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KONSEP DESAIN TEKNOLOGI RAIN WATER HARVESTING SYSTEM DAN STORMWATER INFILTRATION TANK KAMPUS E UNTIRTA SINDANGSARI YANG BERKELANJUTAN (Studi Kasus : Gedung Fakultas Hukum)

BILAKONGA, CATHERINA (2023) KONSEP DESAIN TEKNOLOGI RAIN WATER HARVESTING SYSTEM DAN STORMWATER INFILTRATION TANK KAMPUS E UNTIRTA SINDANGSARI YANG BERKELANJUTAN (Studi Kasus : Gedung Fakultas Hukum). S1 thesis, Fakultas Teknik Universitas Sultan Ageng Tirtayasa.

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Abstract

Climate crisis is one of the issues that was concern throughout the world because it has a broad impact on the lives of people on earth, one of the impacts is the reduced quantity of water. campus that is part of the education sector, is estimated to have the potential to reduce the impact of the climate crisis by implementing the concept of sustainable development, which is one of the goals of the smart and green campus concept implemented by Sultan Ageng Tirtayasa University. As a form of handling this problem, the implementation of rainwater treatment is carried out by knowing the magnitude of the need and the volume of water availability that can be accommodated, obtaining the design of rainwater harvesting tanks and infiltration wells, and knowing the percentage of saving the use of clean water in the Law Faculty Building, Sultan Ageng Tirtayasa University with the aim of overcoming the impact of the climate crisis and implementing the concept of a smart and green campus. Rainwater management is carried out using a ground reservoir Rainwater Harvesting system to collect rainwater and when excess water volume will be dumped into the Infiltration tank. RWHS calculation is done by calculating the building's water needs, calculating the amount of savings, designing plumbing pipes using the EPANET 2.0 application, and infiltration analysis using the Green�Ampt theory. Water is channeled from the roof to the tank with a 150 mm Galvanized pipe and a pipe from the tank to the Law Faculty building made of PVC with a diameter of 19.05 mm. The results of this study show that the volume of rainwater supply that can be harvested is 922.65 m3/year, and the total water demand for the law faculty building is 803,91 m3/year with a rainwater harvesting tank capacity of 322.990 m3, a savings of 12% is obtained while maximum infiltration that occurs is using the main material for Sigma tanks (modular tanks) made from Polypropylene.

Item Type: Thesis (S1)
Contributors:
ContributionContributorsNIP/NIM
Thesis advisorWIGATI, RESTU198209252010122002
Thesis advisorPURNADITYA, NGAKAN PUTU198909142019031008
Additional Information: Krisis iklim merupakan salah satu isu yang menjadi perhatian global karena berdampak luas terhadap kehidupan makhluk di bumi, salah satunya adalah berkurangnya kuantitas air. Lingkungan kampus yang merupakan bagian dari sektor pendidikan ditaksir dapat berpotensi mengurangi dampak krisis iklim dengan mengimplementasikan konsep sustainable development yang merupakan salah satu tujuan dari konsep smart and green campus yang diterapkan oleh Universitas Sultan Ageng Tirtayasa. Sebagai bentuk penanganan dari masalah tersebut, maka dilakukan penerapan pengolahan air hujan dengan mengetahui besarnya kebutuhan dan volume ketersediaan air yang dapat ditampung, mendapatkan desain tampungan pemanenan air hujan dan sumur resapan, dan mengetahui besarnya persentase penghematan pemakaian air bersih pada Gedung Fakultas Hukum Universitas Sultan Ageng Tirtayasa dengan tujuan untuk mengatasi dampak dari krisis iklim serta menerapkan konsep smart and green campus. Pada pengelolahan air hujan ini dilakukan menggunakan sistem Rainwater Harvesting (Pemanenan air hujan) ground reservoir untuk menampung air hujan dan ketika volume air berlebih akan dilimpaskan menuju Infiltration tank. Perhitungan RWHS dilakukan dengan menghitung kebutuhan air gedung, menghitung besar penghematan, perancangan pipa plumbing menggunakan aplikasi EPANET 2.0., dan analisis infiltrasi menggunakan teori Green-Ampt. Air dialirkan dari atap menuju tanki dengan pipa berbahan Galvanis 150 mm serta pipa dari tanki menuju gedung Fakultas Hukum berbahan PVC berdiameter 19,05 mm. Hasil penelitian ini menunjukan volume suplai air hujan dapat dipanen sebesar 922,65 m3/tahun., dan total kebutuhan air gedung fakultas hukum sebesar 803,91 m3/tahun dengan kapasitas bak penampung rain water harvesting sebesar 322,990 m3, didapatkan penghematan sebesar 12% sedangkan infiltrasi maksimal yang terjadi adalah menggunakan material utama Sigma tank (tanki modular) berbahan dasar Polypropylene.
Subjects: T Technology > TA Engineering (General). Civil engineering (General)
Divisions: 03-Fakultas Teknik
03-Fakultas Teknik > 22201-Jurusan Teknik Sipil
Depositing User: Ms Catherina Bilakonga
Date Deposited: 12 Sep 2023 11:44
Last Modified: 12 Sep 2023 11:44
URI: http://eprints.untirta.ac.id/id/eprint/29551

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