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"An analysis of the conservative properties of shallows water equations is presented,focused on the concistency of their numerical solution with the conservation laws of mass and momentum...."
Artikel Jurnal  Universitas Indonesia Library
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Mohamed Abdelrehim Selim Ibrahim Elshobaki
"ABSTRACT
: In this paper, the Riemann solution of an extended Riemann problem in channel
networks is presented. The Riemann problem at a junction network is well defined in the
literature. However, it is limited to symmetric networks. Here, we extend the Riemann problem
to non-symmetric networks such that neither the channel width equality nor the discharge
equality are assumed. The Riemann solution is given under subcritical flow conditions to ensure
the existence and uniqueness of the solution at the junction. Taking into account the mass
and energy conservation laws, the necessary conditions for the Riemann solution are drawn.
The results are summarized in a theorem. The theorem is illustrated with a set of numerical
examples.
In order to perform a one-dimensional simulation in channel networks, the inner boundary
conditions at the junction (i.e., the channel intersection point) are required. It has turned out
that the classical models (i.e., the Equality, Gurram, Hsu models) that have been used to supply
such a boundary suffer from many drawbacks.
Thus, here we propose to use the Riemann solution at the junction networks to provide
proper boundary conditions. Then, we compare all the junction models together. The junction
models are validated against experimental results found in the literature for steady state flows.
Generally, the Riemann model shows good results in matching the experimental data. In
particular, the Riemann model shows the best results when the bottom discontinues at the
junction. For the unsteady state flows, we perform prototype case studies to test the junction
models in the channel networks, and the numerical solutions are compared with the analytical
solutions. The Riemann model continues to show the best results that agree with the analytical
solutions. However, the validation of the junction models in the unsteady state flows remains
for future work due to the limited amount of real data."
Gdansk: TASK, 2017
600 SBAG 22:1 (2018)
Artikel Jurnal  Universitas Indonesia Library
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Cortazar, Julio
New York: Avon Books, 1975
863.64 COR h
Buku Teks SO  Universitas Indonesia Library
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Katsnelson, Boris
"Shallow water acoustics (SWA), the study of how low and medium frequency sound propagates and scatters on the continental shelves of the worlds oceans, has both technical interest and a large number of practical applications. Technically, shallow water poses an interesting medium for the study of acoustic scattering, inverse theory, and propagation physics in a complicated oceanic waveguide. Practically, shallow water acoustics has interest for geophysical exploration, marine mammal studies, and naval applications. Additionally, one notes the very interdisciplinary nature of shallow water acoustics, including acoustical physics, physical oceanography, marine geology, and marine biology. In this specialized volume the authors, all of whom have extensive at-sea experience in US and Russian research efforts, have tried to summarize the main experimental, theoretical, and computational results in shallow water acoustics, with an emphasis on providing physical insight into the topics presented."
New York: Springer, 2012
e20425225
eBooks  Universitas Indonesia Library
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"Arus air dangkal diatur dalam persamaan gelombang air dangkal, dikenal sebagai sistem Saint-Venant. Penelitian ini menyajikan metode finite volumeyang digunakan untuk menyelesaikan persamaan gelombang air dangkal dua dimensi dan bagaimana metode finite volumediimplementasikan dalam perangkat lunak ANUGA. Metode finite volumeadalah metode numerik yang mendasari perangkat lunakANUGA. ANUGA sendiri adalah perangkat lunak open source yang dikembangkan oleh Australian National University(ANU) dan Geoscience Australia (GA). Perangkat lunak ini menggunakan metode finite volumedengan diskritisasi domain segitiga dalam proseskomputasi. Empat uji kasus digunakan untuk mengevaluasi kinerja perangkat lunak. Secara keseluruhan, ANUGA adalah perangkat lunak yang robust untuk mensimulasikan dua dimensi aliran arus air dangkal.

Abstract
Shallow water flows are governed by the shallow water wave equations, also known as the Saint-Venant system. This paper presents a finite volume method used to solve the two-dimensional shallow water wave equations and how the finite volume method is implemented in ANUGA software. This finite volume method is the numerical method underlying the software. ANUGA is open source software developed by Australian National University (ANU) and Geoscience Australia (GA). This software uses the finite volume method with triangular domain discretisation for the computation. Four test cases are considered in order to evaluate the performance of the software. Overall, ANUGA is a robust software to simulate two-dimensional shallow water flows."
Australia National University, Canberra. Mathematical Sciences Institute, 2012
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Artikel Jurnal  Universitas Indonesia Library
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Nacorda, Hildie Maria
Leiden: CRC Press/Balkema, 2008
577.694 NAC b
Buku Teks  Universitas Indonesia Library
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Fakultas Teknik Universitas Indonesia, 2004
S37495
UI - Skripsi Membership  Universitas Indonesia Library
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Nunik Sri Wahjuni
"Surakarta is the second biggest city in Central Java. The expansion of the city is directed to the north and south. The expansion to the north side is encouraged by the existing Mojosongo PERUMNAS. The Mojosongo PERUMNAS has been developed to the northeast area approaching the Putri Cempo final waste disposal site.
The final waste disposal site is located in the area that consists of volcanic stones, big conglomerates, lava precipitation, tufa, calcareous, and sand stone. The shallow well water in the Nojosongo PERUMNAS tends to be infiltrated by either the leachate or run off from Putri Cempo final waste disposal site, so that the water quality will, of course, be decreasing and potentially will in turn affect the health of community.
Clean water is an essential necessity for human being. Only 40% of the urban and semi urban population and 25% of the rural population in Indonesia have access to a reliable supply of clean water. In Surakarta, only a. small part of the population has been supplied with potable water.
The purpose of this research is to identify the influence of Putri Cempo final waste disposal site towards the water quality of nearby wells. The quality of well water is compared with water quality criteria from the Health Ministry through its Regulation Number 418/MENKES/PER/IBC/1890.
The Location of observed shallow wells was purposely chosen. The sample of well water was collected on two occasions (in the months of July and September). The samples were collected from twelve shallow wells: eight community shallow-wells which are used for daily activities; one unused well; and three other shallow wells purposely made for this re-search. Sampling process was conducted by using standard equipment from Balai Telrnik Kesehatan Lingkungan Yogyakarta (BTKL Yogyakarta). Samples were analyzed in BTKL Yogyakarta, the examined characteristics were: total suspended solids, iron, manganese, chloride, hardness, sodium, sulphate, BOD, COD, Pb, Cd, Cu and Cr. T Test has been employed to analyze sample collected in the month of July and September. The degree of existing parameters and the distance of the wells have been analytically described.
The results indicate that two parameters in lea-chafe (iron and manganese) have exceeded the threshold value of Waste Water Standard as stated in KEP-03/MEIflcLH/I I/ 1991. The wells number 1,2 and 3 which have the distance of 10 in.50 m and 100 m from the final waste disposal respectively have been affected by the lea-chafe; iron and manganese have already exceeded the thres hold value as stated in the regulation number 4l6/MENKES/PER/I/1990 concerning clean water. The content of pollutants has been highest in well number 1 that have the distance of 10 m. T test analysis indicated that season does not affect the quality of well water around the final waste disposal site. Bacteria Escherichia coil was found in high degree in every examined wells. This certify that those 12 examined well water does not fulfill a requirement for potable water. This has got to be seriously paid attention.
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Jakarta: Program Pascasarjana Universitas Indonesia, 1996
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UI - Tesis Membership  Universitas Indonesia Library
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