Adequacy Analysis Using UAV of Heavy Rainfall Disaster Reduction Facilities According to Urban Development in Republic of Korea

Author:

Song Youngseok1,Park Moojong2,Joo Jingul3

Affiliation:

1. Department of Fire and Disaster Prevention, Konkuk University, Chungju 27478, Republic of Korea

2. Department of Aeronautics and Civil Engineering, Hanseo University, Seosan 31962, Republic of Korea

3. Department of Civil Environmental Engineering, Dongshin University, Naju 582452, Republic of Korea

Abstract

Urban development is a project that enhances human life, but its hydrological impact increases runoff by expanding impervious areas. Furthermore, localized and intense rainfall resulting from the effects of climate change is exacerbating damage to urban areas. The Republic of Korea has established detention ponds as reduction facilities for heavy rainfall disasters, and the law stipulates that the impact of disasters that increase due to the development projects will remain unchanged from before. However, ensuring precision in millimeter or centimeter units during the design of reduction facilities is challenging. In this study, our aim is to assess the suitability of using unmanned aerial vehicles (UAVs) for the detention pond, a facility that reduces runoff resulting from urban development. The target area is a detention pond located in Innovation City, Ulsan Metropolitan City, Republic of Korea. We compared and analyzed design drawings and topographical data. The increased runoff due to the development project was 0.59 m3/s, and the effectiveness of disaster reduction was evaluated by the installation of a detention pond. The detention pond’s reduction effect was analyzed to be 1.16 m3/s for the design drawing and 1.57 m3/s for the topographical analysis. The detention pond currently in place in the target area was found to provide additional disaster reduction benefits compared to the original design plan. The findings of this study can be utilized in relevant laws and guidelines as a method to evaluate the suitability of future reduction facilities.

Funder

program of Research Program to Solve Urgent Safety Issues

National Research Foundation of Korea

Ministry of Science and ICT

Ministry of the Interior and Safety

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

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