SOLAR ENERGY-FOCUSED SEAWATER PURIFICATION AND ENERGY GENERATION SYSTEM
Patent Information
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- YAKUP BEKAR
- Filing Date
- 2026-05-01
- Publication Date
- 2026-06-22
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Abstract
Description
1 DEADLINE 5 G Ü NEŞ IN JESUS IS THE LORD , OF NİZ SU YU AR IT MA VE E NE RJ İ Ü RET İM SYSTE Mİ T echnique Al an 10 B ul uş ; electrification of renewable energy generation systems od n a n d increases in the energy consumption of water , lde ed il en thermal energy at the end of the distillation process (including with water temperature), the electrical energy rate is 15 am ac ı yla everywhere in hybridist studies . T echnique s B u l i n g M ev cu tden ’s outbound m anagement systems (third-party e.g. e l ek t r ik t ü k e t i mi ne v e f i l t r e m al iy e t l e r in e s ah i p t i r . Dü ny a 20 g en e l i nd e e l ek t r ik en e r j i s i g en e l o l a rak d eğ e r l i m ad en l e r i i ç e ren v e k imy as a l a t ı k o lu ş t u ran akü le r l e d ep o l anm ak t ad ı r . T u zl u s uy un ay r ı ş t ı rm a yö n t emi nd e t u zu n a t ı k o l a rak f i l t r e i ç e r i s in d e k a lm as ın ın ö n l enm es i t u zu n a t ı l du ru md an k u l l an ı ma 25 s un u l mas ı sağ l anmak t ad ı r . M em b r an v e t e r s o zmo s k u l l an m ad an a t ı k f i l t r en i n ö n l en m es i s ağ l anm ak t ad ı r . S i s t em d ek i a t ı l h a l d e k a l an ı s ı n ı n s i s t em e t ek r a r ku l l an ı l a cak h a l e g e t i r i lm es i s ağ l an m ak t ad ı r . At ı l du r umd ak i b uh a r ı n e l ek t r i k ene r j i s in i çev r i lm es i g er çek l e şm ek ted i r . Ü r e t i l en e l ek t r ik ene r j i s in in 30 t e s i s t e k u l l an ı l m as ı t e s i s d ı ş ın d ak i s a t ı ş ı n ı n s ağ l an ab i l mek t ed i r . Ü r e t i l en e l ek t r iğ in d ep o l an m as ı n ı v ey a e l ek t r o l i z y ön temi i l e h id r o j en e çev r i lm es i , ü r e t i l en h id r o j en in v e o ks i j en in d epo l anm as ı v e / vey a s a t ı lm as ı ge r çek l e şm ek ted i r . G ün eş en e r j i s i n i k u l l anar ak y eş i l en e r j i i l e ü r e t im y ap ı lm as ı 35 s ağ l an m ak t ad ı r . D i ğe r e l ek t ro n ik ü r e t im t es i s l e r i nd ek i g i b i r ady o ak t i f a t ı k v e k a r bo n s a l ı n ı mı y ap m am as ı ( s e r a gaz ı ) v e b ak ı m m al i ye t l e r i n i n d a h a az o l m as ı b u lu şu o lu ş tu r an avan ta j l a r d an d ı r . 40 Bu bul uş ; • G ü n eş en erjisiile ay na ku ll an ı lar ak y ük s ek ı s ı elde ed im i , • D eni z su yu nu hi çb iratı kfilter ( mem br an ) kull anm ad an ar ı t may ı , • Fo sily a c t i o n m a d an yü ks e k ı s ı elde ed im i , • A r ı tm ai ş l emi s ı ras ın da y an ü r ün olar ak el ek trikve en du striyeltuze lde ed im in i , • Y an ü rü nolar ak el de ed il en el ek tr iğ in hid ro j en e d ö nüş tü r ü le rek batteryalara gö red aha az h ac im k ap l am as ı , 2 • B a t t e r y g i b i d e s s i s t e m l erle en er ji d epo l am ay ı hed efl em ected ir Explanation