首页> 外文期刊>E3S Web of Conferences >Study of the use of a micro hydro in knockdown container completed with a cylindrical form housing of francis hydraulic turbine to support the development program of energy self-sustainability for remote and isolated areas in Indonesia
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Study of the use of a micro hydro in knockdown container completed with a cylindrical form housing of francis hydraulic turbine to support the development program of energy self-sustainability for remote and isolated areas in Indonesia

机译:研究在组合式集装箱中使用微型水力发电设备并配备了混流式水轮机的圆柱形壳体,以支持印度尼西亚偏远和偏远地区能源自给自足的发展计划

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With an intention to reduce the consumption of energy from fossil fuels and the CO2 emission in relation with the climate change solution, Indonesian Government has targeted that the role of the New and Renewable Energy (NRE) resources reaches at least 23% , or about 27 GW , in 2025 and it is expected to increase to the extent of about 134 GW in 2050 within the scenario of mixed energy supply. Geographically Indonesia has many remote and isolated areas with lack of appropriate infrastructure supports. But in the most of the areas, huge potential of new and renewable energy are available such as hydro energy is about 75 GW, biomass energy is about 32 GW and bio fuel is about 32 GW. The total utilization of the energy from small hydro energy up to this year for example is only about 300 MW. The significant obstacle in optimizing the utilization of small hydro energy in the areas is mainly on the infrastructure conditions and the local manufacture capabilities. Difficulties in mobilization of experts, skill worker , parts and constructions material result in very time consuming and costly for site construction.In this research a hydro turbine built in knock down container completed with a Francis turbine in cylindrical form housing is proposed and reported its performance on implementation. The hydro in a knock down container concept comes from the idea to manufacture hydro power solutions in a knock down container, readymade to be transported to installation sites. It can be easily manufactured in a quality controlled and cost effective environment, transported and installed in remote areas, to operate and maintain with minimal amount of equipment.It shows that the implementation of the unit in a remote area has reduced the total site construction time by 1/3 compared to the predicted one with conventional unit. The performance of the Francis turbine with cylindrical form housing has shown comparable with the conventional one which has volute form housing. The superiority was even more pronounced by introducing a deflection insert in its input flow channel. The insertion was capable to create more distributed flow into the runner. Efficiency of the turbine up to 80% was performed in this research. Local manufacture for turbine usually use many craft work and welding to built a volute form housing for the Francis turbine. The cylindrical form housing here has also proven significantly in reducing the time and price for the turbine manufacturing process.
机译:为了减少与气候变化解决方案相关的化石燃料能源消耗和CO2排放,印度尼西亚政府的目标是新能源和可再生能源(NRE)的作用至少达到23%,即约27%到2025年,GW预计将在混合能源供应的情况下增加到2050年的134 GW。从地理上看,印度尼西亚有许多偏远和偏远地区,缺乏适当的基础设施支持。但是在大多数地区,新能源和可再生能源的潜力巨大,例如水能约为75 GW,生物质能约为32 GW,生物燃料约为32 GW。例如,到今年为止,小水电的能源总利用率仅为300兆瓦左右。优化该地区小水电利用的主要障碍主要在于基础设施条件和当地制造能力。专家,技术工人,零件和建筑材料的动员困难,导致现场施工非常耗时且成本高昂。在本研究中,提出了一种在拆箱式水箱中建造的水轮机,并在圆筒形外壳中安装了混流式水轮机,并报告了其性能。实施。组合式集装箱中的水力发电概念来自在组合式集装箱中制造水力发电解决方案的想法,该方案可随时运输到安装地点。它可以在质量控制和具有成本效益的环境中轻松制造,可以在偏远地区运输和安装,以最少的设备数量进行操作和维护,这表明在偏远地区实施该装置可以减少现场总建设时间与传统单位的预测值相比降低了1/3。具有圆柱形外壳的弗朗西斯涡轮机的性能已显示出与具有蜗壳外壳的传统涡轮机相当。通过在其输入流道中引入偏转插件,其优越性更加明显。插入能够在流道中创建更多的分布式流。在这项研究中,涡轮机的效率高达80%。涡轮机的本地制造通常使用许多工艺和焊接来为弗朗西斯涡轮机建造蜗壳形壳体。在此,圆柱形外壳在减少涡轮机制造过程的时间和价格方面也得到了证明。

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