 있는 작동 성능을 보장합니다.

회전식 공기-공기 열 회수 교환기

산업용 에너지 절감 도구인 회전식 열교환기는 첨단 설계를 채택하여 열 부하 변화에 동적으로 적응하고 열전달 효율과 열에너지 활용도를 향상시킵니다. 직접 접촉 열전달과 간접 열전달의 두 가지 방식을 통해 열에너지를 효율적으로 변환합니다. 고정층 열교환기에 비해 열전달 효율이 높고 열전달 면적이 넓으며, 특히 고온, 고압 및 고부식 환경에서 탁월한 장점을 발휘합니다. 높은 수준의 자동화로 인건비를 절감하고 정밀한 온도 제어를 실현합니다. 석유화학, 에너지 및 전력, 식품 및 의약품 등의 산업에서 히터, 쿨러, 응축기 및 기타 장비로 널리 사용되어 에너지 활용 효율을 높이고 에너지 소비와 탄소 배출량을 줄입니다.


특성 요약:
높은 열전달 효율: 효율성을 높이기 위한 동적 작동.
강력한 적응력: 다양한 프로세스를 처리하고 복잡한 요구 사항을 충족할 수 있습니다.
높은 수준의 자동화: 고급 제어, 비용 절감.
유지관리가 쉽습니다. 구조가 간단하고, 유지관리가 쉽고, 비용 효율적입니다.

가축 및 가금류 사육장의 열 회수: 판형 열교환기 또는 회전형 열교환기

The heat recovery products used in livestock and poultry houses mainly recover the heat energy in the exhaust through the principle of heat exchange and use it to preheat the fresh air entering the house. This not only ensures the minimum ventilation required in winter, but also reduces the heating energy consumption inside the building. This technology usually uses heat recovery ventilation equipment, such as plate heat exchangers or rotary heat exchangers, which can effectively capture the heat in the exhaust while ensuring the quality of the fresh air supply.

The main advantages include:

Reduce energy consumption: By recovering heat, the use of external heating equipment is reduced, significantly lowering energy costs.
Ensure air quality: Although heat recovery is carried out, it will not affect the circulation of air in the house, and the minimum ventilation rate can still be ensured to maintain the air quality in the livestock and poultry house.
Improving comfort: Preheating fresh air helps maintain a suitable temperature inside the house, reduce stress reactions in livestock and poultry, and improve production efficiency.
This technology is particularly important in cold winter regions as it can significantly reduce heating energy consumption while providing a healthy living environment for livestock and poultry.

폐열 회수형 신선 공기 환기 장치, 1차 효율, 중효율, 고효율 공기 필터

Fresh air ventilator with waste heat recovery, primary efficiency, medium efficiency, high-efficiency air filters, customized production by the manufacturer

더블 로터 설정 작동 방식

1. 엔탈피/흡착 로터는 덥고 습한 외부 공기를 제습하고 냉각합니다.

2. 냉각 코일은 요청된 습도 수준에 도달할 때까지 외부 공기의 습기를 더욱 제거합니다.

3. 감지 로터는 외부 공기를 필요한 공급 공기 온도까지 다시 가열합니다.

4. 동시에 배출 공기가 냉각되어 엔탈피/흡착 로터의 효율성이 높아집니다.

double rotor concept

도움이 필요하신가요?
ko_KR한국어