Desalinazation apparatus

4318781
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Inventors

Iida, Tomimaru

Application #

111331

Filed

Jan-11-1980

Published

Mar-9-1982

Current US Class

126/635
126/643
126/907
165/109.1
165/908
202/173
202/177
202/180
202/205
202/234
203/100
203/11
203/49
203/86
203/92
203/DIG1

International Classes

C02F 001/14

Field of Search

203/DIG. 202/173 202/234 202/233 202/235 202/177 202/236 202/175 202/267 202/180 165/109 165/DIG. 126/900 126/435

Examiners

Bascomb, Jr.; Wilbur L.

Attorney, Agent or Firm

Birch, Stewart, Kolasch & Birch

Referenced by:

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Citation

Cite This Patent

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Abstract
A desalinazation apparatus has the bulk of its piping circuitry composed of black iron pipe, or similar pipe, which is normally subject to corrosion by sea water. Heat transfer to a salt water still includes indirect heat transfer by a thermal oil which is contained in the black iron pipe. A solar collector heat source is used to heat the heat transfer oil. The heat transfer rate from the heat transfer oil is maintained by using turbulence inducing fins in the interior of the heat transfer tubes in the salt water still and by directing high pressure gas at the exterior of the heat transfer tubes in the salt water still. A manifold of jets placed beneath the heat transfer tubes in the salt water still projects the high pressure gas, such as high pressure high temperature steam, onto the exterior of the heat exchange tubes.
 
Claims
What is claimed is:

1. A desalinazation apparatus comprising:

at least one oil circulation system including a first heat collector which utilizes solar energy, a first heat exchanger and a circulating pump, all of said elements being connected together by a pipe member to form a closed circuit for circulating oil therethrough,

at least one sea water system including second heat exchanger connected in series by a pipe member on the upstream side of said first heat exchanger and a distillator connected by a pipe member to the downstream side of said first heat exchanger and a pump means for conveying sea water through said second exchangers and into indirect heat exchange relationship with said oil circulation system in said first heat exchanger,



Description
BACKGROUND AND SUMMARY OF THE INVENTION

This invention relates to improvement in a sea to fresh water converting system or a desalinazation apparatus utilizing solar energy.

From energy conserving point of view, various desalinazation apparatus utilizing solar energy have been proposed so far. Most of these desalinazation apparatus are of the type in which sea water is heated to 100.degree. C. or more by solar energy and led to the evaporator of the apparatus. Even before then, a number of desalinazation apparatus using fossil fuel as a heating source, have been known in which sea water is also heated to a very high temperature and led to the evaporator. In these conventional apparatus, such expensive materials as cupronickel, aluminium-alloy, brass and titanium were used to withstand the bad corrosion of the pipes due to the sea water which passes therethrough at a temperature over 100.degree. C. For larger models of the desalinazation apparatus, cost of the pipes accounts for 30-55% of the entire construction fee, therefore the heat transferring pipes take up a large amount of the fee. It is thus desired to use an economical pipe material that is corrosion resistant with less resource problems. As the desalinazation apparatus utilizing solar energy is usually of a large scale, pipes leading the sea water to a solar energy collector and from there the heated sea water to the evaporator, what is called a collector circuit, would be considerably long and this fact would pose a considerable problem.
 
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