CN102071470B - Crystal growth furnace and central air-conditioning water returning and temperature control system - Google Patents
Crystal growth furnace and central air-conditioning water returning and temperature control system Download PDFInfo
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- CN102071470B CN102071470B CN 200910234480 CN200910234480A CN102071470B CN 102071470 B CN102071470 B CN 102071470B CN 200910234480 CN200910234480 CN 200910234480 CN 200910234480 A CN200910234480 A CN 200910234480A CN 102071470 B CN102071470 B CN 102071470B
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- 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
- Y02B30/12—Hot water central heating systems using heat pumps
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Abstract
The invention discloses a crystal growth furnace and central air-conditioning water returning and temperature control system. A crystal growth processing cooling water tank is used for accommodating cooling water of a crystal growth furnace for cooling the crystal growth furnace; a water source heat pump unit comprises a cold source side and a heat source side; a cold source water inlet pipe and a cold source water outlet pipe are arranged on the cold source side; a heat source water inlet pipe and a heat source water outlet pipe are arranged on the heat source side; the cold source water inlet pipe and the cold source water outlet pipe on the cold source side are communicated with the crystal growth processing cooling water tank respectively; and the heat source water inlet pipe and the heat source water outlet pipe on the heat source side are communicated with a hot water tank of the central air-conditioning respectively. In the system, the cooling water of the crystal growth furnace is cooled through the water source heat pump unit and hot water in the hot water tank of the central air-conditioning is simultaneously heated by using the heat, namely energy required by cooling the cooling water of the crystal growth furnace and energy required by heating the hot water in the hot water tank of the central air-conditioning can be effectively saved through energy exchange, consumption of electric energy and diesel is reduced, and production cost is reduced.
Description
Technical field
The present invention relates to a kind of temperature control system, brilliant stove of particularly a kind of length and central air-conditioning backwater temperature control system.
Background technology
The cooling of long brilliant stove 6 is through 1 the brilliant stove water coolant of length in the long brilliant processing procedure cooling basin shaft to be cooled off; Get back to through heat sink in the long brilliant processing procedure cooling basin 1 again at the brilliant stove water coolant of length that heats up then, and then the long brilliant stove of circulation cooling, general summer; Because temperature is higher; The brilliant stove cooling water temperature of the length device that heats up generally uses ice maker 11 to cool off, and the brilliant stove cooling water temperature of the length device that heat up owing to temperature is lower winter generally uses cooling tower 12, so just needs to consume a large amount of electric energy and supplies ice maker and cooling tower refrigeration; Have relatively high expectations owing to the production plant humiture simultaneously; Carry out the humiture adjusting so the central air-conditioning hot well tank will constantly advance hot water, and the heating that hot water needs boiler not stop also just needs to consume a large amount of diesel oil.
Summary of the invention
In order to remedy above deficiency, the invention provides brilliant stove of a kind of length and central air-conditioning backwater temperature control system, brilliant stove of this length and central air-conditioning backwater temperature control system are taken into account low-temperature receiver and thermal source cycle operation, effectively reduce the consumption of energy, have reduced production cost.
