化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2013年
9期
2030-2034
,共5页
程百花%王越%许恩乐%孙扬平%徐世昌%王世昌
程百花%王越%許恩樂%孫颺平%徐世昌%王世昌
정백화%왕월%허은악%손양평%서세창%왕세창
反渗透海水淡化%旋转式能量回收装置%启动方式%运行稳定性
反滲透海水淡化%鏇轉式能量迴收裝置%啟動方式%運行穩定性
반삼투해수담화%선전식능량회수장치%계동방식%운행은정성
SWRO desalination%rotary energy recovery device%start-up mode%operating stability
能量回收装置是降低反渗透海水淡化(SWRO)系统运行能耗和制水成本的关键设备之一。本文开发并试制了一种具有新型端盘结构的旋转式能量回收装置,并对其启动方式进行了研究优化,测试分析了装置的动密封性能和效率特性,并对装置连续运行稳定性进行了考核。结果表明,旋转式能量回收装置在转速增至额定值后再进行升压操作的启动方式下驱动扭矩最小;装置泄漏量随操作压力增高而增大,在6.0 MPa 时,为0.58 m3/h;在转速为500 r/min、处理量为8.0 m3/h及操作压力为6.0 MPa时,装置连续运行稳定,能量回收效率为93%。这些研究结果对旋转式能量回收装置的开发和工程应用具有一定的指导意义。
能量迴收裝置是降低反滲透海水淡化(SWRO)繫統運行能耗和製水成本的關鍵設備之一。本文開髮併試製瞭一種具有新型耑盤結構的鏇轉式能量迴收裝置,併對其啟動方式進行瞭研究優化,測試分析瞭裝置的動密封性能和效率特性,併對裝置連續運行穩定性進行瞭攷覈。結果錶明,鏇轉式能量迴收裝置在轉速增至額定值後再進行升壓操作的啟動方式下驅動扭矩最小;裝置洩漏量隨操作壓力增高而增大,在6.0 MPa 時,為0.58 m3/h;在轉速為500 r/min、處理量為8.0 m3/h及操作壓力為6.0 MPa時,裝置連續運行穩定,能量迴收效率為93%。這些研究結果對鏇轉式能量迴收裝置的開髮和工程應用具有一定的指導意義。
능량회수장치시강저반삼투해수담화(SWRO)계통운행능모화제수성본적관건설비지일。본문개발병시제료일충구유신형단반결구적선전식능량회수장치,병대기계동방식진행료연구우화,측시분석료장치적동밀봉성능화효솔특성,병대장치련속운행은정성진행료고핵。결과표명,선전식능량회수장치재전속증지액정치후재진행승압조작적계동방식하구동뉴구최소;장치설루량수조작압력증고이증대,재6.0 MPa 시,위0.58 m3/h;재전속위500 r/min、처리량위8.0 m3/h급조작압력위6.0 MPa시,장치련속운행은정,능량회수효솔위93%。저사연구결과대선전식능량회수장치적개발화공정응용구유일정적지도의의。
Energy recovery device (ERD) is one of the key apparatus to reduce the energy consumption and the costs of water production in seawater reverse osmosis (SWRO) system. This research developed a rotary energy recovery device (RERD) with innovative endplates. Optimization of the start-up modes of the RERD under different operational conditions,dynamic sealing performances, energy recovery efficiencies and operating stabilities were tested and evaluated. The results showed that the optimal start-up speed of the device before boosting the system to the working pressure level was 500 r/min. The system leakage increased with the increase of pressure. The system leakage was 0.58 m3/h at the pressure of 6.0 MPa. Under the testing conditions of rotating speed of 500 r/min, working capacity of 8.0 m3/h and the operating pressure of 6.0 MPa,the operation of the RERD was stable with an energy recovery efficiency of 93%. The results could be helpful in the development and industrial application of RERDs in future research.