{
    "created": "2022-03-23 09:32:57",
    "updated": "2026-04-29 18:29:16",
    "id": "0521f9c1-670e-4557-86d0-42e5863f99ff",
    "version": 6,
    "ds_topic": null,
    "title_cn": "山西省太原市中煤平朔集团露井联采矿煤-水协调开发及煤矿水高效利用数据集（2015年-2020年）",
    "title_en": "Data set of coal water coordinated development and efficient utilization of coal mine water for open pit mining of middling coal Pingshuo Group in Taiyuan, Shanxi Province (2015-2020)",
    "ds_abstract": "<p>&emsp;&emsp;大型露井联采煤矿的用水水源多元化，用排水结构复杂，水资源系统相关技术体系、工艺流程及装备系统，链条长、环节多，表征指标复杂多变，亟需反馈调整优化。以科学全面的评价体系指导区域水资源生命周期（取水、配水、利用、排水、水处理、循环利用/废弃）的使用和管理，对突破企业用水效率不协调和不充分的瓶颈，实现水资源合理开发、优化配置以及可持续高效利用具有重要的现实意义。\n</p>\n<p>&emsp;&emsp;本数据集通过到中煤平朔集团有限公司现场收集，随后以年为时间尺度进行整理，得到安太堡-安家岭区域供水单位最大供水能力、安太堡-安家岭区域用生产用水单元用水量限值、供水水源与生产用水元供需关系矩阵、生产用水单元与供水水源距离矩阵、用水部门用水公平性系数矩阵表和示范区各供水单位供水成本单价、费用系数统计表。之后，借鉴生命周期可持续性评估理论，集成资源消耗、经济性、技术性能、社会影响、环境影响5个维度，共19项清单因子，建立了水资源高效利用生命周期可持续性动态跟踪评价体系。数据集共包含579数据，数据集完全开放共享。",
    "ds_source": "<p>&emsp;&emsp;到中煤平朔集团有限公司现场收集，随后以年为时间尺度进行整理。",
    "ds_process_way": "<p>&emsp;&emsp;中煤平朔集团有限公司现场收集，原始数据，未经加工处理。与相关水质规范进行比对。",
    "ds_quality": "<p>&emsp;&emsp;数据质量良好。",
    "ds_acq_start_time": "2015-01-01 00:00:00",
    "ds_acq_end_time": "2020-12-31 00:00:00",
    "ds_acq_place": "山西省太原市中煤平朔集团安太堡,安家岭大型露井联采矿区",
    "ds_acq_lon_east": 111.85,
    "ds_acq_lat_south": 38.06666666666667,
    "ds_acq_lon_west": 113.55,
    "ds_acq_lat_north": 40.25,
    "ds_acq_alt_low": null,
    "ds_acq_alt_high": null,
    "ds_share_type": "login-access",
    "ds_total_size": 240351,
    "ds_files_count": 2,
    "ds_format": "excel",
    "ds_space_res": null,
    "ds_time_res": "年",
    "ds_coordinate": "无",
    "ds_projection": "",
    "ds_thumbnail": "0521f9c1-670e-4557-86d0-42e5863f99ff.png",
    "ds_thumb_from": 0,
    "ds_ref_way": "",
    "paper_ref_way": "",
    "ds_ref_instruction": "使用申明：“山西省太原市中煤平朔集团露井联采矿煤-水协调开发及煤矿水高效利用数据集（2015年-2020年）” 来源于国家重点研发计划《大型煤矿和有色矿矿井水高效利用技术与示范》（项目编号：2018YFC0406400）。",
    "ds_from_station": null,
    "organization_id": "4f9aad20-0a6f-4efd-9b8b-70cd10164ea3",
    "ds_serv_man": "敏玉芳",
    "ds_serv_phone": "0931-4967596",
    "ds_serv_mail": "ncdc@lzb.ac.cn",
    "doi_value": "10.12072/ncdc.UTCMW.db2146.2022",
    "subject_codes": [
        "170.50"
    ],
    "quality_level": 3,
    "publish_time": "2022-05-31 08:47:09",
    "last_updated": "2025-06-30 16:27:09",
    "protected": false,
    "protected_to": null,
    "lang": "zh",
    "cstr": "11738.11.ncdc.UTCMW.db2146.2022",
    "i18n": {
        "en": {
            "title": "Data set of coal water coordinated development and efficient utilization of coal mine water for open pit mining of middling coal Pingshuo Group in Taiyuan, Shanxi Province (2015-2020)",
            "ds_format": "Excel",
            "ds_source": "<p>&emsp; &emsp; Collect them at the site of middling coal Pingshuo Group Co., Ltd., and then sort them out on an annual basis.",
            "ds_quality": "<p>&emsp; &emsp; The data quality is good.",
            "ds_ref_way": "",
            "ds_abstract": "<p>    The water sources for large-scale open-pit joint mining coal mines are diversified, the drainage structure is complex, and the related technical systems, process flows, and equipment systems of the water resources system have long chains, multiple links, and complex and variable characterization indicators. Feedback adjustment and optimization are urgently needed. Guiding the use and management of regional water resources throughout their lifecycle (water intake, distribution, utilization, drainage, water treatment, recycling/disposal) with a scientifically comprehensive evaluation system is of great practical significance for breaking through the bottleneck of inconsistent and insufficient water use efficiency in enterprises, achieving rational development, optimized allocation, and sustainable and efficient utilization of water resources.