GEOSPATIAL DISTRIBUTION OF CITY INFRASTRUCTURE FOR THE PRACTICAL APPLICATION OF HEAT PUMPS

M. Kunytskiy
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Abstract

Use of water resources and wastewater treatment on a global scale. For various areas of use, appropriate water quality and purification is required. But in connection with the ecological situation in various countries of the world and the economic situation, which is developing in 2023 and beyond, it is worth noting that it leads to a global emergency. Instability of wastewater treatment parameters in various regional and global basins. The obsolescence of water purification processes and mechanisms prompts humanity to search for new methods of purification and disposal of accumulated pollution. The financial sector is experiencing a significant downturn and is pushing global stock exchanges into economic depression and the possible collapse of currency charters in the system of central banks. The change in the reserve currency and the value of currencies in the world financial sphere is already setting a new trend in the distribution and redistribution of economic markets. The further development of technology and science in general requires the search for new funding sectors, platforms for the use of financial niches and a globally accessible calculation and earning sector for scientists. Heat recovery and wastewater treatment is becoming a key issue in the field of water resources. Among the local sources of purification, which are gaining great popularity and special need in our country. Biological processes of water purification are quite dependent on temperature changes. It has been observed that when there is a rapid drop in temperature over a period of several hours, the hydraulic retention of the CB acts as a buffer for the temperature in the tanks, resulting in the stabilization of the biological process. In the research, the search for a project with a quick payback period and low cost with provision of hot water supply appears. Implementation of technologies for utilization of heat from the environment and income for the benefit of communities and condominiums. The further calculation of the project should have a tendency, regarding the universality and practicality of its implementation, to be economically competitive and to bring improvements to the public sector. One of the first steps in the development of networks is the need for data. Work with data can be carried out in two ways: visualization and arrangement of data based on tabular forms in combination with existing maps, as well as with the development of a spatial display of objects, in combination with attributive data, for other operations and system interaction. Based on the data, it is possible to determine the location of boiler houses, CTP and ITP, as well as the distance of consumers from them. The distance between houses can serve as the main characteristic for dividing consumers into zones, which, in turn, will reflect the situation with high-quality provision of domestic hot water. After analyzing the data, it was found that some houses contain several connections of DHW networks. HVP networks are a network of interconnected linear objects, with the help of which it is possible to determine the distance of objects, as well as to display the distribution of the load between consumers. Keywords: heat pump, cost-effectiveness of projects, water heating, geospatial search, alternative sources, waste water, urban infrastructure, secondary heat.
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城市基础设施地理空间分布为热泵的实际应用
全球范围内的水资源利用和废水处理。对于不同的使用区域,需要适当的水质和净化。但考虑到2023年及以后世界各国的生态形势和经济形势,值得注意的是,这将导致全球紧急情况。不同区域和全球流域污水处理参数的不稳定性。水净化过程和机制的过时促使人类寻找新的净化和处理累积污染的方法。金融部门正在经历严重的衰退,并将全球证券交易所推向经济萧条,并可能导致中央银行体系中的货币特许经营权崩溃。世界金融领域中储备货币和货币价值的变化已经在经济市场的分配和再分配方面形成了新的趋势。一般来说,技术和科学的进一步发展需要寻找新的资助部门、利用金融利基的平台以及科学家可以在全球范围内使用的计算和赚钱部门。热回收和废水处理已成为水资源领域的一个关键问题。在我国越来越受欢迎和特殊需要的地方净化源中。水净化的生物过程很大程度上依赖于温度的变化。据观察,当温度在几个小时内迅速下降时,炭黑的液压保留作用作为储罐温度的缓冲,导致生物过程的稳定。在研究中,寻找一个投资回收期快、成本低且提供热水供应的项目出现了。实施利用环境热能的技术,为社区和公寓带来收益。该项目的进一步计算,就其执行的普遍性和实用性而言,应具有在经济上具有竞争力和改善公共部门的趋势。网络发展的第一步是对数据的需求。数据处理工作可以通过两种方式进行:结合现有地图,基于表格形式对数据进行可视化和排列,以及结合属性数据开发对象的空间显示,以便进行其他操作和系统交互。根据这些数据,可以确定锅炉房、CTP和ITP的位置,以及消费者与它们的距离。房屋之间的距离可以作为划分消费者区域的主要特征,反过来,这将反映高质量的生活热水供应情况。通过对数据的分析,我们发现一些家庭包含了多个DHW网络连接。HVP网络是一个由相互连接的线性物体组成的网络,通过它可以确定物体之间的距离,并显示消费者之间的负载分布。关键词:热泵,项目成本效益,水加热,地理空间搜索,替代来源,废水,城市基础设施,二次热。
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