of the references in the figures 10 Figure 1 shows the receding seawater into holding pools. It is the appearance of the absorption and thick filtration. Figure 2 shows the appearance of movable mirrors and this vaporization process. Figure 3 shows the steam turbine, generator, heat exchanger tank, and mineral tank. It is the appearance of the tank. 15 Figure 4 shows the appearance of the bottling system. Figure 5 shows the appearance of the electrolysis system. The parts that make up the invention are; 1. Water Inlet Point 20 2. Mesh Screen 3. Pipeline 4. Electric Pump 5th Tier Holding Pool 6. System Feed Pump 25 7. Coarse Filtration Unit 8. Evaporation Tank Water Inlet Valve 9. Evaporation Tank 10. Movable Mirrors 11. Solar Control System 30 12. Movement Mechanism 13. Temperature Sensor 14. Pressure Sensor 15. Steam Tank Outlet Valve 16. Shrinking Pipe 35 17. Steam Generator 18. Steam Generator Valve 19. Heat Exchanger Tanks 3 20. Heat Transfer Tubes 5 21. Fine Filtration Unit 22. Mineral Addition Unit 23. Bottling Unit 24. Electrolysis Unit 25. Hydrogen Tank 10 26. Oxygen Tank 27. Pressure Equalization Valve 28. Tank Discharge Pipe 29th Bypass Line Explanation of this formation The invention involves reflecting solar energy through systems. od n a n d increases in the energy consumption of water , lde ed il en thermal energy at the end of the distillation process (including with water temperature), the electrical energy rate is 20 o lm act is r . S u , the output of the turning point ( 1 ), the turning point of the mesh the equation ( 2 ) is to be carried out Surface turntable (1 ) , suction esn as ı nd ad en written by you , such as the material in gel memes i i ç inje rd en yu ka rıda is the most common form of creativity. 25 According to Example (1 ), the nature of the chirlytic acid layer gel do not agree with you , what is the sufaaliyetlerii ç ins uy agir en s an la ra r i sk o l uş t u rm am ak , k ıy ı ş e r i d in d e b i r ik en ağ ı r m et a l l e r v e p i s l i k l e r d en e tk i l en m em ek i ç i n b e l i r l en en u zak l ı k t a b i r m esa f ed e k o num land ı r ı l a cak t ı r . 30 D eni z s uy u sah i ldek i su g i r i ş no k t as ı nd an (1 ) d en i z i n i ç e r i s in e y e r l e ş t i r i lmi ş b o ru h a t t ı ( 3) y a rd ım ıy l a su a r ı tm a t e s i s in e p om p al an m akt ad ı r . S u g i r i ş n ok t as ı (1 ) i l e su a r ı tm a t es i s i a r as ı nd ak i b o r u h a t t ı ( 3 ) d en i z su yu nd an e t k i l enm ey ecek , b i r l e ş im n ok t a l a r ın da k açak 35 4 o lu ş t u r may acak , den i z in yü ks ek t uz l u l uk o r an ı i l e ko r o zy on a 5 ( o ks i t l en m ey e ) m a ru z k a lm ay acak y ap ı d a o l uş tu ru l acak t ı r . D en i z s ev i ye s i n in a l t ı n a i n i l d i k çe a r t an b a s ı nç h es ap l an a rak bo r u h a t t ı nd a ( 3 ) ku l l an ı l a cak m al zem en in c i ns i n e , bo r un un çap ın a ve k a l ın l ı ğ ın a k a r a r ve r i l e cek t i r . Bo ru ha t t ı ( 3 ) y a r d ımı y l a s ah i l e u l aş an d en i z su yu nu , e l ek t r i k l i p omp a ( 