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Using value engineering to optimize flood forecasting and flood warning systems: Golestan and Golabdare watersheds in Iran as case studies

机译:使用价值工程优化洪水预报和洪水预警系统:伊朗的Golestan和Golabdare流域为案例研究

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摘要

Flood occurrence has always been one of the most important natural phenomena, which is often associated with disaster. Consequently, flood forecasting (FF) and flood warning (FW) systems, as the most efficient non-structural measures in reducing flood loss and damage, are of prime importance. These systems are low cost and the time required for their implementation is relatively short. It is emphasized that for designing the components of these systems for various rivers, climatic conditions and geographical settings different methods are required. One of the major difficulties during implementing these systems in different projects is the fact that sometimes the main functions of these systems are ignored. Based on a systematic and practical approach and considering the components of these systems, it would be possible to extract the most essential key functions of the system and save time, effort and money by this way. For instance, in a small watershed with low concentration and small lead time, the main emphasis should be on predicting and monitoring weather conditions. In this article, different components of flood forecasting and flood warning systems have been introduced. Then analysis of the FF and FW system functions has been undertaken based on the value engineering (VE) technique. Utilizing a functional view based on function analysis system technique (FAST), the total trend of FF and FW functions has been identified. The systematic trend and holistic view of this technique have been used in optimizing FF and FW systems of the Golestan province and Golabdare watersheds in Iran as the case studies.
机译:洪水的发生一直是最重要的自然现象之一,通常与灾难有关。因此,作为减少洪水损失和破坏的最有效的非结构性措施,洪水预报(FF)和洪水预警(FW)系统至关重要。这些系统成本低廉,实施所需的时间相对较短。要强调的是,为了针对各种河流,气候条件和地理环境设计这些系统的组件,需要不同的方法。在不同项目中实施这些系统的主要困难之一是,有时忽略了这些系统的主要功能。基于系统和实用的方法,并考虑这些系统的组件,可以提取系统最重要的关键功能,并以此节省时间,精力和金钱。例如,在一个浓度低,交货期短的小流域中,主要重点应放在预测和监测天气状况上。本文介绍了洪水预报和洪水预警系统的不同组成部分。然后基于价值工程(VE)技术对FF和FW系统功能进行了分析。利用基于功能分析系统技术(FAST)的功能视图,可以确定FF和FW功能的总体趋势。作为案例研究,已将该技术的系统趋势和整体观点用于优化Golestan省和Golabdare流域的FF和FW系统。

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