CN103393353A - Technology for producing cooled boiled water by alternatively using cold energy and heat energy - Google Patents
Technology for producing cooled boiled water by alternatively using cold energy and heat energy Download PDFInfo
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- CN103393353A CN103393353A CN2013103367249A CN201310336724A CN103393353A CN 103393353 A CN103393353 A CN 103393353A CN 2013103367249 A CN2013103367249 A CN 2013103367249A CN 201310336724 A CN201310336724 A CN 201310336724A CN 103393353 A CN103393353 A CN 103393353A
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Abstract
The invention discloses a technology for producing cooled boiled water, wherein the technology is a method for scientifically producing cooled boiled water in an energy-saving mode and is a method for producing potable water which can be widely used in families and potable water producing manufacturers. Most importantly, the technology of alternatively using cold energy and heat energy is adopted, and the inlet water flow of a water heater and the outlet water flow of the water heater are combined together through a water barrel or a pipeline so that the temperature of the inlet water (cold water) and the temperature of the outlet water (hot water) can be exchanged through the wall of the water barrel or the wall of the pipeline even though the inlet water and the outlet water are not compatible due to different water qualities. The experiment shows that the technology for producing the cooled boiled water can save about 90% of energy compared with a traditional technology for producing the cooled boiled water. As the technology for producing similar products, in the time when potable water producing enterprises use chemical sanitizers for disinfection, the technology for producing the cooled boiled water directly solves the problem that conventionally, cost is high when the cool water is produced and indirectly solves the problems of safety and health of the potable water drunk by people are indirectly solved at the same time.
Description
Technical field
The cold boiling water production technology of cold and hot mutual use of the present invention relates to is a kind of science, energy-conservation cold boiling water production technology.This production technology is to have adopted unprecedentedly hot and coldly can use mutually technology in existing cold boiling water manufacture technology field.This is that a kind of family and drinking water manufacturer of can being widely used in comes as the production technology of making drinking water (cold boiling water) with very energy-conservation effect.
Background technology
The cold boiling water production technology of cold and hot mutual use of the present invention and traditional production technology have difference in essence, up to the present also there is no a kind of technology with cold and hot mutual use on market be used to making cold boiling water.Cold boiling water is a kind of of drinking water, is a kind of cooling health water kind of having passed through after the high temperature sterilization sterilization again.But up to the present also do not have drinking water factory to return home to produce this product of cold boiling water to carry out a kind of as in drinking water, what they produced is similar replacement product, as the bottle (bucket) that has passed through sterilizing fills spacious spring (mountain spring water), and this all can drink as cold boiling water.see with healthy angle but stand in health, on market, all cold boiling water replace products all not have cold boiling water so good now,, because cold boiling water is through high temperature (boiling point of water) disinfection, can be described as and have reached 99.99% aseptic! all to throw in disinfectant in water and other conventional drinking water disinfection process for sterilizing adopts, add ozone gas, with means such as ultraviolet rays, the drinking water of being produced with this disinfection technique not only can not reach the bactericidal effect as cold boiling water, but also the part chemical residual is arranged likely, these residues are also likely harmful, the manufacturer of drinking water does not recognize this point now, but think that in subconsciousness making cold boiling water is to consume a lot of energy, and make production cost too high, do not produce that cold boiling water cost method is put up with and for it in the situation that also know to have greatly to save.
For family, now people to make cold boiling water be all boiled naturally cooling or force cooling (refer to that hot water is placed in cold water bubble or with the cooling means of drying etc.) again through water heater (kettle adds stove or Industrial Boiler or electric furnace, gas burner combination etc.) at normal temperatures water, become cold boiling water after cooling, compare this with the technology of the present invention and wherein lacked the process of a cold and hot mutual use, so that is a kind of very simple traditional manufacturing technique, as everyone knows, make cold boiling water with such method and will consume a lot of energy.Why the present invention adopts the technology of cold and hot mutual use, and that is can produce too the reason of huge thermal energy because of understanding that boiling water turns cold, and understands and utilizes these characteristics just can reach energy-conservation purpose.But up till now for this reason, but also do not have a kind of production technology to recycle these thermal energy.The purpose of the cold boiling water production technology of cold and hot mutual use of the present invention and maximum advantage are exactly energy-conservation, experiment showed, when boiling water is turned cold approximately 90% the energy of cold boiling water manufacture craft saving that cold boiling water manufacture craft (technology of the present invention) that the heat energy that produces recycles can not adopt cold and hot mutual use technology than routine!
So to say that the cold boiling water production technology of cold and hot mutual use of the present invention, the high problem of cost has also solved the safety and Health problem of people's drinking water simultaneously indirectly when directly having improved conventional cold boiling water and produce.
Summary of the invention
Why the cold boiling water production technology of cold and hot mutual use of the present invention can reach so outstanding energy-saving effect, its most important method is the technology that has adopted cold and hot mutual use, namely the feed water flow of water heater and water outlet stream is combined through bucket or pipeline, make it into water quality between water (cold water) and water outlet (hot water) can not be compatible but water temperature can be exchanged.That is to say with water inlet (cold water) and remove cooling water outlet (hot water) and obtain cooled cold boiling water; And with water outlet (hot water), go preheating water inlet (cold water) and use the thermal energy that needs cooling hot water, be to adopt a kind of method of with the technology of this cold and hot mutual use, producing cold boiling water.The heat energy that produces while by hot water, being turned cold, through piping pre-heat effect for water supply of water heater plays, has passed through this warm, and the water source that is equivalent to the supplying hot water device is all the time from high temperature very, rather than normal-temperature water; Opposite reason, due to the boiling water of the heating of having passed through water heater to cooling process of the process need that becomes cold boiling water, and just in time can being preheated process, this process utilizes, the process that has a heat absorption in warm and absorbed heat, be exactly cooling procedure by endothermic process, because endothermic process is exactly warm.Thereby to have passed through by the water that flowed out of heat absorption be cold boiling water, and the water that has passed through preheating be exactly hot water (this warm is not spend the energy), gone to heat the purpose that just can play the saving energy through water heater again by hot water.Its cold and hot principle that can use mutually is equivalent to a hot boiling water of kettle is placed in one barrel of cold water cooling the same, and result makes the hot water in its kettle be cooled to cold boiling water, and the cold water in bucket has become hot water and comes the supplying hot water device to use as the water source of water inlet.
