Please use this identifier to cite or link to this item: https://repositori.uma.ac.id/handle/123456789/22356
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dc.contributor.advisorWulandari, Ernita-
dc.contributor.authorNainggolan, Unicolas Satria Oktavianus-
dc.date.accessioned2023-12-13T09:16:23Z-
dc.date.available2023-12-13T09:16:23Z-
dc.date.issued2023-08-
dc.identifier.urihttps://repositori.uma.ac.id/handle/123456789/22356-
dc.description101 Halamanen_US
dc.description.abstractKetersediaan material timbunan maupun kualitas material menjadi salah satu masalah dalam perencanaan sebuah bendungan terutama material inti bendungan yang harus kedap air. Desain bendungan harus aman terhadap rembesan maupun longsoran. Dengan aplikasi GeoStudio bendungan akan dimodelkan untuk mengamati stabilitas tubuh bendung terutama terhadap longsoran dan rembesan. Pemodelan I dimodelkan dengan material zona inti menggunakan material lempung borrow area hulu dan pemodelan II menggunakan material inti lempung borrow area hilir. Pemodelan III dan IV menggunakan material inti yang sama dengan penambahan lapisan material geomembrane antara zona transisi dan filter hulu. Geomembrane ditambahkan untuk mengamati pengaruh penggunaan terhadap stabilitas tubuh bendung.Tubuh bendung dianalisa pada kondisi saat tubuh bendung selesai dibangun, kondisi muka air banjir, kondisi muka air normal, kondisi muka air rendah dan kondisi saat terjadi penurunan muka air tiba-tiba. Pemodelan III dengan material lempung borrow area hulu dan dilapisi geomembrane antara zona transisi dan filter hulu merupakan desain dengan stabilitas yang paling baik dengan angka keamanan longsoran paling kritis yaitu 2.459 pada hilir bendung pada kondisi muka air banjir. Debit rembesan pada hilir bendung yaitu 0.0017 m³/dt/m dan debit rembesan maksimum yaitu 0.0026 m³/dt/m pada kondisi muka air banjir. The availability of embankment material and the quality of the material is one of the problems in planning a dam, especially the dam core material which must be watertight. The dam design must be safe against seepage and landslides. With the GeoStudio application, the dam will be modeled to observe the stability of the dam body, especially against landslides and seepage. Modeling I is modeled with core zone material using upstream borrow clay material and modeling II using downstream borrow clay core material. Modeling III and IV used the same core material with the addition of a layer of geomembrane material between the transition zone and the upstream filter. The geomembrane was added to observe the effect of use on the stability of the weir body. The weir body was analyzed under conditions when the weir body was completed, flood water level conditions, normal water level conditions, low water level conditions and conditions when there was a sudden drop in water level. Modeling III with upstream borrow clay material and geomembrane between the transition zone and upstream filter is the design with the best stability with the most critical avalanche safety number of 2.459 downstream of the weir under flood water level conditions. The seepage discharge downstream of the weir is 0.0017 m³/dt/m and the maximum seepage discharge is 0.0026 m³/dt/m under flood water level conditions.en_US
dc.language.isoiden_US
dc.publisherUniversitas Medan Areaen_US
dc.relation.ispartofseriesNPM;218110054-
dc.subjectGeomembraneen_US
dc.subjectSeepageen_US
dc.subjectSlopeen_US
dc.subjectStabilityen_US
dc.subjectLongsoranen_US
dc.subjectRembesanen_US
dc.subjectStabilitasen_US
dc.titleStudi Perbandingan Stabilitas Tubuh Bendung Dengan Material Inti Geomembrane Menggunakan Aplikasi Geostudioen_US
dc.title.alternativeComparative Study of Weir Body Stability with Geomembrane Core Material Using the Geostudio Applicationen_US
dc.typeThesisen_US
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