Eleman reyalizasyon teknik nan milti-enèji konplemantè estasyon rezèv enèji santralize makonnen ak ponp chalè sous dlo ak chodyè gaz
Dec 25, 2021
Kite yon mesaj
Eleman reyalizasyon teknik:
3. Nan sans de pwoblèm ki anwo yo, objektif prensipal modèl sèvis piblik sa a se bay yon ponp chalè sous dlo ak kouti chofaj gaz ki entegre yon varyete de fòm enèji renouvlab, ak divès sous enèji yo mityèlman konvèti nan ekipman pou reyalize milti { {1}}konplemantasyon enèji ak itilizasyon efikas. Estasyon elektrik santralize konplemantè milti-enèji.
4. Modèl sèvis piblik sa a rezoud pwoblèm teknik ki endike anwo yo atravè solisyon teknik sa yo: yon estasyon ekipman elektrik santralize konplemantè milti-ki makonnen ak yon ponp chalè sous dlo ak yon chodyè gaz, ak milti-enèji. konplemantè santralize ekipman pou pouvwa makonnen ak yon ponp chalè sous dlo ak yon chodyè gaz Estasyon an gen ladan: sistèm ekipman pou pouvwa, dezyèm lan se sistèm refwadisman, ak twazyèm lan se sistèm chofaj la.
5. Sistèm ekipman pou pouvwa: Sistèm ekipman pou pouvwa a se yon sistèm ki founi pouvwa a chak aparèy nan tout sistèm nan. Sistèm ekipman pou pouvwa a gen ladan pouvwa a founi pa motè gaz entèn combustion ak pouvwa a founi pa griy minisipal pouvwa a.
6. Sistèm refwadisman: Sistèm refwadisman an se yon sistèm ki bay sèvis sous frèt pou itilizatè enèji. Sistèm refwadisman an gen ladan: inite ponp chalè sous dlo, inite bromur ityòm gaz lafimen, ak sistèm depo enèji dinamik.
7. Dlo a nan tanperati chanm ponpe nan chiller dlo santrifujeur pa ponp dlo a, ak dlo a nan tanperati chanm echanj chalè ak febrifuj la nan chiller dlo a.
8. Se dlo larivyè Lefrat la ponpe nan inite ponp chalè sous dlo a ak inite bromur ityòm gaz la nan ponp dlo a.
9. Sistèm chofaj: Sistèm chofaj la se yon sistèm ki bay sèvis sous chalè pou itilizatè enèji. Sistèm chofaj la gen ladann: inite ponp chalè sous dlo, inite bromur ityòm gaz, sistèm depo enèji dinamik, ak chodyè dlo cho ak gaz-.
10. Inite ponp chalè sous dlo, inite bromur ityòm gaz la, ak sistèm depo enèji dinamik yo se eleman komen nan sistèm refwadisman ak sistèm chofaj la.
11. nan ekzanp espesifik aplikasyon modèl itilite aktyèl la, gaz entèn combustion motè inlet koneksyon ak rezo minisipal gaz natirèl tiyo, priz gaz lafimen tanperati anwo nan syèl la koneksyon ak gaz lafimen kalite ityòm bromur Absòbsyon inite, ak a. Dlo frèt / cho yon pati nan inite absòpsyon bromur ityòm kalite gaz la pase nan twa -valv la antre nan estasyon echanj chalè a apre yo fin presyon pa ponp segondè a, ak lòt pati a antre nan sistèm nan depo enèji dinamik; pati nan dlo frèt/cho nan twa -valv nan inite ponp chalè sous dlo a antre nan estasyon echanj chalè a apre yo fin presyon pa ponp segondè a, ak lòt pati a antre nan sistèm nan depo enèji dinamik; dlo frèt nan chiller santrifujeur la antre nan estasyon echanj chalè a apre yo fin mete presyon pa ponp segondè a atravè valv twa -fason an.
12. Nan egzanp egzekisyon espesifik modèl sèvis piblik la, depo enèji dinamik dlo frèt ak cho antre nan estasyon echanj chalè a apre yo fin mete presyon sou ponp segondè a atravè valv twa -fason; priz la nan ponp segondè a konekte ak inlet la nan echanjeur chalè plak la atravè Ponp sikile a presyon epi voye bay itilizatè a ekipman pou enèji; kalite plak
Se priz la nan echanjeur chalè a respektivman konekte ak inite ponp chalè sous dlo a, inite gaz la bromur ityòm, chiller santrifujeur a ak sistèm nan depo enèji dinamik.
13. Nan egzanp egzekisyon espesifik envansyon aktyèl la, inlet chodyè gaz la konekte ak rezo tiyo minisipal gaz natirèl atravè tiyo gaz natirèl la; priz dlo frèt/cho chodyè gaz la konekte ak inlet echanjeur chalè plak la atravè yon valv twa -fason ak yon ponp segondè, priz echanjeur chalè plak la konekte ak chodyè gaz la.