Description of drawings
Fig. 1 is cold boiling water production technological process; A is the water source water; B is the cold and hot mutual device of using; C is water heater; D is filling operation.Arrow in figure is depicted as the direction of current; Dotted line in figure is depicted as the abridged pipeline in device inside institute.
The specific embodiment
The cold boiling water production technology of cold and hot mutual use of the present invention is divided 5 steps: 1, water source water; 2, through the cold and hot mutual device preheating of using; 3, water heater heating 4, cooling through the cold and hot mutual device of using; 5, filling operation.
All there is no specific (special) requirements for water source water, water heater heating, filling operation, as long as the water source water meets the requirement of standard and the water consumption of drinking water; Can adopt electrothermal way, burning hot method etc. for heating process; No matter be for family or drinking water manufacturing enterprise for filling operation, all adapt to the requirement of its any filling operation.And its adopted cold and hot mutual be the most important content of the present invention with technology.This is cold and hot must lay a hot-water line mutually with technology in a bucket or a water pipe, boiling water (water outlet of water heater) can flow through in this pipe, and the surrounding of this hot-water line has cold water to flow through, and comes the water inlet water source as water heater.The pipeline outside that also can be out of the water, the pipeline inside of intaking, but the present invention do not adopt like this and does, and, because water outlet is higher than the temperature of water inlet, outside the high water pipe of temperature is placed in, can waste some more energy.No matter water outlet inner still outside, require the water inlet water source of water heater and boiling water water outlet through this two pipelines the time water quality can not in conjunction with and heat energy can be used mutually, in order to reach the energy purpose of use fully mutually, it is the material of good heat dissipation effect that the material of this middle water pipe requires, because only in this way just can allow the different current of two channel temps reach better heat energy, uses mutually.And the periphery water pipe that can contact with air or the material that barrel should select good heat-insulation effect be as stainless steel not, and at outermost layer, also will add the one layer of heat preservation material.
About this cold and hot can be mutually with device (see in figure shown in B) by me as applying in another patent of invention, patent of invention title " the cold and hot mutual combined pipe of using ".Requiring due to the rights protection of this patent is a kind of production technology of cold boiling water of cold and hot mutual use, therefore for necessary this in its production technology, cold and hotly with device, its operation principle only has been described mutually, and its particulars has not just explained here again.
Claims (1)
1. patent of the present invention is characterized in that: the feed water flow of water heater and water outlet stream combine through bucket or pipeline, make it into water quality between water (cold water) and water outlet (hot water) can be not compatible but water temperature can realize exchanging by pipe (bucket) wall, that is to say with intake (cold water) and remove cooling water outlet (hot water); And with water outlet (hot water), go preheating water inlet (cold water), and adopt and can mutually utilize with this hot and cold energy, be fit to be applied in a kind of energy-conservation class technology in cold boiling water manufacture craft.
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104771072A (en) * | 2015-04-15 | 2015-07-15 | 上海通海机械专用设备有限公司 | Heat exchange type direct water dispenser and high and low temperature drinking water control method thereof |
CN107405024A (en) * | 2015-03-19 | 2017-11-28 | Lg 电子株式会社 | Water dispenser and its control method |
CN109068884A (en) * | 2016-03-09 | 2018-12-21 | 皇家戴维艾格伯茨有限公司 | Component and method for cream blistering |
Citations (3)
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CN2579302Y (en) * | 2002-11-06 | 2003-10-15 | 巫宗权 | Energy saving multipurpose drinking machine |
CN201101427Y (en) * | 2007-10-22 | 2008-08-20 | 卢伟明 | Intelligent energy-saving drinking water machine |
CN201641641U (en) * | 2010-03-17 | 2010-11-24 | 沂源县华阳能源设备有限公司 | Regenerative water-drinking device |
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2013
- 2013-07-31 CN CN2013103367249A patent/CN103393353A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2579302Y (en) * | 2002-11-06 | 2003-10-15 | 巫宗权 | Energy saving multipurpose drinking machine |
CN201101427Y (en) * | 2007-10-22 | 2008-08-20 | 卢伟明 | Intelligent energy-saving drinking water machine |
CN201641641U (en) * | 2010-03-17 | 2010-11-24 | 沂源县华阳能源设备有限公司 | Regenerative water-drinking device |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107405024A (en) * | 2015-03-19 | 2017-11-28 | Lg 电子株式会社 | Water dispenser and its control method |
CN104771072A (en) * | 2015-04-15 | 2015-07-15 | 上海通海机械专用设备有限公司 | Heat exchange type direct water dispenser and high and low temperature drinking water control method thereof |
CN109068884A (en) * | 2016-03-09 | 2018-12-21 | 皇家戴维艾格伯茨有限公司 | Component and method for cream blistering |
CN109068884B (en) * | 2016-03-09 | 2021-12-03 | 皇家戴维艾格伯茨有限公司 | Assembly and method for milk frothing |
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Application publication date: 20131120 |