Manufacturers introduce three sources of energy saving effects of steam traps: Sansheng trap time: 2019-10-06 Clicks:
At present, there are many types of steam traps, but their working principles are based on the differences in the height, temperature, and flow rate of steam and condensed water. The steam traps can be opened and closed through various mechanisms to achieve the purpose of blocking steam drainage. It has three main energy-saving effects.
First, the condensed water generated in the steam using equipment is quickly discharged, so that the heating efficiency of the steam using equipment is maintained at an optimal state, so that the condensed water in the equipment does not form a stagnation, and the steam space in the equipment is ensured to the greatest extent. Maintain the highest heating efficiency. Once the steam trap cannot fully function, not only the performance of the steam equipment is greatly affected due to the retention of condensed water, but sometimes the production equipment is completely paralyzed.
Second, the air and low-temperature condensate in the equipment are quickly exhausted at the start of startup, thereby shortening the warm-up operation time. At the beginning of steaming, the steam delivery piping and the steam-using equipment are filled with air. If they are not removed, steam cannot be fed. In addition, during the temperature rise of the steam transmission pipeline and the steam using equipment to reach the steam temperature, the initial low-temperature condensate produced should also be quickly discharged, so that the equipment can achieve normal operation in a short time, which is an important condition for improving production efficiency. Especially in the case of intermittent production, because the preheating time is shortened, the operating time for each operation is also shortened, and the number of treatments is increased, which can ultimately increase the output. In the past, during the preheating operation, the bypass valve was opened to discharge the initial air and low-temperature condensate. Now, due to the selection of a proper steam trap, both the initial air and the initial low-temperature condensate can be automatically discharged, and manpower can be saved.
Third, reduce the steam consumption of the steam trap itself. The so-called steam consumption of the steam trap itself generally refers to the leakage of steam, which is the sum of the amount of steam required for the operation of the steam trap and the amount of heat loss.
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