4 ) y a rd ımı i l e su a r ı tm a 10 t e s i s i i ç e r i s in e çek i l i r . D eni zd en çek i l en den i z s uy u k ad em el i b ek l e t m e h avu z l a rd an ( 5 ) g eç i r e r ek su yu n i ç e r i s in d e g e l en k um t a ş vb . c i s i ml e r in su y un a l t t ab ak as ın a çök m es in i s ağ l an ı r . B u rad a bu l un an su ı s ı e şan j ö r t ank l a r ı ( 19 ) ç ık ı ş ı nd an g e l en 15 s ı cak h av a bu h ar ı i l e ö n ı s ı tm ay a m ar u z b ı r ak ı l ı r . Bu say ed e s u heating and the ability of the sabitide ecal infiltration unit ( 7 ) to is filtered through the system by the pump ( 6 ü nitesine (7 ) y on l en arises . Bec le tme h avu zlar an ( 5 ) geche r i cheris in de bu lu nan sand tash vb . 20 separated from the verbs, it is not the same as the one without a foundation in the text, the affix is not filtered to separate the words from the it is dissolved from unit to ( 7 ) . Cleanliness in the kitchen values are used to determine the values of a series of filters. C o l l y n filter em ey e ( 7 ) m gr uz kalan su bu h har l a s t i r m a t i n k i n a (9 ) 25 g id eb i l mek i ç i n buh a r l a ş t ı rm a t an k ı su g i r i ş v an as ı n a (8 ) v e ı s ı e ş an jö r t an k l a r ı n a (1 9 ) g eçe r . B uh a r l a ş t ı rm a t a nk ı su g i r i ş v an as ı n ın ( 8 ) aç ı lm as ı i l e b i r l i k t e b u ha r l a ş t ı rm a t an k ı ( 9 ) b e l i r l en en üs t s ev i yey e kad a r f i l t r e l en miş d en i z su yu i l e d o ld u ru lu r . B u sev i y e , d en i z su yu nu n kay n am a 30 y ap a rk en t av an a s ı ç r am ay acağ ı m esa f ey e g ör e ay a r l an ı r . B uh a r l a ş t ı rm a t ank ı g i r i ş v an as ı ( 8 ) v e bu h ar t ank ı ç ık ı ş v an as ı ( 1 5 ) k ap a t ı l a r ak , b uh a r l a ş t ı rm a t an k ı n ın ( 9 ) ı s ı tm a i ş l emi b a ş l a t ı l ı r . B uh a r l a ş t ı rm a t an k ı ( 9 ) i ç i n ge r ek l i o l an ı s ı en er j i s i , h a r eke t l i 5 It is determined thanks to the mirrors (10). Movable mirrors (10) are also The angle of incidence of mirrors depends on the angle of incidence of sunlight. It is arranged. This is around the evaporation tank (9). All of the installed movable mirrors (10) are instantaneous This focuses on the vaporization tank (9). 10 This system determines the viewpoint of the moving mirrors (10). a solar control system that will calculate in intervals ( 11 ) and this by applying the commands coming from the system, the movable mirrors ( 10 ) need of a movement mechanism that can change the point of view (1 2) It is to be heard. 15 such as not wanting the evaporation tank to be heated (9) du ru ml a rd aiseha rek etli ay na lar ın ( 10 ) b a k ı ş a çı ı s ı bu h ar l aş t ı r ma By removing it from the tank (9) the vaporization tank (9) The heating process is given. Movable mirrors to start the heating process ( 10 ) 20 This vaporization tank (9) is turned over and first this vaporization After the tank (9) the seawater inside begins to heat up. For temperature measurements inside the evaporation tank (9) The temperature sensor to be used (1 3 ) must be at least one point on the tank ( 9 ) the temperature of the sea water at least at one point is 25 It will be positioned in a way that allows it to be measured. The pressure of the vaporization tank (9) is at least one point of pressure. It is measured by the sensor (14). Planned heat loss due to plague the steam that reaches the tank (9) above the upper parts of the tank The tank outlet valve (15) is opened and the water passes through this valve 30 narrowing pipe (1 6 ) help the lab uh arj en erat ö rü ne (1 7 ) to the right way interest . Thanks to the narrow pipe (1 6) in which the water is located This ensures that the pressure increases even more. High pressure steam 6 The generator ( 1 7 ) is passed through a high-pressure substation , 5 this expense is converted into ( 1 7 ) by manual electrical engineering . High-pressure steam within the steam generator (1 7 ) the sequence is condensed through the equations (1 9 ) . This cost generator to be used ( 1 7 ) is highly financially maintain wood shelves such as ep le rd full of slave 10 if desired, this profit generation equation (1 8 ) captures the ac build at the upper ext heat from tank ( 9 ) is this har , this is gen er a törü nün (1 7 ) i c eris in den by pass shatt y (2 9 ) thanks to the direct memory of the echo generator tanks (19) from within It is passed. 15 High pressure hot air coming from the evaporation tank (9) This steam passes through the sequential heat exchangers (1 9) from here find an heat with salt water tr ans feriy ap tik an son rat am amen to keep them warm with heat transfer pipes (2 0 ) They are sent to the pools (5). In this case, the sound is in the sound exchange tanks (19) 20 The salty water heats up and evaporates due to heat transfer. It begins. The heat that passes through the waiting pool (5) of the water vapor formed t r an s f e r bo r u l a r ı nd an (2 0 ) do la ş t ı r ı l ı r . Bu s ay ed e h em bu h ar y o ğuş a r ak y en i d en s ıv ı h a l e dö n e r h em d e b uh a r l a şm a t an k ı n a ( 9) 25 g i recek o l an s u l a r ö n ı s ı tm ay a m aru z k a l a r ak sü r ec i h ı z l an d ı r ı r . İn s an s ağ l ı ğ ı a ç ı s ın d an g e r ek du yu l an m in e r a l l e r , e l d e ed i l en s uy un i ç e r i s in e b e l i r l i ö l çü l e r d e ka r ı ş t ı r ı l a r ak m in e r a l ek l em e ü n i t e s i nd e ( 22 ) i ç i me haz ı r h a l e ge t i r i l i r . İ ç im e h az ı r h a l e g e t i r i l en su l a r p e t ş i ş e v e d am acan a g ib i ç eş i t l i h ac im le r d ek i 30 ş i ş e l e r e ş i şe l em e ü n i t es in d e ( 2 3 ) d o ld u ru l a r ak p ak e t l en i r . T ü ke t i c i y e u l aş mas ı i ç i n h az ı r h a l e g e l i r . The water vapor coming out of the evaporation tank (9) is in the tank. ( 9 ) remaining high density salt precipitate, in the tank ( 9 ) 7 In order to perform this vaporization process again, the tank (9) 5 It needs to be transferred outside. In order for this process to be carried out, first of all, a moving part is needed. the evaporation of the focal point of our mirrors (10) (9) removal