The present invention for the technical scheme that solves its technical problem and adopt is: brilliant stove of a kind of length and central air-conditioning backwater temperature control system; Comprise long brilliant processing procedure cooling basin, water source heat pump units and central air-conditioning hot well tank; Long brilliant processing procedure cooling basin is used for the brilliant stove water coolant of length of the long brilliant stove cooling usefulness of ccontaining confession; Water source heat pump units comprises low-temperature receiver side and heat source side; Its low-temperature receiver side is provided with low-temperature receiver water inlet pipe and low-temperature receiver rising pipe; Its heat source side is provided with thermal source water inlet pipe and thermal source rising pipe; The low-temperature receiver water inlet pipe of low-temperature receiver side and low-temperature receiver rising pipe are communicated with long brilliant processing procedure cooling basin respectively, and the thermal source water inlet pipe of heat source side and thermal source rising pipe are communicated with the central air-conditioning hot well tank respectively, and the brilliant stove water coolant of length in the long brilliant processing procedure cooling basin is squeezed into the low-temperature receiver water inlet pipe of water source heat pump units low-temperature receiver side; The water resource heat pump machine absorbs the brilliant stove water coolant of length that behind the heat of long brilliant stove water coolant temperature is decreased and is entered in the long brilliant processing procedure cooling basin by the low-temperature receiver rising pipe; The hot water of central air-conditioning hot well tank gets into the water source heat pump units heat source side by the thermal source water inlet pipe of water source heat pump units heat source side, and with this hot water heating, the hot water that then temperature is raise is discharged in the central air-conditioning hot well tank by the thermal source rising pipe again behind the heat of water source heat pump units heat source side absorption low-temperature receiver side; Growing the brilliant stove water coolant of length in the brilliant processing procedure cooling basin like this is sidelong heat back temperature through water resource heat pump machine low-temperature receiver and decreases and just effectively saved the required energy of himself cooling; Make its temperature obtain raising after the heat absorption of hot water in the central air-conditioning hot well tank simultaneously, also effectively saved the required energy of himself heating, so just exchange and effectively practiced thrift long brilliant stove cooling and the required energy of central air-conditioning hot tub heating through energy through water resource heat pump machine heat source side; Practice thrift the energy, reduced production cost.
As further improvement of the present invention; Also be provided with pure water system; The pure water water inlet pipe of pure water system is communicated with the hot well tank of central air-conditioning; The pure water rising pipe of pure water system is communicated with the thermal source water inlet pipe of water source heat pump units heat source side, and the hot water in the central air-conditioning hot well tank is heated to pure water system, has further saved to the required energy of pure water system heating.
As further improvement of the present invention; The low-temperature receiver side of water source heat pump units is provided with at least one and mixes warm system; The mixed temperature water inlet pipe that should mix warm system is communicated with the low-temperature receiver water inlet pipe and the low-temperature receiver rising pipe of water source heat pump units low-temperature receiver side respectively; The mixed temperature rising pipe that mixes warm system is communicated with the low-temperature receiver water inlet pipe of water source heat pump units low-temperature receiver side; This water a road mixes warm water inlet pipe and gets into the warm system of mixing along what mixes warm system behind the water in the brilliant processing procedure of the length cooling basin that drinks up of the low-temperature receiver water inlet pipe of the low-temperature receiver side of water source heat pump units like this; Mixed warm water inlet pipe also gets into the warm system of mixing and the water of the low-temperature receiver rising pipe of the low-temperature receiver side of water source heat pump units is along another road of mixing warm system; Two path water mixes the low-temperature receiver side that the mixed temperature rising pipe that mixes warm system in the edge, back gets into the low-temperature receiver water inlet pipe again and then gets into water source heat pump units in mixing warm system, the water temperature of mixing water just is lower than the water temperature in the long brilliant processing procedure cooling basin like this, makes the water temperature requirements of its low-temperature receiver side that meets water source heat pump units water inlet; Effectively prevent the too high mxm. that exceeds the low-temperature receiver side water inlet water temperature of water source heat pump units of water temperature in the long brilliant processing procedure cooling basin, the assurance water source heat pump units is normally moved.
As further improvement of the present invention; The low-temperature receiver rising pipe of water source heat pump units low-temperature receiver side section between mixed warm system and long brilliant processing procedure cooling basin is the meander-like bend pipe; Like this; Just increase the resistance of the low-temperature receiver rising pipe backwater of water source heat pump units low-temperature receiver side, prevented that water in this low-temperature receiver rising pipe from mixing the direct backwater of warm system and in long brilliant processing procedure cooling basin, not causing mixed warm system ineffective because of self gravitation does not get into, so just guaranteed the validity of mixed temperature system.
