PENGEMBANGAN MODEL ANALISIS SPASIAL UNTUK MENSIMULASIKAN RESPON HIDROLOGI

Asep Denih, Emas Kurnia, Umar Mansyur
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Abstract

Urban expansion is a major driving force altering local and regional hydrology. To explore these environmental consequences of urbanization this research would like to forecast the land-use change and assesses the long-term runoff water through hydrologic modeling. To know the detrimental effects of future disasters, especially drought, flood, and tropical storms, this research provided by a simulation technique, and based on two skenarios. First, simulation with a land-use change skenario. Second, simulation without a land-use change skenario. It provided by some parameters such as characteristics of catchments, land use, contour, river, soil, infiltration, and rainfall intensity. The objective of using different skenario is to know what kind of hydrological responses. Moreover, the outcomes would indicate that land use and climate change would likely be subjected to impacts the tremendous loss of life and damage due to excessive runoff and flooding. This is the primary watershed that affects the greater Jakarta urban zone, which has had increasingly severe flooding annually impacting and displacing hundreds of thousands of people. However, urbanization will considerably increase runoff water. Finally, the results of this research would have significant implications to support decision-makers, academia, and the wider public in preparing urban planning, water resources management, development of better regulations and their effective implementations. The techniques described in this proposed research can be used in other areas.
模拟流体反应的空间分析模型的发展
城市扩张是改变当地和区域水文的主要驱动力。为了探讨城市化对环境的影响,本研究希望通过水文模拟来预测土地利用变化和评估长期径流。为了了解未来灾害的有害影响,特别是干旱、洪水和热带风暴,这项研究提供了一种模拟技术,并基于两个情景。首先,利用土地利用变化情景进行模拟。第二,不考虑土地利用变化情景的模拟。它由集水区特征、土地利用、等高线、河流、土壤、入渗、降雨强度等参数提供。使用不同情景的目的是了解什么样的水文响应。此外,研究结果还表明,土地利用和气候变化可能会受到过度径流和洪水造成的巨大生命损失和破坏的影响。这是影响大雅加达市区的主要分水岭,该地区每年都发生日益严重的洪水,影响和流离失所数十万人。然而,城市化将大大增加径流。最后,这项研究的结果将对支持决策者、学术界和广大公众编制城市规划、水资源管理、制定更好的法规及其有效实施产生重大影响。本研究中描述的技术可以用于其他领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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