\n</p>\n<p>    This data set was collected at the site of middling coal Pingshuo Group Co., Ltd., and then sorted out on an annual basis to obtain the maximum water supply capacity of water supply units in the Antaibao Anjialing area, the water consumption limit of production water use units in the Antaibao Anjialing area, the supply and demand relationship matrix between water supply sources and production water use units, the distance matrix between production water use units and water supply sources, the water use fairness coefficient matrix of water use departments, and the statistics table of water supply cost unit price and cost coefficient of each water supply unit in the demonstration area. Afterwards, drawing on the theory of life cycle sustainability assessment, a dynamic tracking and evaluation system for the life cycle sustainability of efficient utilization of water resources was established by integrating five dimensions including resource consumption, economy, technological performance, social impact, and environmental impact, with a total of 19 inventory factors. The dataset contains a total of 579 data points and is fully open for sharing.</p>",
            "ds_time_res": "年",
            "ds_acq_place": "Antaibao and Anjialing large-scale open pit mining area of middling coal Pingshuo Group, Taiyuan, Shanxi",
            "ds_space_res": "",
            "ds_projection": "",
            "ds_process_way": "<p>&emsp; &emsp; The original data collected by middling coal Pingshuo Group Co., Ltd. is not processed. Compare with relevant water quality standards.",
            "ds_ref_instruction": "The usage statement: \"data set of coal water coordinated development and efficient utilization of coal mine water in open pit mining of China Coal Pingshuo group in Taiyuan, Shanxi Province (2015-2020)\" comes from the national key R & D plan \"technology and demonstration of efficient utilization of mine water in large coal mines and nonferrous mines\" (Project No.: 2018yfc0406400)."
        }
    },
    "submit_center_id": "ncdc",
    "data_level": 0,
    "license_type": "CC BY 4.0",
    "doi_reg_from": "reg_local",
    "cstr_reg_from": "reg_local",
    "doi_not_reg_reason": null,
    "cstr_not_reg_reason": null,
    "is_paper_in_submitting": false,
    "ds_topic_tags": [
        "露井联采",
        "煤矿水高效利用",
        "污水处理"
    ],
    "ds_subject_tags": [
        "地质学"
    ],
    "ds_class_tags": [],
    "ds_locus_tags": [
        "山西省太原市中煤平朔集团安太堡",
        "安家岭大型露井联采矿区"
    ],
    "ds_time_tags": [
        2015,
        2016,
        2017,
        2018,
        2019,
        2020
    ],
    "ds_contributors": [
        {
            "true_name": "杨军耀",
            "email": "704381962@qq.com",
            "work_for": "太原理工大学",
            "country": "中国"
        }
    ],
    "ds_meta_authors": [
        {
            "true_name": "杨军耀",
            "email": "704381962@qq.com",
            "work_for": "太原理工大学",
            "country": "中国"
        }
    ],
    "ds_managers": [
        {
            "true_name": "敏玉芳",
            "email": "myf@lzb.ac.cn",
            "work_for": "中国科学院西北生态环境资源研究院",
            "country": "中国"
        }
    ],
    "category": "其他"
}