14. Efè pwogrè pozitif nan modèl sèvis piblik sa a se ke plizyè-konplemantè enèji santralize estasyon ekipman pou pouvwa modèl sèvis piblik sa a bay ak yon sous dlo ponp chalè ak yon chodyè gaz gen avantaj sa yo: modèl sèvis piblik sa a adopte. plizyè fòm enèji pou konplete youn ak lòt epi li gen bon estabilite ekipman pou enèji. Li trè adaptab e li gen yon pakèt aplikasyon. Li entegre yon varyete de fòm enèji renouvlab. Plizyè kalite enèji ka konvèti youn nan lòt atravè ekipman pou reyalize objektif konplemantasyon milti-enèji ak itilizasyon efikas.
Deskripsyon desen yo
15. Figi 1 se yon dyagram chema nan estrikti an jeneral nan modèl sèvis piblik la.
deskripsyon detaye
16. Yo bay reyalizasyon yo pi pito nan modèl sèvis piblik aktyèl la anba a ansanm ak desen yo pou ilistre konplo teknik modèl sèvis piblik la an detay.
17. Figi 1 se yon dyagram chema estrikti jeneral modèl sèvis piblik la, jan yo montre nan figi ki anwo a: modèl sèvis piblik la bay yon estasyon elektrik santralize konplemantè milti-konplemantè ak yon ponp chalè sous dlo ak yon ponp chalè. chodyè gaz, ak ponp chalè sous dlo a ak yon chodyè gaz yo makonnen Estasyon ekipman pou enèji santralize konplemantè yo enkli: sistèm ekipman pou pouvwa, dezyèm lan se sistèm refwadisman, ak twazyèm lan se sistèm chofaj.
18. Sistèm ekipman pou pouvwa: Sistèm ekipman pou pouvwa a se yon sistèm ki founi pouvwa a chak aparèy nan tout sistèm nan. Sistèm ekipman pou pouvwa a gen ladan ekipman pou motè gaz entèn combustion ak ekipman pou pouvwa nan griy minisipal pouvwa a.
19. Sistèm refwadisman: Sistèm refwadisman an se yon sistèm ki bay sèvis sous frèt pou inite ki konsome enèji -. Sistèm refwadisman an gen ladan: inite ponp chalè sous dlo, inite bromur ityòm gaz lafimen, ak sistèm depo enèji dinamik.
20. Dlo tanperati chanm nan ponpe nan chiller santrifujeur pa ponp dlo a, ak dlo tanperati chanm nan echanj chalè ak febrifuj la nan chiller santrifujeur la.
21. Se ponp dlo a ponpe dlo larivyè Lefrat la nan inite ponp chalè sous dlo a ak inite bromur ityòm gaz la.
22. Sistèm chofaj: Sistèm chofaj la se yon sistèm ki bay sèvis sous chalè pou itilizatè enèji. Sistèm chofaj la gen ladan: inite ponp chalè sous dlo, inite bromur ityòm gaz, sistèm depo enèji dinamik, ak chodyè gaz dlo cho;
23. Inite ponp chalè sous dlo, inite bromur ityòm gaz la, ak sistèm depo enèji dinamik yo se eleman komen nan sistèm refwadisman ak sistèm chofaj la.
24. Prensip modèl sèvis piblik: Se jenerasyon pouvwa a nan gaz entèn combustion inite motè a absòbe pa divès kalite ekipman elektrik nan sistèm nan, ak tanperati ki wo gaz lafimen ki pwodui antre nan inite absòpsyon bromur ityòm gaz la pou pwodui dlo frèt ak cho. Inlet motè ki degaje konbisyon entèn gaz la konekte ak rezo tiyo minisipal gaz natirèl la, priz gaz lafimen tanperati ki wo konekte ak inite lafimen inite absòpsyon lityòm bromur kalite gaz lafimen, ak pati dlo frèt/cho nan bromur lafimen. inite absòpsyon presyon nan ponp segondè a atravè valv twa -fason an epi li antre pou ranplase Nan estasyon tèmik la, lòt pati a antre nan sistèm depo enèji dinamik; pati nan dlo frèt / cho nan inite ponp chalè sous dlo a antre nan estasyon echanj chalè a apre yo fin presyon pa ponp segondè a, ak lòt pati a antre nan sistèm nan depo enèji dinamik; dlo frèt la nan chiller santrifujeur la pase nan tee a Valv la presyon pa ponp segondè a ak Lè sa a, antre nan estasyon an echanj chalè; pami yo, depo enèji dinamik dlo frèt ak cho antre nan estasyon echanj chalè a apre yo fin presyon pa ponp segondè a atravè valv twa -fason; priz la nan ponp segondè a konekte ak inlet la nan echanjeur chalè plak la se priz la nan echanjeur chalè plak la konekte ak inite ponp chalè sous dlo a, inite gaz la bromur ityòm, chiller santrifujeur a ak sistèm nan depo enèji dinamik. Anplis de sa, inlet chodyè gaz la konekte ak rezo tiyo minisipal gaz natirèl atravè tiyo gaz natirèl la; priz dlo frèt/cho chodyè gaz la konekte ak inlet echanjeur chalè plak la atravè yon valv twa -fason ak yon ponp segondè, epi priz echanjeur chalè plak la konekte ak chodyè gaz la menm.
trape.