of the vapor from the surface and the optimum evaporation tank (9) s level reserve temperature and pressure to drop pressure variation 10 By opening the valve (2 7 ) the vaporization tank ( 9 ) pressure is released into the open air a tm os f e r b as ı n c ı n a e ş i t l en m es i s ağ l an ı r . İç e r i d e b u lu n an y ük sek y oğ un lu k l u tu z l u su çö k e l t i s i n i b u ha r l a ş t ı rm a t an k ı nd an (9 ) d ı ş a r ı y a ak t a r ab i l mek i ç i n b u ha r l a ş t ı rm a t ank ı n ı n ( 9 ) a l t k ı smın d a b u l un a n t ank t ah l i ye 15 b o ru su ( 28 ) aç ı l a r ak i ç e r i de b u l un an y ü ks ek y oğ un l u k lu tu z l u su çö k e l t i s i n i n y e r çek imi ku vv e t i i l e a ş ağ ıy a dü şm es i s ağ l an ı r . B uh a r l a ş t ı rm a t an k ı n ı n (9 ) i ç e r i s in d e k a l an t u z l a r i ç in t ank a s u g i r i ş v an as ı ( 8 ) aç ı l a r ak b uh a r l a ş t ı rm a t an k ın ın ( 9 ) i ç k ı s mı t em i z l en miş o lu r . B u rad an e l de ed i l en yü ks ek yo ğu n lu k l u tu z l u 20 s u çök e l t i s i , d ep o lan acak y e r e çeş i t l i i ş m ak i ne l e r i v a s ı t a s ı i l e t a ş ın ı r . B uh a r j en e r a t ö rü nden (1 7 ) e ld e ed i l en e l ek t r ik en e r j i s i , b a ş t a s u a r ı t ma t es i s i n in k en d i e l ek t r i k i h t i yac ı o lm ak ü ze r e k u l l an ı l ı r . 25 T es i s i ç in g e r ek l i o l an e l ek t r ik en e r j i s in i n fa z l a k ı s mı e l ek t ro l i z ü n i t e s i (2 4 ) i l e h i d r o j en v e o ks i j en e ld e ed imi nd e k u l l an ı l ı r . E ld e ed i l en h i d ro j en h i d r o j en t an k ın a ( 2 5 ) , ok s i j en i s e o ks i j en t an k ın a ( 2 6 ) d ep o l an ı r . H i d r o j en v e o ks i j en g az l a r ı d epo l an a r ak s a f h a l d e ku l l an ım a 30 s un u l ab i l i r v ey a yen id en e l ek t r ik v e su yu ih t iy ac ı n ın o lu şm as ı du ru mu nd ah hydrogen vehicle oxidation and su yaveel ek tr ik in ergicine čev rilir . 35 8 Bu luşun s there is nothing wrong with you B u l uş , after which the unit unar ı t is the medium, the energy rhythm is formed. oil and hydrogen , oxygen electric vehicles and air capsules en t eg rebirsist is the up ; i çm e su yu ü reti me ve in erjis ek tö rü al an lar ın da ğru dan s an are able to learn intelligence Si st him ; d en i zd en ham suttomi ni , after the physics cell filter sion , natural energy effluent recovery, powder energy in the electricity supply chain , i.e. v e e l ek t r o l i z i l e h id r o j en ü r e t imi g i b i sü r eç l e r i n t ek b i r en t eg r e t e s i s i ç e r i s in d e ge rçek le ş t i r i lm es in e o l an ak s ağ l am ak ta d ı r . B ul uş k aps amı nd a y e r a l an po mp a i s t a s yo nu (1 ) , bo r u ha t t ı ( 3 ) , 15 k a l ın f i l t r e l em e ün i t e l e r i (8 ) , bu h a r l aş t ı rm a t ank ı ( 9 ) , ha r ek e t l i ay n a l a r ( 1 0 ) , b uh a r j en e r a t ö r ü ( 1 7 ) , ı s ı t r an s f e r b o r u l a r ı ( 2 0 ) ve e l ek t ro l i z ün i t es i ( 2 4) g i b i b i l e ş en l e r ; h â l ih az ı rd a s an ay i