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Advanced Reverse Osmosis: Energy Recovery Pumping

机译:先进的反渗透:能量回收泵

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Shipboard desalination is accomplished via reverse osmosis, an energy-intensive process where seawater is pressurized to high pressures, desalinated, and the resultant brine stream is depressurized for discharge overboard. The introduction of energy recovery technology to the shipboard reverse osmosis desalination unit enables reductions in energy consumption, weight, and can simplify maintenance and operations. The Fleet Readiness Research and Development Program (SEA 05T) sponsored an effort at the Naval Surface Warfare Center Philadelphia Division to conceptualize, design, qualify, and install a design change to incorporate an energy recovery pumping skid into the seawater reverse osmosis plant on the USS Whidbey Island (LSD-41) class and USS Harpers Ferry (LSD-49) class ships. A pumping skid was designed for use within the 36,000 gallon per day seawater reverse osmosis system to recover the hydraulic energy from the high pressure brine stream, enabling a significant reduction in energy usage. The pumping skid was designed and fabricated using adapted commercial technology, and was successfully qualified to meet shock, vibration, and electromagnetic interference (EMI) requirements. Endurance testing was performed on the pumping skid at a land-based natural seawater test site for 2,160 operating hours, and the skid was successfully installed on the USS Carter Hall (LSD-50) as a non-permanent change (NPC) installation. Following demonstration of energy savings (over seventy percent reduction in energy consumption compared to legacy equipment), the unit remained on the ship and operated successfully for a full seven month deployment, enabling the ship to reliably and efficiently produce potable water. This presentation will focus on the development process as well as the test results obtained during qualification and endurance testing, in addition to data and general observations of performance during shipboard at-sea operation.
机译:船上的海水淡化是通过反渗透完成的,反渗透是一种高能耗的过程,其中海水被加压至高压,然后被脱盐,然后将所得的盐水流减压以排放到船外。将能量回收技术引入船上反渗透淡化装置可以降低能耗,减轻重量,并简化维护和操作。舰队就绪研究与开发计划(SEA 05T)赞助了费城海军水面作战中心的一项工作,以概念化,设计,鉴定和安装设计变更,以将能量回收泵送打入美国海军的海水反渗透工厂惠德比岛(LSD-41)级和哈珀斯渡轮(LSD-49)级。设计了抽水橇,用于每天36,000加仑的海水反渗透系统中,以从高压盐水流中回收液压能,从而显着减少了能耗。抽油橇采用适应性的商业技术进行设计和制造,并成功地满足了冲击,振动和电磁干扰(EMI)的要求。在陆地天然海水测试地点对抽水滑橇进行了耐力测试,共进行了2160个工作小时的测试,并将滑橇作为非永久性变更(NPC)安装成功安装在USS卡特厅(LSD-50)上。在证明了节能效果(与传统设备相比,能耗降低了百分之七十以上)之后,该装置仍留在船上,并成功运行了整整七个月,使船能够可靠而有效地产生饮用水。本演讲将重点介绍开发过程以及在资格和耐力测试期间获得的测试结果,以及舰载海上操作期间的数据和性能的一般观察结果。

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