可持续的综合农村水管理,重点是网络优先级,家庭水处理和实时反馈

Raghavendra Kumar Raya, Soumya Kar, D. Kumar, Rajiv Gupta
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引用次数: 0

摘要

与城市地区相比,农村水基础设施管理是农村地区可持续生活的一个重要方面,是一个被忽视的主题。例如,多种城市研究,如综合城市水管理(IUWM)和水敏感城市设计(WSUD),讨论了水、土地和资源的结构化管理,以获得最大的利润和社会效益。然而,许多农村水基础设施缺乏适当的规划、协调和监测。此外,低层应用决策的最小化导致了农村水源的低效率。在农村地区长期水质检测和储水连续监测方面存在研究空白。目前的研究旨在开发一个分散的系统,称为可持续综合农村水管理(SIRWM),通过利用雨水收集(RWH)作为印度拉贾斯坦邦的一个研究地区的主要来源,克服困扰农村地区的挑战。siwm的总体设置目标是减少干旱地区对地下水资源的过度依赖。该研究分为五个部分,依次为调查和数据收集、网络优先排序、使用建筑信息模型(BIM)工具实施RWH系统、在家庭中安装滤水器,以及在研究区域选定的社区中通过交互式语音应答系统(IVRS) (android应用程序)收集实时反馈。将所有这些组成部分结合起来,就能实现强有力的农村水管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Sustainable Integrated Rural Water Management with emphasis on Network Prioritization, Household Water Treatment and Real-Time Feedback
Rural water infrastructure management, an essential aspect of sustainable living in rural areas, is an ignored subject compared to urban areas. For instance, multiple urban studies, such as integrated urban water management (IUWM) and water sensitive urban design (WSUD), discuss the structured management of water, land, and resources for acquiring the most lucrative and societal benefits. However, many rural water infrastructures lack proper planning, coordination, and monitoring. Besides, minimal applied decision making at lower levels misleads to the inefficiency of rural water sources. Research gaps exist in long term water quality testing and continuous monitoring of stored water in rural areas. The current study aims to develop a decentralized system, termed Sustainable Integrated Rural Water Management (SIRWM), for overcoming the challenges plaguing rural areas by utilizing rainwater harvesting (RWH) as the primary source in a study area in Rajasthan, India. The overall setup of the SIRWM targets to diminish over-reliance on groundwater sources in areas facing drought. The study comprises five segments, in the sequential order of survey and data collection, network prioritization, implementation of RWH system using Building Information Modelling (BIM) tools, installation of water filters at households, and collection of real-time feedback through interactive voice response system (IVRS) (an android application) in a selected community of the study area. The integration of all these components results in achieving a robust rural water management.
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