d e k u l l an ı l an ve t emin ed i l eb i l i r ek i pman l a r d an s eç i lm ek te o lu p , s i s t emin m ev cu t ü r e t i m t ek n i k l e r i i l e ku ru l ab i lm es in i m üm kü n 20 k ı lm ak t ad ı r . D eni z s uy un un k ıy ıd an b e l i r l i b i r mes a fed en ve u yg un d e r i n l ik t en a l ı nm as ı s ayes i nd e ağ ı r m et a l , kum v e b iy o l o j i k k i r l e t i c i l e r in s i s t em e g i r i ş i m in i mi ze ed i lm ek t e ; bu d uru m h em s i s t em v e r i ml i l i ğ in i a r t ı rm ak t a h em d e b ak ı m m al i y e t l e r i n i 25 d üş ü rm ek t ed i r . Ku l l an ı l an b o ru h a t l a r ı d en i z o r t amın a day an ı k l ı o lu p u zu n öm ür lü i ş l e t im s ağ l am ak t ad ı r . G ü n eş en e r j i s i od ak l ı h a r eke t l i ay n a s i s t emi i l e y üks ek s ı cak l ık l a r a u l a ş ı l ab i lm es i , s i s t emi n d ı ş en e r j i b ağ ım l ı l ı ğ ı n ı a za l t mak t a ; b uh a r j en er a tö rü a rac ı l ı ğ ıy l a e l d e ed i l en ene r j i h em 30 t e s i s i ç e r i s in d e ku l l an ı lm ak ta h em de d ep o l anab i lm ek ted i r . Bu y ö nü y l e bu l uş , ene r j i v e r i ml i l i ğ i y ük s e k v e s ü r dü r ü l eb i l i r b i r çö züm s unm akt ad ı r . 9 E ld e ed i l en s a f su y un mi ne r a l ek l em e ü n i t e s i i l e i çm e s uy u 5 s t an da r t l a r ın a ge t i r i l m es i ve ş i ş e l en e r ek t i c a r i l e ş t i r i l eb i lm es i m üm kü nd ür . A yn ı z am an d a s i s t emden e l d e ed i l en h id r o j en v e o ks i j en g az l a r ı ene r j i v e s an ay i s ek t ö r l e r in d e ku l l an ı l ab i l e cek ek on omi k d eğ e r e sah ip t i r . B ul uş ; k ıy ı b ö lg e l e r i nd e , ad a l a rd a , s u k ayn ak l a r ın ın y e t e r s i z 10 o ld uğ u y er l eş i ml e rd e , end üs t r i y e l t e s i s l e r d e v e en e r j i ü r e t im s ah alar ın dam od the rv ey to be used in the country and the country Systematic capture ; p o m pa say ı s ı , fuel tank and mirror are used. art ı r ı lar with the checks S o n u ç olar and bu lu ş , I m u c t i n g a dislict o f reading 15 ü retil eb ilir , eb ilir group ş letil eb ilir lu p ; i çm and on yu ü network imi , energy efficiency of water-based technologies s an month 's month of abbilir ö ze llikta şm a t ad
Claims
İSTEMLER 5 1 . B u l uş gü n eş ene r j i s i o d ak l ı , d en i z su y u a r ı tm a v e en er j i ü r e t im s i s t emin e i l i şk i n o lu p ö ze l l i ğ i ; S u g i r i ş n ok t as ı (1 ) , m es h e l ek (2 ) , bo ru h a t t ı ( 3 ) , e l ek t r i k l i p om p a (4 ) , k ad em el i b ek l e t m e h avu z la r ı (5 ) , s i s t em b es l em e po mp as ı ( 6 ) , k a l ı n f i l t r e l em e 10 ü n i t e s i (7 ) , bu h a r l aş t ı rm a t an k ı s u g i r i ş v an as ı ( 8 ) , b uh a r l a ş t ı rm a t ank ı (9 ) , h a r ek e t l i ayn a l a r ( 10 ) , gün eş ko n t ro l s i s t emi ( 11 ) , h a r eke t m ek an i zmas ı (1 2 ) , s ı c ak l ık s en sö r ü (1 3 ) , b as ın ç s ens ö rü ( 1 4 ) , b uh a r t an k ı ç ı k ı ş v an as ı (1 5 ) , d a r a l an b o ru ( 16 ) , b uh a r j