The operating principle of a pressure-boosting showerhead involves reducing the size of the outlet nozzles to intensify the water flow.
Pressure-boosting technology is employed to regulate the water intake and discharge volumes within specific limits.
As water enters the showerhead, external pressure forces it out at an increased velocity, thereby creating a boosting effect. The continuous flow of water causes collisions between oxygen ions and air. When oxygen ions occupy the internal space of the showerhead, the water output is reduced by half, which also serves to conserve water resources.
Upon ejection from the showerhead, the oxygen ions in the water burst upon contact with the skin; this expands the effective coverage area of the spray and allows the water to massage the body, effectively promoting blood circulation and enhancing physical well-being.
The water undergoes pressurization before reaching the mixing valve, ensuring maximum stability in temperature, pressure, and flow rate, and preventing sudden fluctuations between hot and cold. These showerheads feature intelligent flow limitation, automatically adjusting the intake area based on water pressure-opening wider when pressure is low to balance the flow-thereby achieving both pressure boosting and water conservation. As water enters the showerhead base, it is directed into a three-vane accelerator that creates a swirling motion, increasing both speed and impact force. It then passes into a flow-limiting channel where it mixes with air, increasing the oxygen content tenfold. This approach achieves water and energy savings while delivering a satisfying showering experience. An internal mechanism forces air into the showerhead, utilizing air pressure to intensify the water flow without increasing the total volume of water used.
