{"title":"Pengantar","authors":"Jurnal Purbawidya","doi":"10.20961/prasasti.v2i1.314","DOIUrl":null,"url":null,"abstract":"Pipe as a tool to distribute fluid from the reservoir to the place of use. To carry out the installation of pipes required a piping system. Piping systems are widely used in industry, factories or transportation to distribute fluids. In fluid distribution there will be a loss of fluid energy due to resistance in the pipe. There are 2 types of flow losses, namely major losses and minor flow losses. This energy loss cannot be observed directly. This study aims to create and test a flow loss test apparatus or fluid friction apparatus to analyze flow losses and also things that affect fluid flow losses. used. The pipes used in this research are ¾ inch stainless steel pipe, 1/2 inch aluminum pipe and also ½ inch and ¾ inch PVC pipes. The fluid is flowed using a pump. The test is done by comparing the flow loss theoretically and by measurement. The results of the test showed that the largest loss value was on ½ inch aluminum pipe at 1200 L/h discharge, which was 0.517835671 m, while the lowest flow loss was found in ¾ inch stainless steel pipe with 800 L/h discharge, which was 0.040881764 m and the highest minor loss was obtained. on the gate valve with a discharge of 1200 L/h and a full opening of 0.735872 m. From the test, it is concluded that the major flow loss is influenced by the coefficient of friction of the pipe, the dimensions of the pipe and the flow velocity","PeriodicalId":31467,"journal":{"name":"Pubawidya Jurnal Penelitian dan Pengembangan Arkeologi","volume":"41 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2020-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Pubawidya Jurnal Penelitian dan Pengembangan Arkeologi","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.20961/prasasti.v2i1.314","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Pipe as a tool to distribute fluid from the reservoir to the place of use. To carry out the installation of pipes required a piping system. Piping systems are widely used in industry, factories or transportation to distribute fluids. In fluid distribution there will be a loss of fluid energy due to resistance in the pipe. There are 2 types of flow losses, namely major losses and minor flow losses. This energy loss cannot be observed directly. This study aims to create and test a flow loss test apparatus or fluid friction apparatus to analyze flow losses and also things that affect fluid flow losses. used. The pipes used in this research are ¾ inch stainless steel pipe, 1/2 inch aluminum pipe and also ½ inch and ¾ inch PVC pipes. The fluid is flowed using a pump. The test is done by comparing the flow loss theoretically and by measurement. The results of the test showed that the largest loss value was on ½ inch aluminum pipe at 1200 L/h discharge, which was 0.517835671 m, while the lowest flow loss was found in ¾ inch stainless steel pipe with 800 L/h discharge, which was 0.040881764 m and the highest minor loss was obtained. on the gate valve with a discharge of 1200 L/h and a full opening of 0.735872 m. From the test, it is concluded that the major flow loss is influenced by the coefficient of friction of the pipe, the dimensions of the pipe and the flow velocity
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引言
管道是将流体从储层输送到使用场所的工具。要进行管道安装,需要一个管道系统。管道系统广泛用于工业、工厂或运输中分配流体。在流体分布中,由于管道中的阻力会造成流体能量的损失。流动损失有两种,即大流动损失和小流动损失。这种能量损失是不能直接观察到的。本研究旨在制造并测试流动损失测试装置或流体摩擦装置,以分析流动损失及影响流体流动损失的因素。使用。在这项研究中使用的管道是3 / 4英寸的不锈钢管,1/2英寸的铝管,以及1/2英寸和3 / 4英寸的PVC管。这种液体是用泵输送的。通过对流动损失的理论对比和实测对比进行了试验。试验结果表明,流量为1200 L/h时,1 / 2英寸铝管流动损失最大,为0.517835671 m;流量为800 L/h时,3 / 4英寸不锈钢管流动损失最小,为0.040881764 m,损失最小。闸阀上,流量为1200l /h,全开度为0.735872 m。试验结果表明,主要流动损失受管道摩擦系数、管道尺寸和流速的影响
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