The experience of a comfortable shower is strongly tied to the quantity of water used. High water consumption however does not ensure an efficient shower. There is, however, a clear connection between output and comfort. An important criteria for the Pulse Shower therefore, was to be able to harness the natural properties and physics of water.
There are many examples showing that research and technical innovation have actually gathered ideas from nature. Similarly, Pulse Shower studied the rain.
At Multishower we noticed that in a real cloud-burst, the water come as large, juicy drops at very high speeds. This was what PulseShower wanted to emulate for it's new concept in shower heads. As in a cloud-burst the showerhead wanted to have a water structure with high kinetic energy: K = ½ Mv2, that is, large drops at high speed. And as opposed to other conventional showers, PulseShower did not want the water to hang together.
The experience of a comfortable shower is strongly tied to the quantity of water used. High water consumption however does not ensure an efficient shower. There is, however, a clear connection between output and comfort. An important criteria for the Pulse Shower therefore, was to be able to harness the natural properties and physics of water.
There are many examples showing that research and technical innovation have actually gathered ideas from nature. Similarly, Pulse Shower studied the rain.
At Multishower we noticed that in a real cloud-burst, the water come as large, juicy drops at very high speeds. This was what PulseShower wanted to emulate for it's new concept in shower heads. As in a cloud-burst the showerhead wanted to have a water structure with high kinetic energy: K = ½ Mv2, that is, large drops at high speed. And as opposed to other conventional showers, PulseShower did not want the water to hang together.