Model of Ciliwung River Flood Diversion Tunnel Using HEC-RAS Software

Author:

Nugroho Joko,Soekarno Indratmo,Harlan Dhemi

Abstract

As a coastal city which lies in lowland area, Jakarta is prone to flooding. One major river which flow through Jakarta is Ciliwung River. There are alternatives to reduce flood risk, such as: river capacity improvement, existing natural reservoir and polder system improvement, upstream reservoir construction, city drainage improvement, flood channel construction and flood diversion. This paper presents capacity analysis of a proposed flood diversion of Ciliwung River to Cipinang River. Cipinang River has its downstream end at Eastern Flood Canal (Kanal Banjir Timur, KBT). This diversion is based on the available capacity of KBT. A 1-D numerical hydraulic model using HEC-RAS based on a proposed design is used to assess the performance of the diversion system in any combination of upstream and downstream boundary condition. Simulations were done for steady condition. The results show that capacity of the system can be achieved for certain condition at upstream and downstream boundary. The effects at the downstream reach of Ciliwung and Cipinang River due to the diversion are also obtained.

Publisher

EDP Sciences

Subject

General Medicine

Reference6 articles.

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2. United States Army Corps of Engineers (USACE): Hydraulic Reference Manual v.4.1. Hydraulic Engineering Center, USA, (2010)

3. Modak S., Nagarnaik P., Flood Control And Prediction of Flood Using HEC-RAS – A Review, International Journal of Science and Research, ISSN (online): 2319-7064, 6 - Issue 3, (2017)

4. Kovacs S., Kiss A., Szekers J., Experiences In Application Of HEC-RAS Model Under Circumstances Of Flood Waves, Hazards, Vulnerability and Mitigation Measures, 47–58. J. Schanze et al. (eds.), Flood Risk Management, Springer (2006)

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