Useful technique effect of the present invention is: the present invention absorbs the heat of the brilliant stove water coolant of length in the long brilliant processing procedure cooling basin through water source heat pump units; Utilize this part heat to heat for the hot water in the central air-conditioning hot well tank in the time of with long brilliant stove cooling water temperature; Its temperature is raise; Exchange the brilliant stove water coolant of length just effectively saved in the long brilliant processing procedure cooling basin because of cooling off in required energy and the central air-conditioning hot well tank hot water through energy like this because of heating required energy; Practice thrift the consumption of electric energy and diesel oil, reduced production cost.
Description of drawings
Fig. 1 is a schematic diagram of the present invention.
Embodiment
Embodiment: brilliant stove of a kind of length and central air-conditioning backwater temperature control system; Comprise long brilliant processing procedure cooling basin 1, water source heat pump units 2 and central air-conditioning hot well tank 3; Long brilliant processing procedure cooling basin 1 is used for the brilliant stove water coolant of length of the long brilliant stove cooling usefulness of ccontaining confession; Water source heat pump units 2 comprises low-temperature receiver side 21 and heat source side 22; Its low-temperature receiver side 21 is provided with low-temperature receiver water inlet pipe 211 and low-temperature receiver rising pipe 212; Its heat source side 22 is provided with thermal source water inlet pipe 221 and thermal source rising pipe 222; The low-temperature receiver water inlet pipe 211 of low-temperature receiver side 21 is communicated with long brilliant processing procedure cooling basin 1 respectively with low-temperature receiver rising pipe 212, and the thermal source water inlet pipe 221 and the thermal source rising pipe 222 of heat source side 22 are communicated with central air-conditioning hot well tank 3 respectively, and the brilliant stove water coolant of length in the long brilliant processing procedure cooling basin 1 is squeezed into the low-temperature receiver water inlet pipe 211 of water source heat pump units 2 low-temperature receiver sides 21; The water resource heat pump machine absorbs the brilliant stove water coolant of length that behind the heat of long brilliant stove water coolant temperature is decreased and is entered in the long brilliant processing procedure cooling basin 1 by low-temperature receiver rising pipe 212; The hot water of central air-conditioning hot well tank 3 gets into water source heat pump units 2 heat source side 22 by the thermal source water inlet pipe 221 of water source heat pump units 2 heat source side 22, and with this hot water heating, the hot water that then temperature is raise is discharged in the central air-conditioning hot well tank 3 by thermal source rising pipe 222 again behind the heat of water source heat pump units 2 heat source side 22 absorption low-temperature receiver sides 21; Grow so the brilliant stove water coolant of length in the brilliant processing procedure cooling basin 1 through 21 heat releases of water resource heat pump machine low-temperature receiver side after temperature decrease and just effectively saved the required energy of himself cooling; Make its temperature obtain raising after the heat absorption of hot water in the central air-conditioning hot well tank 3 through water resource heat pump machine heat source side 22 simultaneously, also effectively saved the required energy of himself heating, so just exchange and effectively practiced thrift long brilliant stove cooling and the required energy of central air-conditioning hot tub heating through energy; Practice thrift the energy, reduced production cost.
Also be provided with pure water system 4; The pure water water inlet pipe 41 of pure water system 4 is communicated with the hot well tank of central air-conditioning; The pure water rising pipe 42 of pure water system 4 is communicated with the thermal source water inlet pipe 221 of water source heat pump units 2 heat source side 22; So just make the hot water in the central air-conditioning hot well tank give pure water system 4 heating again, further saved and given pure water system 4 heating required energy.
