US468919A - Meteb - Google Patents

Meteb Download PDF

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Publication number
US468919A
US468919A US468919DA US468919A US 468919 A US468919 A US 468919A US 468919D A US468919D A US 468919DA US 468919 A US468919 A US 468919A
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Prior art keywords
air
series
cooling
liquid
metal strips
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    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01D—SEPARATION
    • B01D3/00—Distillation or related exchange processes in which liquids are contacted with gaseous media, e.g. stripping
    • B01D3/14—Fractional distillation or use of a fractionation or rectification column
    • B01D3/16—Fractionating columns in which vapour bubbles through liquid
    • B01D3/18—Fractionating columns in which vapour bubbles through liquid with horizontal bubble plates
    • B01D3/20—Bubble caps; Risers for vapour; Discharge pipes for liquid
    • Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10S—TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S261/00—Gas and liquid contact apparatus
    • Y10S261/11—Cooling towers

Definitions

  • Figure 1 represents a side elevation partially in transverse vertical section
  • Fig. 2 a front elevation of the said apparatus.
  • I convey the liquid to be cooled into the distributing-pipe O in the top of the apparatus by means of the tube 0.
  • the liquid is distributed over the corrugated strips of sheet metal a, arranged in terraced or stepped series one above the other, each series being preferably inclined in a direction opposite to the one immediately preceding, as shown.
  • a slotted opening or openings are left between each two adjoining plates at to permit the passage of air.
  • the liquid flows from the uppermost series, of sheet-metal strips to the next lower one, &c., until it has passed allthe series, and is collected in a receiver or tank D at the bottom of the apparatus and carried off.
  • the air-duct B may communicate by a series of drums or throats B with the exhaustu I action 18, moreover, assisted by the cooling action of the air passing beneath the thin metal strips a, and hence acting upon the superincumbent layers of liquid.
  • the air moreover, passes over and cools the liquid upon the upper faces of the metal strips.
  • the cooling action is so great that at a temperature of about 18 centigrade (in the shade) liquid may be cooled from 100 centigrade to 25 or 30 centi grade and from 25 to 11 centigrade.
  • My arrangement is particularly advantageous when it is desired to mix the air with the liquid to be coolede. g., in cooling beer after the same has left the vat to be cooled and prepared for fermentation.
  • the aircooling process taking place in my apparatus the temperature of the beer is quickly reduced from about or100 centigrade to below 30", thereby averting the dangerous formation of lactic acid.
  • the fermentation of the beer can be immediately induced thereafter.
  • the beer is, moreover, charged with air and made more palatable.
  • the apparatus may be adapted to any desired quantity of liquid to be cooled by making the same of suitable size or by arranging larger or smaller numbers of superincumbent series of terraced metal strips or plates. It is, however, advisable to limit the number of these series to five, because the dry air is a better cooling medium and its cooling action decreases considerably as soon as the same becomes charged with a notable amount of moisture.
  • My apparatus is also well adapted to cool the water of condensation in steam-engines and for other industrial purposes.
  • My apparatus excels the cooling devices heretofore employed in cheapness and simplicity. It may be easily cleaned and never becomes clogged. This drawback occurs after a few days only after starting the apparatus, especially Where superimposed foraminated floors or screens are used, by virtue of the formation of hard deposits at the passages or perforations. The costs of cleaning these foralninated floors in this case almost exceed the advantage gained in cooling. Manifestly, instead of exhausting the air the same may also be forced or blown into the apparatus; but in this case the temperature of the cooling air-current is always raised somewhat. The exhausting action will hence, in general, be more advantageous.
  • a series of plates arranged in terraces and provided with airpassages passing through the series and means for forcing a current of air through said air-passages, in combination therewith, substantially as set forth.
  • a number of series of plates arranged in terraces the series being arranged one below the other and airply and means for producing an air-current in the cooling apparatus, substantially as set forth.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Description

