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Lesson learned - The operation of the pilot scale geothermal power plant 3MW - Kamojang, Indonesia

机译:经验教训 - 飞行员规模地热发电厂3MW - 康泉,印度尼西亚

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BPPT has developed and operated a 3 MW Geothermal Power Plant (GPP) of a condensing type technology in Kamojang, West Java Indonesia, which is the first prototype GPP manufactured by Indonesian companies. The BPPT's pilot plant was designed based on the geothermal steam field of the KMJ-68 well. The pilot plant becomes an early stage for developing wellhead type GPP in Indonesia. The wellhead GPP can meet with the capability of local manufacturers in the turbine and generator. The local content of BPPT's pilot plant has reached 63.14 %. This paper discusses the design of Process Flow Diagrams (PFD), performance, and reliability of this plant during continuous synchronous testing to the 20 kV local power grid on November 21-25, 2019. This test is intended to fulfill the requirements to get a Certificate of Operation (SLO). The proposed SLO is for operation at a nominal power of 2 MW considering the limited capacity of the KMJ 68 well. As a technical requirement to obtain the SLO referred to, the plant must be operated continuously for 3 x 24 h in a power range of 1.8-2.2 MW. The utilization efficiency of the GPP was 29 %, which quite good considering dry steam geo-fluids condition. The specific steam consumption (SSC) achieved 14 kg/kWh. The plant still has an opportunity for improving efficiency by reducing the pressure loss in the steam strainer, increasing the condenser vacuum, and improving the turbine design and fabrication. The important aim in this testing was that the plant has operated by following the electricity demand fluctuation in the 20 kV PLN grid. This testing progress becomes a promising stage for the development of GPP's equipment with local manufactures.
机译:BPPT在西爪哇省印度尼西亚的Kamojang中开发和经营了一家3 MW地热电厂(GPP),该技术是印度尼西亚的java印度尼西亚的第一个由印度尼西亚公司制造的第一批GPP。 BPPT的试验工厂是根据KMJ-68的地热蒸汽场设计的。试点工厂成为在印度尼西亚开发井口类型GPP的早期阶段。井口GPP可以满足涡轮机和发电机的局部制造商的能力。 BPPT的试点工厂的当地内容已达到63.14%。本文在2019年11月21日至25日在持续同步测试期间讨论了该工厂的工艺流程图(PFD),性能和可靠性的设计。该测试旨在满足所需的要求操作证书(SLO)。所提出的SLO用于以2 MW的标称功率运行,考虑到KMJ 68的有限容量。作为获得所提到的SLO的技术要求,工厂必须在1.8-2.2 MW的功率范围内连续运行3×24小时。 GPP的利用效率为29%,考虑到干蒸汽地质流体条件非常好。特定的蒸汽消耗(SSC)达到14公斤/千瓦时。该工厂仍然有机会通过减少蒸汽过滤器中的压力损失,增加冷凝器真空,提高涡轮机设计和制造来提高效率。该测试的重要目标是该工厂通过遵循20 kV PLN网格中的电力需求波动来操作。该测试进展成为GPP与当地制造商的设备的有希望的阶段。

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