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Integration of Water Supply, Conduit Hydropower Generation and Electricity Demand

机译:供水,管道水力发电和电力需求的整合

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摘要

South Africa is acknowledged to be not particularly endowed with the best hydropower conditions as it might be elsewhere in Africa and the rest of the world, however, large quantities of raw and potable water are conveyed daily under either pressurized or gravity conditions over large distances and elevations. There exists conduit hydropower generation potential in the water supply and distribution systems belonging to municipalities, water supply utilities and mines. Bloemwater, a water utility, constructed a stand-alone turbine, based on the available pressure and flow which generates a constant output ranging between 55 and 96 kW and when sufficient, supplies the head-office. Initially a manual changeover was utilized to switch between the hydropower and the local electricity supplier when the hydropower was insufficient to meet the demand i.e. switching of the full load from the one source to the other. To maximize the utilization of the hydropower, an automatic change over panel was developed to deal with the variable electricity demand from the office. The office buildinga??s electrical distribution was divided into different distribution boards to allow each sector to be supplied and switched individually with 6, PLC controlled, motorized change-over switches. The PLC constantly evaluates and subsequently executes switching actions so that Bloemwater can utilize the maximum renewable hydropower, but also limits power interruptions to a minimum because of these switching actions. This technical paper describes the development of this conduit hydropower plant by evaluating the interrelationship of water supply, electricity demand and operating cycles, providing Bloemwater with the optimum solution with increased resiliency and sustainability.
机译:公认的南非并非特别具有最佳的水力发电条件,非洲和世界其他地方可能没有这种优势,但是,每天在加压或重力条件下,长距离和远距离输送大量的原水和饮用水。高程。在市政,供水公用事业和矿山的供水和分配系统中,存在管道水力发电的潜力。自来水公司Bloemwater根据可用的压力和流量构造了一个独立的涡轮机,该涡轮机可产生55至96 kW的恒定输出功率,并在足够时为总部提供电源。最初,当水电不足以满足需求(即将满负荷从一个电源切换到另一个电源)时,利用手动转换在水电和本地电力供应商之间进行切换。为了最大程度地利用水力发电,开发了一个自动转换面板,以应对办公室中不断变化的电力需求。办公楼的配电被分为不同的配电板,以使每个部门都可以通过6个由PLC控制的电动转换开关单独供电和切换。 PLC不断评估并随后执行切换操作,以便布隆特沃特公司可以利用最大的可再生水力发电,但由于这些切换操作,还可以将电源中断的影响降至最低。该技术文件通过评估供水,电力需求和运行周期之间的相互关系,为布隆姆特沃特(Bloemwater)提供具有增强的弹性和可持续性的最佳解决方案,来描述该导管式水力发电厂的发展。

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