Design waterwheel of hydropower on outfall condenser sebalang power plant

A. Fadhil Fairuzi, Indrayani, Fatahul Arifin
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Abstract

The utilization of residual energy in the electricity sector within conventional power plant environments such as Coal-Fired Power Plant remains suboptimal. Sebalang powerplant located in Sebalang hamlet, Tarahan village, Katibung district, South Lampung, with a power capacity of 2 x 100 MW employs coal as fuel and seawater as a media to generate steam and as a coolant in the powerplant cycle. The condenser cooling system at Sebalang powerplant operates on an open cycle, where seawater taken from the intake enters the condenser to cool and condense steam, then exits through the outfall and returns to the sea. The discharge flow of residual condenser cooling water through the outfall is 1.18 m3/s and currently remains unutilized. With a head of 1.5 meters, this potential can be converted into electrical energy, generating a power potential of 10.4 kW. The power output from this Micro Hydro Power Plant Waterwheel design can be utilized to supply the internal electricity needs of the power plant unit, thereby reducing operational unit self-consumption
塞巴兰电站出口冷凝器上的水力发电水车设计
在传统发电厂(如燃煤发电厂)的环境中,电力部门对剩余能源的利用仍未达到最佳状态。Sebalang 发电厂位于南楠榜加迪榜区 Tarahan 村 Sebalang 小区,发电能力为 2 x 100 兆瓦,以煤为燃料,以海水为介质产生蒸汽,并在发电厂循环中用作冷却剂。Sebalang 发电厂的冷凝器冷却系统采用开放式循环,海水从进水口进入冷凝器冷却和冷凝蒸汽,然后从排水管流出,返回大海。通过排污口排放的冷凝器剩余冷却水流量为 1.18 立方米/秒,目前仍未得到利用。在水头为 1.5 米的情况下,这种潜能可以转化为电能,产生 10.4 千瓦的功率潜能。该微型水力发电厂水车设计所输出的电能可用于满足发电厂机组的内部用电需求,从而减少运行机组的自我消耗。
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