![]() classified the ejector as being either “constant-area mixing” or “constant-pressure mixing.” Because it is widely assumed that the constant-pressure mixing ejector has greater stability and a wider range of backpressures, it has been the subject of many subsequent studies. ![]() According to the position of the nozzle exit, Keenan et al. The construction and performance of ejectors have been thoroughly studied. Accurate ejector performance analysis and prediction can significantly improve the system performance and stability, increase the steam cycle rate of a distilled water preparation system, and significantly reduce enterprise water production costs. ![]() The water production efficiency of the distilled water preparation system for medical injection is associated with the performance of the ejector and operating stability. The supersonic ejector is the key component for accomplishing energy cascade utilization and lowering energy consumption in distilled water preparation systems. It has been widely employed in seawater desalination, refrigeration, pharmaceutical systems, and other areas, owing to its simple structure, low cost, and excellent stability. A supersonic ejector is an energy conversion device that uses a high-pressure dynamic gas to eject low-pressure gas. ![]()
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