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Research of the Possibility of Automation of Geothermal Heat Supply of Greenhouses with a Surface Heat Exchanger

机译:带有表面热交换器的温室地热供热自动化可能性的研究

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This article presents the results of modeling an automatic control system for heat supply of a greenhouse complex with a geothermal heat source, conducted in order to study the possibility of geothermal heat supply automation. For the implementation of modeling, a mathematical application package Scilab (version 6.0.1) is used. Reagentless treatment of geothermal water in the heat supply system with an acoustic-magnetic device can significantly reduce the intensity of scale formation in the heat exchanger and heat exchange equipment. It provides conditions for the automation of geothermal heat supply of greenhouses with a surface heat exchanger. Based on the results of the simulation, the optimal mode of operation of the heat exchanger automation system was developed. Using an automation system allow with greater accuracy and reliability to maintain the required temperature regime in the greenhouse, reduce the frequency of system shutdown for unplanned cleaning of the heat exchanger, reduce the complexity of manual operations of heat exchange equipment maintenance (removal of sludge, scale) and reduce the economic costs of transportation and heat consumption.
机译:本文介绍了为具有地热热源的温室大院的供热自动控制系统建模的结果,旨在研究地热供热自动化的可能性。为了实现建模,使用了数学应用程序包Scilab(版本6.0.1)。用声磁装置对供热系统中的地热水进行无试剂处理可以显着降低热交换器和热交换设备中结垢的强度。它为使用地面热交换器的温室地热供热自动化提供了条件。根据仿真结果,开发了热交换器自动化系统的最佳运行模式。使用自动化系统可以以更高的准确性和可靠性来维持温室中所需的温度状态,减少用于计划外清洁热交换器的系统停机频率,减少热交换设备维护的手动操作(清除污泥,规模),并减少运输和热量消耗的经济成本。

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