The Drinking Bird Mystery....... Ever since a child, the problem that always haunted me and never let me at peace was that how does this toy* - (The Drinking Bird) work? (picture shown below) I…

The Drinking Bird Mystery.......

Ever since a child, the problem that always haunted me and never let me at peace was that how does this toy* - (The Drinking Bird) work? (picture shown below)


It has always been a fascinating play toy for any kid and sometimes even the adults because it leaves us with a question that why does the bird never stop being up and down once started? To some scholars it might appear that- Does it not follow the law of conservation of energy? And that one can make a system that will generate infinite energy based on this toy…..
Well the real story is somewhat different…..
  • There is a coloured liquid in the glass tube which might appear to most of us like coloured water, but it is not. The liquid used is dichloromethane that has some very magnificent chemical properties like dichloromethane has a low boiling point of 39.6 °C (103.28 °F), which gives the heat engine the ability to extract motion from low temperatures. The drinking bird is a heat engine that works at room temperature.
  • Drinking birds, also known as insatiable birdies or dipping birds, are toy heat engines that mimic the motions of a bird drinking from a water source. They are sometimes incorrectly considered examples of a perpetual motion device.
  • A Chinese drinking bird toy dating back to 1910s~1930s named insatiable birdie is described in Yakov Perelman's Physics for Entertainment. The book explained the "insatiable" mechanism: "Since the headtube's temperature becomes lower than that of the tail reservoir, this causes a drop in the pressure of the saturated vapours in the head-tube ..." It was said in Shanghai, China, that when Albert Einstein and his wife, Elsa, arrived in Shanghai in 1922, they were fascinated by the Chinese "insatiable birdie" toy. In addition, the Japanese professor of toys, Takao Sakai, from Tohoku University, also introduced this Chinese toy. The drinking bird was patented in the US by Miles V. Sullivan in 1946. He was a Ph.D. inventor-scientist at Bell Labs in Murray Hill, NJ, USA.

The drinking bird is a heat engine that exploits a temperature difference to convert heat energy to a pressure difference within the device, and perform mechanical work. Like all heat engines, the drinking bird works through a thermodynamic cycle. The initial state of the system is a bird with a wet head oriented vertically.
The process operates as follows:
1.     The water evaporates from the felt on the head.
2.     Evaporation lowers the temperature of the glass head (heat of vaporization).
3.     The temperature decrease causes some of the dichloromethane vapor in the head to condense.
4.     The lower temperature and condensation together cause the pressure to drop in the head (by the ideal gas law).
5.     The higher vapor pressure in the warmer base pushes the liquid up the neck.
6.     As the liquid rises, the bird becomes top heavy and tips over.
7.     When the bird tips over, the bottom end of the neck tube rises above the surface of the liquid.
8.     A bubble of warm vapor rises up the tube through this gap, displacing liquid as it goes.
9.     Liquid flows back to the bottom bulb (the toy is designed so that when it has tipped over the neck's tilt allows this), and pressure equalizes between the top and bottom bulbs
10.                        The weight of the liquid in the bottom bulb restores the bird to its vertical position
11.                        The liquid in the bottom bulb is heated by ambient air, which is at a temperature slightly higher than the temperature of the bird's head.
If a glass of water is placed so that the beak dips into it on its descent, the bird will continue to absorb water and the cycle will continue as long as there is enough water in the glass to keep the head wet. However, the bird will continue to dip even without a source of water, as long as the head is wet, or as long as a temperature differential is maintained between the head and body. This differential can be generated without evaporative cooling in the head; for instance, a heat source directed at the bottom bulb will create a pressure differential between top and bottom that will drive the engine. The ultimate source of energy is the temperature gradient between the toy's head and base; the toy is not a perpetual motion machine.
An analysis showed that the evaporative heat flux driving a small bird was about half a watt, whereas the mechanical power expressed in bird's motion was about120,000 of a watt. The system efficiency is about 0.01%. More practically, about 11,000,000 of a watt can be extracted from the bird, either with a coil-magnet setup or a ratchet used to winch paperclips.
So I hope now most of the curious little ones have their hearts at peace……

 

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