en er a tö rü (1 7 ) , buh a r j en e r a t ö r v an as ı ( 18 ) , ı s ı e ş an j ö r t ank l a r ı 15 ( 1 9 ) , ı s ı t r a ns f e r bo ru l a r ı (2 0 ) , i nc e f i l t r e l e m e ü n i t e s i ( 21 ) m in e r a l ek l em e ün i t es i (2 2 ) , ş i ş e l em e ü n i t e s i ( 23 ) , e l ek t ro l i z ü n i t e s i (2 4 ) , h id ro j en t ank ı (2 5 ) , o ks i j en t ank ı ( 26 ) , b as ı n ç e ş i t l em e v an as ı (2 7 ) , t ank t ah l i y e b o rus u ( 28 ) v e b yp ass h a t t ı nd an (2 9 ) o l uşm as ıd ı r . 20 2 . İ s t em 1 ’ e gö r e gü neş en e r j i s i od ak l ı , d en i z su yu a r ı tm a v e en e r j i ü re t im s i s t em i o lu p ö ze l l i ğ i ; D eni z s uy un un çek i lm es in i s ağ l ay an su g i r i ş no k t a s ı ( 1 ) o lm as ıd ı r . 3 . İ s t em 1 ,2 ’y e gö r e g ü neş en e r j i s i od ak l ı , d en i z su yu a r ı t ma ve en energy systems and up ö ze lli ğ i ; D en izs uy and a check i ld iğ i points in the wire of the leri in the gell icon positions are shown in Fig. 1 . extracts (2 ) of olm ace. 4 . In stem 1 , 2 ,3 , the regime contains an energy iodine, and the output is ve en er ji ü ret systems of up ö ze lli ğ i ; suggested scheme (1 ) with In the ar ı t ma t essiar as ınd a , the results of the analysis of the results vey ük s ek b bas ın camu k av em and lima lzem ed en ü re til mi şer bo ru remove hatt ı (3 ) and remove the trigger pump (4 ). 35 . In steps 1 , 2 , 3 , 4 , the energy consumption of the regime is low, and the output a r ı t ma v e en e r j i ü r e t im s i s t emi o lup ö ze l l i ğ i ; d en i zden g e l en s uy un i ç e r i s i nd ek i pa r t i k ü l l e r i n çö k e l t i l d iğ i v e i ç e r i s i nd e g eçen ı s ı t r an s f e r bo r u l a r ı (2 0 ) v as ı t a s ıy l a s uy un ön ı s ı tm aya m ar u z 40 b ı rak ı ld ı ğ ı k adem el i b ek l e tm e h avu z l a r ı ( 5 ) o lm as ıd ı r . 6 . İ s t em 1 , 5 ’ e gö r e gü n eş en e r j i s i od ak l ı , d en i z s uy u a r ı tm a v e en e r j i ü r e t im s i s t emi o l up ö ze l l i ğ i ; b ek l e tm e h avuz l a r ı nd an ( 5 ) g e l en s uy un s ab i t d eb id e s i s t em e ak t a r ı lm as ın ı s ağ lay an b i r 45 s i s t em bes l e m e p om p as ı (6 ) o l mas ı d ı r . 11 7 . İ s t em 1 , 2 ,3 ,4 ,5 ,6 ’ ya g ö r e g ün eş en er j i s i o d ak l ı , d en i z suy u 5 energy efficiency of the upstream remysist; su yu nist in it in t em izlikd eğerler in all cases of ardardazyl mi ş filters in or removed from the filter cavity in equation ( 7 ) are called ir . 8 . In stem 1 , the energy consumption rate is 7', and the output temperature is 10 ve in the energy system of the pieces ; filter in half on the surface of the m s ev i ye sini is an intermediate type of activation cap (8 ) and water and thermal energy supplies were supplied by this is the rm a t i o n ( 9 ) i d . 9 . Step 1 , 8 ' e -regulated energy supply, exhaust emissions And its characteristic feature is that it is an energy production system; it instantly converts sunlight. movable mirrors (10) focusing on this vaporization tank (9) It is the fact that it is.