The low-temperature receiver side 21 of said water source heat pump units 2 is provided with at least one and mixes warm system 5; The mixed temperature water inlet pipe that should mix warm system 5 is communicated with the low-temperature receiver water inlet pipe 211 and the low-temperature receiver rising pipe 212 of water source heat pump units 2 low-temperature receiver sides 21 respectively; The mixed temperature rising pipe that mixes warm system 5 is communicated with the low-temperature receiver water inlet pipe 211 of water source heat pump units 2 low-temperature receiver sides 21; This water a road mixes warm water inlet pipe and gets into the warm system 5 of mixing along what mixes warm system 5 behind the water in the brilliant processing procedure of the length cooling basin 1 that drinks up of the low-temperature receiver water inlet pipe 211 of the low-temperature receiver side 21 of water source heat pump units 2 like this; Mixed warm water inlet pipe also gets into the warm system 5 of mixing and the water of the low-temperature receiver rising pipe 212 of the low-temperature receiver side 21 of water source heat pump units 2 is along another road of mixing warm system 5; Two path water mixes the low-temperature receiver side that the mixed temperature rising pipe that mixes warm system in the edge, back gets into low-temperature receiver water inlet pipe 211 again and then gets into water source heat pump units 2 in mixing warm system 5; The water temperature of mixing water just is lower than the water temperature in the long brilliant processing procedure cooling basin 1 like this; Make the water temperature requirements of its low-temperature receiver side that meets water source heat pump units 2 water inlet; Effectively prevent the too high mxm. that exceeds the low-temperature receiver side 21 water inlet water temperatures of water source heat pump units 2 of water temperature in the long brilliant processing procedure cooling basin 1, assurance water source heat pump units 2 is normally moved.
The low-temperature receiver rising pipe 212 of said water source heat pump units 2 low-temperature receiver sides 21 section between mixed warm system 5 and long brilliant processing procedure cooling basin 1 is the meander-like bend pipe; Like this; Just increased the resistance of low-temperature receiver rising pipe 212 backwater of water source heat pump units 2 low-temperature receiver sides 21; Prevent water in this low-temperature receiver rising pipe 212 mix because of self gravitation does not get into warm system 5 direct backwater to long brilliant processing procedure cooling basin the 1 interior mixed warm system 5 that causes ineffective, so just guaranteed the validity of mixed temperature system 5.
Claims (4)
1. one kind long brilliant stove and central air-conditioning backwater temperature control system; It is characterized in that: comprise long brilliant processing procedure cooling basin (1), water source heat pump units (2) and central air-conditioning hot well tank (3); Long brilliant processing procedure cooling basin (1) is used for the brilliant stove water coolant of length of the long brilliant stove cooling usefulness of ccontaining confession; Water source heat pump units (2) comprises low-temperature receiver side (21) and heat source side (22); Its low-temperature receiver side (21) is provided with low-temperature receiver water inlet pipe (211) and low-temperature receiver rising pipe (212); Its heat source side (22) is provided with thermal source water inlet pipe (221) and thermal source rising pipe (222); The low-temperature receiver water inlet pipe (211) of low-temperature receiver side (21) and low-temperature receiver rising pipe (212) are communicated with long brilliant processing procedure cooling basin (1) respectively, and the thermal source water inlet pipe (221) of heat source side (22) and thermal source rising pipe (222) are communicated with central air-conditioning hot well tank (3) respectively, and the brilliant stove water coolant of length in the long brilliant processing procedure cooling basin is squeezed into the low-temperature receiver water inlet pipe of water source heat pump units low-temperature receiver side; The water resource heat pump machine absorbs the brilliant stove water coolant of length that behind the heat of long brilliant stove water coolant temperature is decreased and is entered in the long brilliant processing procedure cooling basin by the low-temperature receiver rising pipe; The hot water of central air-conditioning hot well tank gets into the water source heat pump units heat source side by the thermal source water inlet pipe of water source heat pump units heat source side, and with this hot water heating, the hot water that then temperature is raise is discharged in the central air-conditioning hot well tank by the thermal source rising pipe again behind the heat of water source heat pump units heat source side absorption low-temperature receiver side.
