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Study on the Technique to Control Heat-harm and Utilize Geothermal Energy in Deep Mine

机译:深部矿井热害控制与地热能利用技术研究

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With the increasing of exploitation scope and intensity, the shallow resources would be exhausted in the future, as a result, the deep mining becomes the essential choice. In the deep tunnel engineering, the heat-harm of high temperature becomes one of the main barriers of deep mining, which is harmful for the deep resources mining. Taking the Zhangshuanglou Coal Mine for example, through the analysis of thermal damage feature of the Zhangshuanglou coal mine, we use the cooling technology that puts the mine discharge as the cold source to heat harm control. By disposing three main workstations, this technology can accomplish its operations and corresponding functions in different exploitation level. These functions include the extraction of the refrigerating output by refrigeration equipment, the transportation of the chilled water by closed circulation line, the decompression of the circulation line and equipment by pressure transformation machine, and the heat exchange and cooling of workplace by heat exchange between wind stream and the chilled water. Particularly, the exchanged heat source from the workplace is taken to ground heating by the circulating water which acts as a carrier. It shows that the design concept of this technology includes protecting the environment and reducing the emission of deleterious air. The results of the project illustrate that the technology to control the heat-harm is efficient. The temperature of the workplace is brought down to 26 - 29 centigrade, and is 4 - 6 centigrade lower than the original, and the relative humidity is 5%-15% lower than before. It greatly improves the working environment of the workplace where the heat-harm of high temperature and high humidity lasts for a quite long time. In addition, it extracts deep geothermal energy successful replacing ground fired boiler for heating, further reducing environmental pollution.
机译:随着开采范围和强度的增加,未来将用尽浅层资源,因此,深层开采成为必不可少的选择。在深层隧道工程中,高温的热害成为深部开采的主要障碍之一,对深部资源开采有害。以张双楼煤矿为例,通过对张双楼煤矿热破坏特征的分析,采用冷却技术,将矿山排泄物作为冷源进行热害控制。通过配置三个主工作站,该技术可以在不同的开发级别上完成其操作和相应的功能。这些功能包括通过制冷设备提取制冷输出,通过封闭的循环管线输送冷冻水,通过压力转换机对循环管线和设备进行减压以及通过风之间的热交换进行工作场所的热交换和冷却溪流和冷水。特别地,来自工作场所的交换热源被用作载体的循环水带到地面加热。它表明,该技术的设计理念包括保护环境和减少有害气体的排放。该项目的结果表明,控制热伤害的技术是有效的。工作场所的温度降低到26-29摄氏度,比原来的温度低4-6摄氏度,相对湿度比以前降低5%-15%。它极大地改善了高温高湿热害持续较长时间的工作场所的工作环境。此外,它还提取深层地热能,成功替代了地热锅炉供暖,进一步减少了环境污染。

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