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District heating system simulation considering consumer and pump operation features

机译:考虑消费者和泵运行功能的地区供热系统仿真

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摘要

Introduction. The purpose of this investigation is to show what changes introduced in the mathematical model of a district heating system are capable of considerable improving the convergence of simulation results and actual data. The study evaluates the work of heating supply establishments with their customers as well as analysis of the ways of enhancing pump equipment efficiency that allows saving electric energy or increasing output at the same energy consumption.Materials and methods. Engineering acceptance of newly introduced and reconstructed facilities is conducted, heat loads are corrected, disconnections and recurrent connections of indebted consumers are carried out. Studying data submitted by a local heat supply establishment shows that pump seals made from iron and steel are subject accelerated wear in the course of operation.Results. Three variants of the problem solution are suggested: making seals from bronze or stainless steel, prevention of unjustified increase of seal clearances as well as using labyrinth pump seals. This will allow increasing pump equipment efficiency by 5 to 7 % and save about 2 × 105 kW∙h of electrical energy for every pump or increase of output at the same energy consumption. Taking into account that a pump station is a part of the district heating system and unmachined inner surfaces of the pumps have a significant roughness, grinding of these surfaces can improve their hydraulic characteristics of the pumps. In the scope of the suggested method, the entire district heating system is considered not in the situation when actual load is equal to the sum of all the design loads and the pump equipment has manufacturer’s parameters, but accounting actual loads and characteristics.Conclusions. Mathematical model of district heating system heating and hydraulic mode that takes issues mentioned above into consideration would allow simulating joint operation of the heating and hot water supply systems at transient operation modes with higher accuracy.
机译:介绍。本调查的目的是展示区内加热系统的数学模型中引入的更改能够相当容易提高仿真结果和实际数据的收敛性。该研究评估了与客户的供暖机构的工作以及提高泵设备效率的方式分析,允许在相同的能量消耗下节省电能或增加输出。进行新引进和重建设施的工程接受,进行了热载,进行了债务消费者的断开和反复连接。学习由局部供热建立提交的数据表明,在运营过程中,由钢铁制成的泵密封是受试者加速磨损。结果。提出了解决问题解决方案的三种变体:从青铜或不锈钢中制作密封,防止密封间隙的不合理增加以及使用迷宫泵密封件。这将使泵设备效率提高5%至7%,并为每个泵的电能节省约2×105 kW∙H,或者在相同的能量消耗中增加输出。考虑到泵站是区域加热系统的一部分,并且泵的未紧密内表面具有显着的粗糙度,这些表面的研磨可以改善它们的泵的液压特性。在建议的方法的范围内,整个地区加热系统被认为是在实际负载等于所有设计负荷的情况下的情况下的情况,泵设备具有制造商的参数,而是会计的实际负载和特征.Conclusions。考虑到上述问题的地区供热和液压模式的数学模型将允许以更高的瞬态操作模式模拟加热和热水供应系统的联合操作。

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