2. brilliant stove of a kind of length as claimed in claim 1 and central air-conditioning backwater temperature control system; It is characterized in that: also be provided with pure water system (4); The pure water water inlet pipe (41) of pure water system (4) is communicated with the hot well tank of central air-conditioning, and the pure water rising pipe (42) of pure water system (4) is communicated with the thermal source water inlet pipe (221) of water source heat pump units (2) heat source side (22).
3. brilliant stove of a kind of length as claimed in claim 1 and central air-conditioning backwater temperature control system; It is characterized in that: the low-temperature receiver side (21) of water source heat pump units (2) is provided with at least one and mixes warm system (5); The mixed temperature water inlet pipe that should mix warm system (5) is communicated with the low-temperature receiver water inlet pipe (211) and the low-temperature receiver rising pipe (212) of water source heat pump units (2) low-temperature receiver side (21) respectively, and the mixed temperature rising pipe that mixes warm system (5) is communicated with the low-temperature receiver water inlet pipe (211) of water source heat pump units (2) low-temperature receiver side (21).
4. brilliant stove of a kind of length as claimed in claim 3 and central air-conditioning backwater temperature control system is characterized in that: the low-temperature receiver rising pipe (212) of water source heat pump units (2) low-temperature receiver side (21) is positioned at and mixes that section is the meander-like bend pipe between warm system (5) and the long brilliant processing procedure cooling basin (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 200910234480 CN102071470B (en) | 2009-11-20 | 2009-11-20 | Crystal growth furnace and central air-conditioning water returning and temperature control system |
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CN 200910234480 CN102071470B (en) | 2009-11-20 | 2009-11-20 | Crystal growth furnace and central air-conditioning water returning and temperature control system |
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CN102071470A CN102071470A (en) | 2011-05-25 |
CN102071470B true CN102071470B (en) | 2012-08-22 |
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CN 200910234480 Active CN102071470B (en) | 2009-11-20 | 2009-11-20 | Crystal growth furnace and central air-conditioning water returning and temperature control system |
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Families Citing this family (2)
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CN105603513A (en) * | 2016-03-28 | 2016-05-25 | 深圳市晶格材料科技有限公司 | Small-size micro-fluctuation cooling water system for sapphire crystal growth laboratory |
CN116732616A (en) * | 2023-06-16 | 2023-09-12 | 通威微电子有限公司 | Circulating water cooling system of silicon carbide crystal growth furnace and control method thereof |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN201043829Y (en) * | 2007-06-01 | 2008-04-02 | 山东泰山能源有限责任公司协庄煤矿 | Mine water source heat pump air conditioning device |
CN101509147A (en) * | 2008-02-15 | 2009-08-19 | 绿能科技股份有限公司 | Crystal growth furnace body cooling structure |
CN101519801A (en) * | 2008-02-26 | 2009-09-02 | 绿能科技股份有限公司 | Long crystal furnace construction configuration |
CN201603417U (en) * | 2009-11-20 | 2010-10-13 | 昆山中辰矽晶有限公司 | Crystal growth furnace and central air-conditioning backwater temperature control system |
-
2009
- 2009-11-20 CN CN 200910234480 patent/CN102071470B/en active Active
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN201043829Y (en) * | 2007-06-01 | 2008-04-02 | 山东泰山能源有限责任公司协庄煤矿 | Mine water source heat pump air conditioning device |
CN101509147A (en) * | 2008-02-15 | 2009-08-19 | 绿能科技股份有限公司 | Crystal growth furnace body cooling structure |
CN101519801A (en) * | 2008-02-26 | 2009-09-02 | 绿能科技股份有限公司 | Long crystal furnace construction configuration |
CN201603417U (en) * | 2009-11-20 | 2010-10-13 | 昆山中辰矽晶有限公司 | Crystal growth furnace and central air-conditioning backwater temperature control system |
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