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I have tried various optimizations for the sealed water circulation system, but there are always issues with its performance. I would appreciate any advice from experts or those with experience in this area! ! ! How to design a system that meets two overall requirements: 1) reducing the amount of water needed to replenish the sealing water, and 2) being able to provide sufficient pressure and flow to the system.
Without considering investment and operating costs, the design of the air-cooled island in thermal power plants can be used as a reference
Are there any specific materials available on this air-cooled island design you mentioned? Or please give an introduction.
I have only seen that most thermal power plants these days use air-cooling islands instead of the cooling towers that were commonly used in the past. You can look up information on air-cooling islands on Baidu or consult those working in the thermal power industry; as for the chemical industry, I have not seen air-cooling islands being used in place of cooling towers there
Air-cooling island, academic term*, I’m also looking for this
1. Reducing the amount of make-up water can increase the water concentration ratio. 2. To provide sufficient pressure and flow rate, it is necessary to focus on the pipe diameter and the pumps. .
I work in the field of circulating water. In the United States, there is a hydrocavitation technology that uses evaporative cooling coils to prevent scaling and eliminate bacteria, thereby improving heat exchange efficiency. I’m not very familiar with the design you’re talking about