STUDI PENERAPAN KONSEP EKO HIDRAULIK UNTUK MITIGASI BANJIR DI SUNGAI PULISAN

The analysis began by finding the frequency of rain using the Log Pearson III method. The rain data used came from two rain posts, namely the Araren-Pinenek MRG rain post and the Maen Climatology rain post. The rainfall data used is the maximum daily rainfall data from 2002 to 2019. Rain flow model...

Full description

Bibliographic Details
Main Authors: Muhammad Mufli Fajar, Tiny Mananoma, Jeffry S. F. Sumarauw
Format: Article
Language:English
Published: STKIP PGRI Situbondo 2023-07-01
Series:Edusaintek
Subjects:
Online Access:https://journalstkippgrisitubondo.ac.id/index.php/EDUSAINTEK/article/view/944
_version_ 1797774510029537280
author Muhammad Mufli Fajar
Tiny Mananoma
Jeffry S. F. Sumarauw
author_facet Muhammad Mufli Fajar
Tiny Mananoma
Jeffry S. F. Sumarauw
author_sort Muhammad Mufli Fajar
collection DOAJ
description The analysis began by finding the frequency of rain using the Log Pearson III method. The rain data used came from two rain posts, namely the Araren-Pinenek MRG rain post and the Maen Climatology rain post. The rainfall data used is the maximum daily rainfall data from 2002 to 2019. Rain flow modeling on the HEC-HMS komputer program using the HSS Soil Conservation Services method, and for water loss with the SCS Curve Number (CN). For baseflow using the recession method. HSS SCS parameter calibration was performed before simulating flood discharge using peak discharge test. The calibrated parameters are lag time, curve number, recession constant, initial discharge and ratio to peak. For the limits of each parameter is adjusted to the standard values in the HEC-HMS komputer program. The peak discharge test results show 2.2 m3 / second. Then a flood discharge analysis was carried out with calibrated parameters using the HEC-HMS komputer program. The peak discharge results simulated each time are re-entered in the HEC-RAS komputer program, then simulating flow profiles including flow velocity and high elevation of the water table. The flood discharge plan used is the 25 years period of 24,5 m3/second by installing several Eco Hydraulic constructions such as vetiver grass, bush grass, bamboo plants, logs, and a combination of vetiver grass and logs. The flow speed of the existing cross-section with the application between vetiver grass and logs can be reduced by 62%. With the use of Eco Hydraulics, it can reduce and optimize flow speed and looks aesthetic considering Pulisan is a superpriority area
first_indexed 2024-03-12T22:21:11Z
format Article
id doaj.art-d4b89ddadce04e8a9773375614c4aa0e
institution Directory Open Access Journal
issn 1858-005X
2655-3392
language English
last_indexed 2024-03-12T22:21:11Z
publishDate 2023-07-01
publisher STKIP PGRI Situbondo
record_format Article
series Edusaintek
spelling doaj.art-d4b89ddadce04e8a9773375614c4aa0e2023-07-23T07:28:09ZengSTKIP PGRI SitubondoEdusaintek1858-005X2655-33922023-07-0111110.47668/edusaintek.v11i1.944STUDI PENERAPAN KONSEP EKO HIDRAULIK UNTUK MITIGASI BANJIR DI SUNGAI PULISANMuhammad Mufli Fajar0Tiny Mananoma1Jeffry S. F. Sumarauw2Universitas Sam RatulangiFakultas Teknik Prodi Magister Teknik Sipil, Universitas Sam RatulangiFakultas Teknik Prodi Magister Teknik Sipil, Universitas Sam Ratulangi The analysis began by finding the frequency of rain using the Log Pearson III method. The rain data used came from two rain posts, namely the Araren-Pinenek MRG rain post and the Maen Climatology rain post. The rainfall data used is the maximum daily rainfall data from 2002 to 2019. Rain flow modeling on the HEC-HMS komputer program using the HSS Soil Conservation Services method, and for water loss with the SCS Curve Number (CN). For baseflow using the recession method. HSS SCS parameter calibration was performed before simulating flood discharge using peak discharge test. The calibrated parameters are lag time, curve number, recession constant, initial discharge and ratio to peak. For the limits of each parameter is adjusted to the standard values in the HEC-HMS komputer program. The peak discharge test results show 2.2 m3 / second. Then a flood discharge analysis was carried out with calibrated parameters using the HEC-HMS komputer program. The peak discharge results simulated each time are re-entered in the HEC-RAS komputer program, then simulating flow profiles including flow velocity and high elevation of the water table. The flood discharge plan used is the 25 years period of 24,5 m3/second by installing several Eco Hydraulic constructions such as vetiver grass, bush grass, bamboo plants, logs, and a combination of vetiver grass and logs. The flow speed of the existing cross-section with the application between vetiver grass and logs can be reduced by 62%. With the use of Eco Hydraulics, it can reduce and optimize flow speed and looks aesthetic considering Pulisan is a superpriority area https://journalstkippgrisitubondo.ac.id/index.php/EDUSAINTEK/article/view/944Pulisan River, Flood, Eco Hydraulics.
spellingShingle Muhammad Mufli Fajar
Tiny Mananoma
Jeffry S. F. Sumarauw
STUDI PENERAPAN KONSEP EKO HIDRAULIK UNTUK MITIGASI BANJIR DI SUNGAI PULISAN
Edusaintek
Pulisan River, Flood, Eco Hydraulics.
title STUDI PENERAPAN KONSEP EKO HIDRAULIK UNTUK MITIGASI BANJIR DI SUNGAI PULISAN
title_full STUDI PENERAPAN KONSEP EKO HIDRAULIK UNTUK MITIGASI BANJIR DI SUNGAI PULISAN
title_fullStr STUDI PENERAPAN KONSEP EKO HIDRAULIK UNTUK MITIGASI BANJIR DI SUNGAI PULISAN
title_full_unstemmed STUDI PENERAPAN KONSEP EKO HIDRAULIK UNTUK MITIGASI BANJIR DI SUNGAI PULISAN
title_short STUDI PENERAPAN KONSEP EKO HIDRAULIK UNTUK MITIGASI BANJIR DI SUNGAI PULISAN
title_sort studi penerapan konsep eko hidraulik untuk mitigasi banjir di sungai pulisan
topic Pulisan River, Flood, Eco Hydraulics.
url https://journalstkippgrisitubondo.ac.id/index.php/EDUSAINTEK/article/view/944
work_keys_str_mv AT muhammadmuflifajar studipenerapankonsepekohidraulikuntukmitigasibanjirdisungaipulisan
AT tinymananoma studipenerapankonsepekohidraulikuntukmitigasibanjirdisungaipulisan
AT jeffrysfsumarauw studipenerapankonsepekohidraulikuntukmitigasibanjirdisungaipulisan