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Application of hydrodynamic modeling in 2D and 3D approaches for the improvement of the recycled water supply systems of large energy complexes based on reservoirs-coolers

机译:流体动力学建模在2D和3D方法中的应用,以改进基于水库-冷却器的大型能源联合体的循环水供应系统

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摘要

Reservoirs-coolers are a typical component of technological schemes of large energy complexes. Thus, it is important to maximize the efficiency of their exploitation. The present paper discusses the possibilities of the increase in the efficiency of reservoir-cooler usage on the example of the Magnitogorsk Iron and Steel Works (further, PJSC "MMK"), which produces the greatest amount of rolled steel on one industrial site. A reservoir-cooler created on the basis of the Magnitogorsk Reservoir of Ural river is considered. The schemes for the location of the enclosing and diverting dams is suggested on the basis of hydrodynamic modeling in a 2D approach. The calculations are performed for different scenarios where both extreme climatic and technological conditions and the ones characterized by the highest repeatability are considered. To increase the stability of the reservoir-cooler functioning in a short periods of extremely high air temperatures, the scheme of the organization of selective water intake from the deep layers of the reservoir-cooler characterized by lower temperatures is worked out on the basis of hydrodynamic modelling in 3D approach. (C) 2019 Elsevier Ltd. All rights reserved.
机译:油藏冷却器是大型能源综合体技术方案的典型组成部分。因此,重要的是最大化其利用效率。本文以马格尼托哥尔斯克钢铁厂为例(进一步,PJSC“ MMK”)讨论了提高冷却器使用效率的可能性,该公司在一个工业现场生产的轧钢量最大。考虑了在乌拉尔河的Magnitogorsk水库的基础上建立的水库冷却器。在二维方法的水动力模型的基础上,提出了围堰和分流大坝的位置方案。在考虑极端气候和技术条件以及具有最高可重复性的情况下,针对不同的场景执行计算。为了增加在极高的空气温度下短时间内储油冷却器运行的稳定性,在流体力学的基础上,制定了以较低温度为特征的储油冷却器深层选择性取水组织方案。 3D方法建模。 (C)2019 Elsevier Ltd.保留所有权利。

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    RAS, UB, Inst Continuous Media Mech, 1 Koroleva Str, Perm 614013, Russia|Perm State Univ, 15 Bukireva Str, Perm 614990, Russia;

    RAS, UB, Inst Continuous Media Mech, 1 Koroleva Str, Perm 614013, Russia;

    RAS, UB, Min Inst, 78A Sibirskaya Str, Perm 614007, Russia;

    RAS, UB, Min Inst, 78A Sibirskaya Str, Perm 614007, Russia;

    RAS, UB, Min Inst, 78A Sibirskaya Str, Perm 614007, Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
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  • 正文语种 eng
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