Estimated rate of karst aquifer development by MRC analysis and flood hydrograph components at Guntur Springs, Gunungsewu Karst Area, Indonesia

Understanding the stage of karst aquifer development (karstification) is of vital importance because this parameter can reflect the character of flow system release, from which relevant management patterns are derived. Master Recession Curve (MRC) construction is considered ideal for identifying at...

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Main Authors: Naufal Muhammad, Nugroho Adji Tjahyo, Cahyadi Ahmad, Haryono Eko, Widyastuti Margaretha, Agus Riyanto Indra, Ramadhan Fajri
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/60/e3sconf_icst2020_02007.pdf
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spelling doaj-57dd6a41aea34283857cc3be88b8fbe72021-04-02T16:49:14ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012000200710.1051/e3sconf/202020002007e3sconf_icst2020_02007Estimated rate of karst aquifer development by MRC analysis and flood hydrograph components at Guntur Springs, Gunungsewu Karst Area, IndonesiaNaufal MuhammadNugroho Adji TjahyoCahyadi AhmadHaryono EkoWidyastuti MargarethaAgus Riyanto IndraRamadhan FajriUnderstanding the stage of karst aquifer development (karstification) is of vital importance because this parameter can reflect the character of flow system release, from which relevant management patterns are derived. Master Recession Curve (MRC) construction is considered ideal for identifying at which stage karstification works because MRC relies on recession curves as its primary input. Recession curves are the most stable component of flow hydrographs in representing aquifer characteristics. The study focused on springs located in a karst hydrogeological subsystem, namely, Guntur Spring in the Panggang Hydrogeological Subsystem (Gunungsewu Karst Area). It was designed to determine (1) the flow characteristics and (2) the degree of karst aquifer development at Guntur Spring. It utilized a one-year flow hydrograph with a 30-minute logging interval as the main data. The flood hydrograph showed that a fissure system dominated the flow characteristics. Moreover, the MRC construction results indicated that the karstification level at Guntur Spring was 5.0, confirming the dominant fissure system and also signs of the recent development of conduit flows.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/60/e3sconf_icst2020_02007.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Naufal Muhammad
Nugroho Adji Tjahyo
Cahyadi Ahmad
Haryono Eko
Widyastuti Margaretha
Agus Riyanto Indra
Ramadhan Fajri
spellingShingle Naufal Muhammad
Nugroho Adji Tjahyo
Cahyadi Ahmad
Haryono Eko
Widyastuti Margaretha
Agus Riyanto Indra
Ramadhan Fajri
Estimated rate of karst aquifer development by MRC analysis and flood hydrograph components at Guntur Springs, Gunungsewu Karst Area, Indonesia
E3S Web of Conferences
author_facet Naufal Muhammad
Nugroho Adji Tjahyo
Cahyadi Ahmad
Haryono Eko
Widyastuti Margaretha
Agus Riyanto Indra
Ramadhan Fajri
author_sort Naufal Muhammad
title Estimated rate of karst aquifer development by MRC analysis and flood hydrograph components at Guntur Springs, Gunungsewu Karst Area, Indonesia
title_short Estimated rate of karst aquifer development by MRC analysis and flood hydrograph components at Guntur Springs, Gunungsewu Karst Area, Indonesia
title_full Estimated rate of karst aquifer development by MRC analysis and flood hydrograph components at Guntur Springs, Gunungsewu Karst Area, Indonesia
title_fullStr Estimated rate of karst aquifer development by MRC analysis and flood hydrograph components at Guntur Springs, Gunungsewu Karst Area, Indonesia
title_full_unstemmed Estimated rate of karst aquifer development by MRC analysis and flood hydrograph components at Guntur Springs, Gunungsewu Karst Area, Indonesia
title_sort estimated rate of karst aquifer development by mrc analysis and flood hydrograph components at guntur springs, gunungsewu karst area, indonesia
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description Understanding the stage of karst aquifer development (karstification) is of vital importance because this parameter can reflect the character of flow system release, from which relevant management patterns are derived. Master Recession Curve (MRC) construction is considered ideal for identifying at which stage karstification works because MRC relies on recession curves as its primary input. Recession curves are the most stable component of flow hydrographs in representing aquifer characteristics. The study focused on springs located in a karst hydrogeological subsystem, namely, Guntur Spring in the Panggang Hydrogeological Subsystem (Gunungsewu Karst Area). It was designed to determine (1) the flow characteristics and (2) the degree of karst aquifer development at Guntur Spring. It utilized a one-year flow hydrograph with a 30-minute logging interval as the main data. The flood hydrograph showed that a fissure system dominated the flow characteristics. Moreover, the MRC construction results indicated that the karstification level at Guntur Spring was 5.0, confirming the dominant fissure system and also signs of the recent development of conduit flows.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/60/e3sconf_icst2020_02007.pdf
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