The Working Principles of Vacuum Boiler Heat Exchanger

The Working Principles of Vacuum Boiler Heat Exchanger

18 Jan 2019

The vacuum hot water boiler adopts the technical characteristics of one-time injection of furnace water, and at the same time achieves the purpose of phase change heat transfer. In the process of working, no raw water enters the boiler, which can ensure that there is no scale in the boiler and can also avoid the corrosion of the boiler. The life of the boiler is also relatively long, so many units will install and use the boiler.


The solar boiler heat exchanger is composed of a solar collector system, a pipeline system and a water outlet system. It is a solar water heating system that can generate a large amount of hot water. The specific work flow is the collaboration of collectors and pipelines. Water tanks and other work together to achieve the purpose of the work.


The core component of the boiler heat exchanger is a full heat exchange core. The specific function is to exchange the dirty air discharged from the room and the fresh air is sent into the room through the heat transfer plate to exchange the temperature and exchange the humidity through the micropores in the middle of the mountain. This achieves the effect of ventilation, which improves the indoor air quality and allows the room temperature to reach a constant level. Through the work of the boiler heat exchanger, not only the indoor living environment is improved, but also the humidity in the air is more suitable.


The total heat exchanger is a kind of outdoor fresh air that is filtered, purified, and heat-exchanged and then it can be sent into the room. At the same time, the indoor polluted harmful gas is heat-exchanged and discharged to the outside, and the indoor temperature is basically not affected by the fresh air. An energy-efficient, environmentally-friendly high-tech product. The core component of the total heat exchanger is a full heat exchange core. The dirty air discharged from the room and the fresh air sent in the room exchange temperature through the heat transfer plate, and at the same time exchange humidity through the micro holes on the plate to achieve the ventilation change. The gas maintains the effect of stable indoor temperature and humidity. This is the full heat exchange process. When the total heat exchanger is operated during the summer cooling period, the fresh air obtains the cooling amount from the exhaust air to lower the temperature, and is exhausted by the exhaust air to reduce the fresh air humidity; during the winter operation, the fresh air obtains heat from the exhaust air, so that the fresh air obtains heat from the exhaust air during the winter operation. The temperature rises and the fresh air is humidified by the exhaust one.


The total heat exchanger is a high-efficiency energy-saving air-conditioning ventilation device. Its core function is to use the temperature difference and the humidity difference between the indoor and outdoor air to generate energy exchange through the two-way displacement ventilation through the good energy conversion characteristics of the energy recovery movement. The fresh air can effectively obtain the enthalpy full-heat type CHA or the temperature sensible heat type CHB in the exhaust air, thereby greatly saving the energy consumption of the fresh air pre-treatment and achieving the purpose of energy-saving ventilation, and the energy-saving effect thereof is very remarkable.

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