To Save Water Using Pervious Concrete and Measure the Underground Water Table Level Using Internet of Things and Cloud Computing

C. Rekha, R. Jegatha, P. Sharmila, B. R. Jyothi
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Abstract

Rain Water Harvesting is expected to play a major role in bringing depleted water levels up. There is a law of nature that conserving water will aggrandize farming in regions where there is a need for water even to survive. The high utilization of water and land for the developmental area has led to the scarcity of water resources since cutting down trees and deforestation, and it has also jeopardized the world's food security. Recent technological developments have led to improvements in rainwater harvesting techniques and to recovery from disastrous natural calamities like floods, heavy rain which will help and guarantee the availability of food for thegrowing population and save lots of life. Thus, from maiden methodologies to penultimate in present also in future. This system is prospective to improve food security, peculiarly in developing countries also to save many lives from great catastrophizes of nature. Thus, here comes the solution that emerges with the technology of the Internet of Things we can monitorthe underground water level and the usage when there is a scarcity of water the underground water is fetched and used when needed. The water is saved with the help of pervious concrete which is a permeable concrete in which it absorbs water in tonnes and saves underground. To avoid the stagnant of water also to save the rainwater. It is directly connected with pipes and tanks underground also the process is similar to rainwater harvesting collecting and used when needed. This methodology is highly suitable in Metropolitan countries to recharge the needs faced due to lack of water. While emphasizing other methods of draining water systems this pervious concrete not only absorbs water, also reduces water pollution through direct intake offreshwater since it has pervious layers to filter and makes the water ease to use. It is then collected and stored in the tank fill underground, further even treated and used for drinking purposes too. Thus the collected information is stored in the cloud with the help of cloud computing can be retrieved when there is a need to know the statistical increase in the underground water table.
利用透水混凝土节水,利用物联网和云计算测量地下水位
雨水收集预计将在提高枯竭的水位方面发挥重要作用。在需要水的地区,节约用水会扩大农业规模,这是自然规律。由于开发地区对水和土地的高度利用,导致了由于砍伐树木和森林砍伐而导致的水资源短缺,也危及了世界粮食安全。最近的技术发展导致了雨水收集技术的改进,并从洪水、暴雨等灾难性自然灾害中恢复过来,这将有助于并保证为不断增长的人口提供食物,并挽救许多生命。因此,从最初的方法论到现在的倒数第二,也是将来的倒数第二。这一系统有望改善粮食安全,特别是在发展中国家,也有望从巨大的自然灾害中拯救许多生命。因此,随着物联网技术的出现,我们可以监控地下水位和使用情况,当缺水时,地下水被提取并在需要时使用。在透水混凝土的帮助下节约了水,这是一种可渗透的混凝土,它可以吸收吨水并保存在地下。避免了积水也节约了雨水。它与地下管道和储罐直接相连,过程类似于雨水收集,并在需要时使用。这种方法非常适用于大都市国家,以补充由于缺水而面临的需求。在强调其他排水系统方法的同时,这种透水混凝土不仅可以吸收水分,还可以通过直接吸入淡水来减少水污染,因为它有透水层来过滤,使水易于使用。然后收集并储存在地下的水箱中,进一步处理并用于饮用。这样,当需要了解地下水位的统计增长时,可以通过云计算将收集到的信息存储在云中进行检索。
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