25. The operation mode of the entire centralized energy supply station is as follows: the centralized energy supply station is equipped with a natural gas distributed energy system, and the municipal natural gas pipeline network is connected to a gas internal combustion engine unit. Electricity supplement. At the same time of power generation, the flue gas hot water type lithium bromide unit recovers the waste heat of the flue gas and the jacket water to produce cold/heat, and realize the triple production of cooling, heating and power. The cold/hot water outlet of the flue gas lithium bromide unit is respectively connected to the inlet of the secondary pump and the inlet of the dynamic energy storage system through a three-way valve. The gas internal combustion engine unit will operate normally at night, and the high-temperature waste heat generated by it is continuous , The flue gas lithium bromide unit will produce a large amount of cold/hot water during continuous operation, and the end user's energy demand at night is relatively small, so it is necessary to store the cold/hot water produced by the flue gas lithium bromide unit. In summer, the dynamic energy storage system uses dynamic ice storage technology to store cold energy. Since the ice storage tank is completely separated from the ice making equipment, it can be used as a thermal storage tank in winter. Control the three-way valve at night to dynamically store the excess cold/hot water produced by the flue gas lithium bromide unit, and control the three-way valve for heating or cooling during the day. Due to the dynamic energy storage system, the dynamic energy storage system and other energy equipment provide cooling/heating at the same time during the peak energy consumption period. During the low energy consumption period, it can provide cooling/supply separately without turning on any other energy production equipment. Heat can shift the peak and fill the valley and balance the power load. When the air-conditioning time is synchronized with the non-air-conditioning time and the peak and trough of the grid, the air-conditioning power consumption during the peak time of the grid can be transferred to the trough of the grid. To achieve the purpose of saving electricity bills. The water source heat pump produces cold and hot water from the river, and its outlet is connected to the inlet of the secondary pump and the inlet of the dynamic energy storage system through a three-way valve. As the electricity sector in some regions implements time-of-use electricity prices, water sources can be increased during periods of low electricity prices. The heat pump unit contributes to maintain the energy supply effect, and at the same time stores the excess cold and heat energy in the dynamic energy storage system, and releases the cold and heat energy in the dynamic energy storage system during periods of high electricity prices, further saving electricity bills, reducing energy consumption, and reducing system operation Cost, increase operational efficiency. The outlet of the centrifugal chiller is respectively connected with the inlet of the secondary pump and the inlet of the dynamic energy storage system through a three-way valve. The cold water produced by it is mainly used as a supplementary energy during the peak period of cold energy demand in summer to deal with emergencies. The outlet of the plate heat exchanger is respectively connected with the flue gas lithium bromide unit, the water source heat pump and the centrifugal chiller via the primary pump. The inlet of the gas boiler is connected to the municipal natural gas pipe network, and the hot water outlet of the gas boiler is connected to the inlet of the secondary pump and the inlet of the dynamic energy storage system through a three-way valve. It is completely adopted under extreme conditions such as lack of power resources and shutdown of other units. The gas boiler supplies heat, and the hot water of the gas boiler is pressurized into the plate heat exchanger through the three-way valve through the secondary pump for heat exchange, and is pressurized by the circulating water pump to each end user. The outlet of the plate heat exchanger is connected to the gas through the primary pump The boiler is connected.
26. Modèl sèvis piblik la an menm tan rezoud pwoblèm nan gwo -depo enèji efikasite nan sistèm sezon fredi ak ete.
27. The dynamic energy storage system in the present utility model uses dynamic ice storage technology in summer, and prepares ice slurry through the process principle of "supercooled water plus crystal promotion", which greatly reduces heat transfer and thermal resistance and reduces ice-making energy consumption by 15 percent Above; the ice storage tank is completely separated from the ice-making equipment, and the dynamic energy storage system can be used as a thermal storage tank in winter. The integrated dual purpose reduces equipment investment and increases operating benefits. The dynamic energy storage system can shift the peak and fill the valley, balance the power load, and quickly respond to load changes; improve the efficiency of the generator set, reduce environmental pollution; reduce the installed capacity of the refrigeration unit, and greatly save the user's electricity cost.
28. Pi wo a montre ak dekri prensip debaz yo ak karakteristik prensipal modèl sèvis piblik la ak avantaj ki genyen nan modèl sèvis piblik la. Moun ki kalifye nan endistri a ta dwe konprann ke modèl itilite aktyèl la pa limite pa reyalizasyon ki anwo yo. Reyalizasyon ak deskripsyon ki pi wo yo sèlman ilistre prensip modèl itilite aktyèl la. San yo pa kite lespri ak sijè ki abòde modèl sèvis piblik la kounye a, modèl itilite aktyèl la Nouvo modèl la pral gen plizyè chanjman ak amelyorasyon, ak chanjman ak amelyorasyon sa yo tonbe nan sijè ki abòde lan modèl sèvis piblik reklame a. Dimansyon modèl sèvis piblik reklamasyon an defini nan reklamasyon ki anons yo ak ekivalan yo.
Tanpri kontakte nou nan zhang@pride-cnc.com