(No Model.)
B. RETTENMEYER. APPARATUS FOR 000mm FLUIDS.
bu EN Patented Feb.-16,1892.
WW2 gray.
' UNITED STATES PATENT OFFICE.
BERNHARD RETTENMEYER, OF STUTTGART, GERMANY.
APPARATUS FOR COOLING FLUIDS.
SPECIFICATION forming part of Letters Patent No. 468,919, dated February 16, 1892.
Application filed August 19,1891. Serial No. 403,143. (No model.)
for cooling liquids by means of an air-current caused by suction or blowing to pass through the apparatus ina direction opposite to that of the motion of the liquid, whereby the air is compelled to repeatedly pass the thin stream of liquid in order to come into contact with the same as often as possible.
In the accompanying drawings I have shown an apparatus which in my present opinionconstitutes the best embodiment of my invention.
In the drawings, Figure 1 representsa side elevation partially in transverse vertical section, and Fig. 2 a front elevation of the said apparatus.
I convey the liquid to be cooled into the distributing-pipe O in the top of the apparatus by means of the tube 0. From the distributing-pipe C the liquid is distributed over the corrugated strips of sheet metal a, arranged in terraced or stepped series one above the other, each series being preferably inclined in a direction opposite to the one immediately preceding, as shown. A slotted opening or openings are left between each two adjoining plates at to permit the passage of air. The liquid flows from the uppermost series, of sheet-metal strips to the next lower one, &c., until it has passed allthe series, and is collected in a receiver or tank D at the bottom of the apparatus and carried off.
The air drawn into the apparatus from the bottom of the same by means of an exhaustpump E passes between the liquid in the receiver D and the lowermost terraced series in the direction of the arrows, andthence through the sheets or cascades of falling liquid between the metal strips a and escapes above the uppermost terraced series by means of the air-duct B and exhaust-pump E.
The air-duct B may communicate by a series of drums or throats B with the exhaustu I action 18, moreover, assisted by the cooling action of the air passing beneath the thin metal strips a, and hence acting upon the superincumbent layers of liquid. The air, moreover, passes over and cools the liquid upon the upper faces of the metal strips. The cooling action is so great that at a temperature of about 18 centigrade (in the shade) liquid may be cooled from 100 centigrade to 25 or 30 centi grade and from 25 to 11 centigrade.
My arrangement is particularly advantageous when it is desired to mix the air with the liquid to be coolede. g., in cooling beer after the same has left the vat to be cooled and prepared for fermentation. By the aircooling process taking place in my apparatus the temperature of the beer is quickly reduced from about or100 centigrade to below 30", thereby averting the dangerous formation of lactic acid. The fermentation of the beer can be immediately induced thereafter. The beer is, moreover, charged with air and made more palatable.
It is manifest that the apparatus may be adapted to any desired quantity of liquid to be cooled by making the same of suitable size or by arranging larger or smaller numbers of superincumbent series of terraced metal strips or plates. It is, however, advisable to limit the number of these series to five, because the dry air is a better cooling medium and its cooling action decreases considerably as soon as the same becomes charged with a notable amount of moisture.
My apparatus is also well adapted to cool the water of condensation in steam-engines and for other industrial purposes.
My apparatus excels the cooling devices heretofore employed in cheapness and simplicity. It may be easily cleaned and never becomes clogged. This drawback occurs after a few days only after starting the apparatus, especially Where superimposed foraminated floors or screens are used, by virtue of the formation of hard deposits at the passages or perforations. The costs of cleaning these foralninated floors in this case almost exceed the advantage gained in cooling. Manifestly, instead of exhausting the air the same may also be forced or blown into the apparatus; but in this case the temperature of the cooling air-current is always raised somewhat. The exhausting action will hence, in general, be more advantageous.
WVhat I claim, and desire to secure by Letters Patent, is
1. In a cooling apparatus, a series of plates arranged in terraces and provided with airpassages passing through the series and means for forcing a current of air through said air-passages, in combination therewith, substantially as set forth.
2. In a cooling apparatus, a series of plates arranged in terraces and provided with airpassages between each two adjoining plates, in combination with means for forcing an aircurrent through said air-passages, substantially as set forth. v
In a cooling apparatus, a number of series of plates arranged in terraces, the series being arranged one below the other and airply and means for producing an air-current in the cooling apparatus, substantially as set forth.
In testimony whereof I have signed this specification in the presence of two subscribing witnesses.
BERNHARD RETTENMEYER.
itnesses:
AUGUST B. DRAUTZ, CARL DUss AUNn
US468919D Meteb Expired - Lifetime US468919A (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2681219A (en) * 1952-09-05 1954-06-15 Koch Eng Co Inc Gas-liquid contact apparatus
US2752139A (en) * 1952-10-01 1956-06-26 Koch Eng Co Inc Gas-liquid contact apparatus
US2757915A (en) * 1951-08-23 1956-08-07 Koch Eng Co Inc Gas-liquid contact apparatus
US2846204A (en) * 1956-03-27 1958-08-05 Forrest E Gilmore Gas and liquid contact device
US5019300A (en) * 1990-07-25 1991-05-28 Carolina Power & Light Company Direct contact water-to-air heat exchanger and method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2757915A (en) * 1951-08-23 1956-08-07 Koch Eng Co Inc Gas-liquid contact apparatus
US2681219A (en) * 1952-09-05 1954-06-15 Koch Eng Co Inc Gas-liquid contact apparatus
US2752139A (en) * 1952-10-01 1956-06-26 Koch Eng Co Inc Gas-liquid contact apparatus
US2846204A (en) * 1956-03-27 1958-08-05 Forrest E Gilmore Gas and liquid contact device
US5019300A (en) * 1990-07-25 1991-05-28 Carolina Power & Light Company Direct contact water-to-air heat exchanger and method

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