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Analysis of Spring Development and Gravity Flow System to Capture Water for Local Communities

机译:春天开发和重力流动系统分析,以捕获当地社区水

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Springs as water sources are relatively inexpensive but highly susceptible to contamination since they are fed by shallow groundwater. Proper spring development helps protect the water from contamination. This study presents an analysis and design of spring development including the type of broncaptering/collecting wall, the dimension for the spring box and the conduction line. In addition, a guideline on “Springwater Construction” published by the Ministry of Public Works has been used in this design. A concentrated spring in Wates, Magelang, Central Java is used as a case study. The design calls for the collection of water from a spring using sets of broncaptering and a spring box, then piping it by gravity a distance of 5.1 kilometers to Van Lith Senior High School. Analysis was done using a manual calculation, which is subsequently compared to the result of HYDROFLO 3 software. Results show that the spring with a flow rate of 0.12 litre/s (manual) and 0.17 litre/s (software) will be collected into a 5 m3 volume of spring box. The spring box with a +543 m water surface elevation is being supplied to Van Lith +384 m ground elevation using a uniform PVC pipelines with a ? inch of diameter.
机译:泉水作为水源相对便宜,但非常易受污染,因为它们被浅地下水喂养。适当的春季发展有助于保护水免受污染。本研究介绍了弹簧开发的分析和设计,包括支架/收集墙的类型,弹簧盒的尺寸和传导线。此外,在本设计中使用了公共工程部出版的“春天建筑”指导方针。在中爪哇省的山羊,中爪哇省的一个集中的春天被用作案例研究。设计要求使用一组铜盖板和弹簧盒从弹簧中收集水,然后通过重力向van Lith高中留出5.1公里的距离。使用手动计算进行分析,随后与Hydroflo 3软件的结果进行比较。结果表明,流量为0.12升(手动)和0.17升(软件)的弹簧将被收集到5 M3体积的弹簧箱中。使用均匀的PVC管道提供+543米水面高度的弹簧盒,用均匀的PVC管道提供给Van Lith +384 M浇口升高?英寸直径。

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