Storm glass

A storm glass is a type of weather forecasting device, composed of a sealed glass container, filled with liquid, that allows the user to forecast the weather by observing the appearance of the liquid in the glass.

Contents

Description

The liquid within the glass is a mixture of several ingredients, most commonly distilled water, ethanol, potassium nitrate, ammonium chloride, and camphor. This specific mixture was developed by Admiral Robert FitzRoy and used on his voyage with Charles Darwin on the HMS Beagle.[1]

During the historic voyage, FitzRoy carefully documented how the storm glass would predict the weather:[2]

In 1859, violent storms struck the British Isles. In response, the British Crown distributed storm glasses, then known as "FitzRoy's storm barometers," to many small fishing communities around the British Isles that were to be consulted by ships at port before setting sail.

Proposed mechanisms

A storm glass works on the premise that temperature and pressure affect solubility, sometimes resulting in clear liquid; other times causing precipitants to form. However, the method by which this works is not fully understood. Although it is well-established that temperature affects solubility, some studies have simultaneously observed several different storm glasses forming similar crystal patterns at different temperatures. In addition, sealed glasses are not exposed to atmospheric pressure changes and do not react to the pressure variations associated with weather systems. Some people have proposed that surface interactions between the glass wall of the storm glass and the liquid contents account for the crystals. Explanations sometimes include effects of electricity or quantum tunneling across the glass.[2]

Accuracy

Cecil Adams performed informal experiments with a storm glass and found that the success of prediction was no better than random probability.[3] However, there have been a few published studies in peer-reviewed journals testing the instrument's accuracy; one example is an article in the Journal of Crystal Growth, whose conclusion was that temperature change is the sole cause of crystal growth in storm glasses.[4]

Ingredients

Warm the water and dissolve the potassium nitrate and ammonium chloride; add the ethanol; add the camphor. Place in corked test tube.

See also

References

  1. ^ Storm Glass, Mount Washington Observatory
  2. ^ a b FitzRoy's Storm Glass, About.com
  3. ^ Can storm glasses predict the weather? from The Straight Dope
  4. ^ Tanaka, Yasuko et al. "Pattern formation of crystals in storm glass" Journal of Crystal Growth 310 (2008): 2668–2672.

External links