10. Solar energy-focused seawater purification according to Ist. 1, 8, 9 and its characteristic feature is the perspective of the mirrors. a solar control system (1 1 ) and applying these angles It is a movement mechanism (12). 1 1 . Solar energy-focused seawater purification according to Ist em 1, 8 ' and its characteristic of being an energy production system is evaporation (9) temperature that measures the temperature of the tank and water inside separately the person transmitting the sensor (1 3) and the pressure sensor ( 1 4 ) It is. 30 1 2 . According to Ist em 1 , 8 ,1 1 'e reg solar energy focused, seawater Its characteristic feature is that it is a purification and energy production system; evaporation. The temperature sensor (13) located in the tank (9) monitors the internal pressure of the tank. Based on the data from the sensor (1 4), the output of this steam is 35 The reason for this is that it is an open and close steam outlet valve (1 5 ). 1 3. According to Ist. 1, 8, 12, solar energy focused, seawater It is a purification and energy production system and its characteristic feature is this evaporation tank. To increase the pressure of the steam coming out of the outlet valve (1 5), 40 used a narrow pipe (1 6 ) and this high pressure steam It is a charge generator (17) that produces electricity. 1 4 . According to Ist em 1 , 8 ,1 3 'e reg solar energy focused, seawater It is a purification and energy production system and its characteristic is evaporation 45 high pressure steam generator ( 17 ) which can be formed in the tank ( 9 ) 12 Bypass line which prevents the water from being released due to excessive loads ( 29 ) 5 It is the fact that it is. 1 5. According to requests 1, 8, 13, 14, solar energy-focused seawater a r ı t ma v e ene r j i ü re t i m s i s t emi o lu p öze l l i ğ i ; b ak ım v ey a m a l iy e t v b . g i b i t e r c i h l e r e g ö r e b uh a r ın , bu ha r j en e r a tö rü n e (1 7 ) 10 g i rm es i n i e ng e l l e ye n bu n a b ağ l ı o l a ra k do ğ ru dan b yp a ss h a t t ın a ( 2 9 ) g i rm es in i sağ l ay an b i r b uha r j en e r a tö r vanas ı ( 18 ) o lm as ıd ı r . 1 6 . İ s t em 1 , 8 , 13 ,1 4 ’ e g ö r e gü n eş en e r j i s i o d ak l ı , den i z s uy u 15 a r ı t ma v e en e r j i ü r e t i m s i s t emi o lu p ö ze l l i ğ i ; B uh a r j en e r a t ö rü ( 1 8 ) ve / v e y a by pa s s h a t t ı nd a n ( 29 ) g e l en b uh a r ı n i ç i nd e n g e ç me s i n i s ağ l a y an ı s ı t r an s f e r b o ru l a r ı ( 20 ) o lm as ı d ı r . 1 7 . Figures 1 , 7 , 8 , 16 ' eg regime energy occupancy, and finally 20 ar ı t ma ve the energy of the rem editing system or the device ; Go to Filter adding (7) to the slow lubricant, the ferrous iron (2 0 ) ı s ı t ın sa ğ l ain ve id id eolu ş uh ar ı s trans sphere bo ru lar i n the average temperature of the circulation (1 9 ) o lm as . 25 1 8 . In Figures 1 , 5 , 8 , 17 , the energy consumption of the oil and the exhaust ar ı t ma ve energy ü retiming system in the light source ; The spherical The hole in the bore ( 20 ) was filled with gel buffer. isolated from water solutions (bacteria vb . ) 30 intracellular filtration ( 21 ) was performed. 1 9 . Figure 1 , 1 8 ' e regime energy additive, the output ve energy and retimisture upstream ; E ld e ed the en saf on yu ni çm e s uy an additional üş tu rü ld ü mi n er to the ü mi n er equation ( 15 ) see Figure 35 ü nitesi nd en (1 6 ) showed that the results were obtained from the 2 0 . Figure 1 , 1 3 ' e regime energy additive, and the output ve en energy management system or wolf ; (1 7 ) ü rethyl en electrical energy supply in phases, hydrogen and oxygen gas 40 ü ret in the birel electrolysis unit (2 4 ) is used in the oil. 2 1 . In stem 1 , 2 0 , the energy supply is increased, and the output ve en energy ü retimsist emi the up ö ze lli ğ i ; red hydro elde and ve oxygen gases depolned in hydrogen tank (2 5 ) and oxygen 45 the tank (2 6 ) is shown. 13 2 2 . Step 1 , 8 ' e -regulation energy supply , exhaust outlet 5 ve energetic retiming system or small point ; b uh interaction coefficient (9 d ib in of the brick and y ü ks ek yo ğu nl uk what you have to do t ah liy es ind en ce t nk ba s y n c y n a tmos ferba s y n c y nae ş itl eyen a single sequence is shown in ( 27 ). 2 3 . The stem 1 , 8 ,2 2 ' contains the energy of the iodine, which is the ar ı t ma ve in the energy management system of the wolf ; what keltin The analysis was based on the independent analysis of the boron ( 28 ).