Application of microtremor HVSR method for preliminary assessment of seismic site effect in Ngipik landfill, Gresik

This paper presents an investigation based on affected areas of earthquakes based on the micro-tremor horizontal-to-vertical ratio (HVSR) method around the Ngipik Landfill, Gresik. Ngipik landfill applies an Open dumping system with no protective layer to prevent groundwater pollution. Hence, the ef...

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Main Authors: Nurlita Fitri Siti, Asih Aryani Soemitro Ria, Dewa Warnana Dwa, Sutra Nila
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201819503017
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spelling doaj-acaa325899b94b49a3ea364ce7d625b92021-02-02T00:41:49ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011950301710.1051/matecconf/201819503017matecconf_icrmce2018_03017Application of microtremor HVSR method for preliminary assessment of seismic site effect in Ngipik landfill, GresikNurlita Fitri SitiAsih Aryani Soemitro RiaDewa Warnana DwaSutra NilaThis paper presents an investigation based on affected areas of earthquakes based on the micro-tremor horizontal-to-vertical ratio (HVSR) method around the Ngipik Landfill, Gresik. Ngipik landfill applies an Open dumping system with no protective layer to prevent groundwater pollution. Hence, the effect of the earthquake was investigated for preliminary assessment of leachate’s leakage. The micro-tremor measurements were performed by dividing the area into a grid with a 25m distance. The predominant frequency (f0) ranges between 1.1 and 3.65 Hz and the peak of HVSR (Am) varies from 2.04 to 7.16. The vulnerability index (kg) displayed the level of soil damage due to ground motions; the highest kg values signified the weaker zones during earthquakes and also indicated the leachate spread. The result of this paper might consider to seismic stability analysis of leachate recirculation landfill.https://doi.org/10.1051/matecconf/201819503017
collection DOAJ
language English
format Article
sources DOAJ
author Nurlita Fitri Siti
Asih Aryani Soemitro Ria
Dewa Warnana Dwa
Sutra Nila
spellingShingle Nurlita Fitri Siti
Asih Aryani Soemitro Ria
Dewa Warnana Dwa
Sutra Nila
Application of microtremor HVSR method for preliminary assessment of seismic site effect in Ngipik landfill, Gresik
MATEC Web of Conferences
author_facet Nurlita Fitri Siti
Asih Aryani Soemitro Ria
Dewa Warnana Dwa
Sutra Nila
author_sort Nurlita Fitri Siti
title Application of microtremor HVSR method for preliminary assessment of seismic site effect in Ngipik landfill, Gresik
title_short Application of microtremor HVSR method for preliminary assessment of seismic site effect in Ngipik landfill, Gresik
title_full Application of microtremor HVSR method for preliminary assessment of seismic site effect in Ngipik landfill, Gresik
title_fullStr Application of microtremor HVSR method for preliminary assessment of seismic site effect in Ngipik landfill, Gresik
title_full_unstemmed Application of microtremor HVSR method for preliminary assessment of seismic site effect in Ngipik landfill, Gresik
title_sort application of microtremor hvsr method for preliminary assessment of seismic site effect in ngipik landfill, gresik
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description This paper presents an investigation based on affected areas of earthquakes based on the micro-tremor horizontal-to-vertical ratio (HVSR) method around the Ngipik Landfill, Gresik. Ngipik landfill applies an Open dumping system with no protective layer to prevent groundwater pollution. Hence, the effect of the earthquake was investigated for preliminary assessment of leachate’s leakage. The micro-tremor measurements were performed by dividing the area into a grid with a 25m distance. The predominant frequency (f0) ranges between 1.1 and 3.65 Hz and the peak of HVSR (Am) varies from 2.04 to 7.16. The vulnerability index (kg) displayed the level of soil damage due to ground motions; the highest kg values signified the weaker zones during earthquakes and also indicated the leachate spread. The result of this paper might consider to seismic stability analysis of leachate recirculation landfill.
url https://doi.org/10.1051/matecconf/201819503017
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