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Dehumidifiers are required for underground works

author:Hangzhou Jingquan Environmental Protection Technology

The importance of dehumidification in underground works requiring dehumidifiers

Underground engineering refers to the construction of various projects carried out underground, such as subways, basements, underground pipelines, etc. Due to the particularity of the underground environment, the underground project needs dehumidifier dehumidification to control the humidity and ensure the safety and stability of the project. This article will elaborate on the importance of dehumidifier dehumidification in underground engineering from the following six aspects.

1. Prevent dampness in underground engineering structures

Dehumidifiers are required for underground works

Underground engineering is often affected by the groundwater level, if the groundwater level is too high, it will lead to dampness of the underground engineering structure, which will affect the stability and service life of the project. Dehumidifier dehumidification can effectively reduce the humidity of underground engineering, prevent the structure from being damp, and ensure the safety of the project.

The principle of dehumidification of dehumidifier is to reduce the humidity in the air, so that the water condenses from the air into water droplets, so as to achieve the effect of dehumidification. In underground engineering, dehumidifier dehumidification can condense the moisture in the underground air into water droplets, avoid water seepage into the engineering structure, and ensure the stability of the project.

2. Improve the efficiency of underground engineering construction

Underground engineering requires certain environmental conditions, of which humidity is an important factor. If the humidity of the underground project is too high, it will affect the performance of the construction materials, increase the difficulty of construction, and reduce the construction efficiency. Dehumidifier dehumidification can reduce the humidity of underground engineering, provide a suitable construction environment, and improve construction efficiency.

Dehumidifier dehumidification can quickly reduce the humidity of underground engineering, so that the performance of construction materials can be guaranteed. At the same time, dehumidifier dehumidification can also reduce the moisture on the construction site, improve the working comfort of workers, and further improve construction efficiency.

3. Prevent dampness of underground engineering equipment

Underground works often require the installation of various equipment, such as electrical equipment, ventilation equipment, etc. If the humidity of the underground project is too high, it will cause the equipment to be damp and affect the normal operation of the equipment. Dehumidifier dehumidification can reduce the humidity of underground engineering, protect the equipment from moisture, and prolong the service life of the equipment.

Dehumidifier dehumidification can effectively reduce the humidity of underground works and reduce the risk of dampness of equipment. By controlling the humidity of underground works, dehumidifier dehumidification can protect the normal operation of equipment and reduce equipment maintenance and replacement costs.

4. Improve the environmental quality of underground works

The environmental quality of underground engineering is very important for the use of the project and the health of personnel. High humidity in underground works will lead to humid air, which is easy to breed bacteria and mold, which will affect human health. Dehumidifier dehumidification can reduce the humidity of underground engineering, improve the environmental quality of the project, and protect the health of personnel.

Dehumidifier dehumidification can effectively reduce the humidity of underground works and reduce the growth of bacteria and mold in the air. By improving the environmental quality of underground works, dehumidifier dehumidification can provide a healthy and comfortable working and living environment.

5. Reduce the maintenance cost of underground works

Underground works are often costly to maintain, with humidity being an important factor. High humidity in underground engineering can lead to structural corrosion, equipment damage and other problems, increasing maintenance costs. Dehumidifier dehumidification can reduce the humidity of underground works and reduce maintenance costs.

Dehumidifier dehumidification can control the humidity of underground works, reducing the risk of structural corrosion and equipment damage. By reducing maintenance costs, dehumidifier dehumidification can provide economic benefits for the operation and maintenance of underground works.

6. Promote the sustainable development of underground works

Dehumidifiers are required for underground works

The sustainable development of underground engineering needs to consider the issues of environmental protection and resource utilization. Dehumidifier dehumidification can reduce the humidity of underground engineering, reduce energy consumption, and promote the sustainable development of underground engineering.

Dehumidifier dehumidification can reduce energy consumption by reducing the humidity of underground works. By promoting the sustainable development of underground engineering, dehumidifier dehumidification can provide both environmental and economic benefits for the construction and operation of underground engineering.

To sum up, it is of great significance that underground engineering needs dehumidifiers. Dehumidifier dehumidification can prevent dampness in underground engineering structures, improve construction efficiency, protect the health of equipment and personnel, reduce maintenance costs, and promote the sustainable development of underground engineering. In the construction of underground engineering, full attention should be paid to the application of dehumidifier dehumidification to ensure the safety and stability of the project.

Industrial Dehumidifier Selection Table:

HJ-838H Dehumidification capacity: 38Kg/day, applicable area: 30~50 square meters(room height: 2.6-3m)

HJ-858H Dehumidification capacity: 58Kg/day, applicable area: 40~70 square meters (room height: 2.6-3m)

HJ-890H Dehumidification capacity: 90Kg/day, applicable area: 80~110 square meters(room height: 2.6-3m)

HJ-8120H Dehumidification capacity: 120Kg/day, applicable area: 100~120 square meters (room height: 2.6-3m)

HJ-8138H Dehumidification capacity: 138Kg/day, applicable area: 120~150 square meters(room height: 2.6-3m)

HJ-8150H Dehumidification capacity: 150Kg/day, applicable area: 150~180 square meters(room height: 2.6-3m)

HJ-8168H Dehumidification capacity: 7kg/h Applicable area: 200~250 square meters (room height: 2.6-3m)

HJ-8192H Dehumidification capacity: 8.8kg/h, applicable area: 200~300 square meters (room height: 2.6-3m)

HJ-8240H Dehumidification capacity: 10kg/hour, applicable area: 300~400 square meters (room height: 2.6-3m)

HJ-8360H Dehumidification capacity: 15kg/hour, applicable area: 400~500 square meters(room height: 2.6-3m)

HJ-8480H Dehumidification capacity: 20kg/h, applicable area: 500~600 square meters (room height: 2.6-3m)

HJ-8600H Dehumidification capacity: 25kg/h Applicable area: 600~700 square meters (room height: 2.6-3m)

HJ-8720H Dehumidification capacity: 30kg/h Applicable area: 700~800 square meters (room height: 2.6-3m)

Dehumidifiers are required for underground works

The selection of dehumidification capacity and model of dehumidifier is mainly calculated scientifically according to the volume of the use of environmental space, the size of fresh air volume, and the humidity requirements required by the space environment. In addition, it should be noted that the relative humidity of the environment is related to the temperature of the environment, the higher the temperature, the faster the humidity evaporates, and the worse the effect, so when configuring the dehumidifier, you need to select the type under the guidance of professionals, so as to choose the most suitable dehumidifier for you!

除湿量计算公式:W=V*P*(X2-X1)/1000*1.2( kg/h)【W=所需除湿量(kg/h)、 P=空气密度(kg/m3)1.2、V=场所体积、X2=除湿前空气含湿量、X1=除湿后空气含湿量、1.2=安全系数(损耗)】。

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