{
    "created": "2025-03-03 11:16:38",
    "updated": "2026-08-08 17:47:47",
    "id": "f1122b5a-285b-407b-9e63-bf463b1e40cd",
    "version": 0,
    "ds_topic": null,
    "title_cn": "2019年塔吉克斯坦Luchob生态样方土壤温湿度数据",
    "title_en": "",
    "ds_abstract": "<p>本数据记录的是2019年3月-6月间塔吉克斯坦Luchob生态样方土壤含水量、电导率和土壤温度每小时数据。\n2019年科研人员布设建立Luchob生态样方，在生态样方内设立调查记录样地，在样地里设置1 m × 1 m小样方，每个小样方内设置5层土壤深度（0-10 cm、10-20 cm、20-30 cm、30-40 cm、40-60 cm），每层埋设1个CR300土壤水分传感器，完成土壤温湿度测定。</p>",
    "ds_source": "<p>2019年科研人员在塔吉克斯坦Luchob生态样方通过埋设Campbell CR300土壤温湿度传感器获取的数据。</p>",
    "ds_process_way": "<p>2019年布设建立Luchob生态样方，在生态样方内设立调查记录样地，在样地里设置1 m × 1 m小样方内完成草本植物物种丰富度、植被盖度、植被物候期和地上生物量的调查和样品采集，以及土壤温湿度测定。完成地上生物量调查后，科研人员按照草本植物的根深分布主要集中在0-60 cm的特点，设置5层土壤深度（0-10 cm、10-20 cm、20-30 cm、30-40 cm、40-60 cm），埋设Campbell \nCR300土壤水分传感器，监测样方土壤的土壤含水量、电导率和土壤温度，土壤温度数据自动存储在温度记录器，埋设的土壤湿度传感器与数据采集器相连，获取传感器上土壤湿度的感应电信号信息，经过采集器内部转换处理，得到土壤湿气数据，利用数据下载器与数据采集器相连接，下载监测数据。</p>",
    "ds_quality": "<p>土壤传感器和数据记录器的初始设置按照产品操作手册进行调试，并做过2-3次测试，没有发现数据丢失，数据异常等传感器不稳定的情况。</p>",
    "ds_acq_start_time": "2019-03-04 00:00:00",
    "ds_acq_end_time": "2019-06-24 00:00:00",
    "ds_acq_place": "塔吉克斯坦Luchob生态样方",
    "ds_acq_lon_east": null,
    "ds_acq_lat_south": null,
    "ds_acq_lon_west": null,
    "ds_acq_lat_north": null,
    "ds_acq_alt_low": null,
    "ds_acq_alt_high": null,
    "ds_share_type": "apply-access",
    "ds_total_size": 827709,
    "ds_files_count": 3,
    "ds_format": "xls",
    "ds_space_res": "无",
    "ds_time_res": "无",
    "ds_coordinate": "无",
    "ds_projection": "无",
    "ds_thumbnail": "f1122b5a-285b-407b-9e63-bf463b1e40cd.png",
    "ds_thumb_from": 0,
    "ds_ref_way": "",
    "paper_ref_way": "",
    "ds_ref_instruction": "",
    "ds_from_station": null,
    "organization_id": "a5877b42-96ea-4f13-af7e-246f355413d6",
    "doi_value": "",
    "subject_codes": [
        "170.45"
    ],
    "quality_level": 1,
    "publish_time": "2025-03-06 16:02:58",
    "first_publish_time": null,
    "last_updated": "2025-03-22 19:11:20",
    "protected": false,
    "protected_to": null,
    "lang": "zh",
    "cstr": "33110.11.ariddc.00305",
    "license": null,
    "extra": null,
    "files_shape": [
        {
            "name": "Data",
            "size": null,
            "is_dir": true
        }
    ],
    "features": null,
    "data_level": 0,
    "i18n": {
        "en": {
            "title": "Soil temperature, temperature and humidity data from Luchob Ecological Sample in Tajikistan in 2019",
            "ds_abstract": "<p>This data records the hourly data of soil water content, electrical conductivity and soil temperature from March to June 2019 from the Luchob ecological sample in Tajikistan.\nIn 2019, scientific researchers set up and established the Luchob ecological sample square, set up survey and record sample plots in the ecological sample square, and set up 1 m × 1 m sample squares in the sample plot. Five layers of soil depth (0-10 cm, 10-20 cm, 20-30 cm, 30-40 cm, 40-60 cm) were set up in each sample square. A CR300 soil moisture sensor was buried in each layer to complete the measurement of soil temperature, temperature and humidity. </p>",
            "ds_source": "<p>In 2019, researchers obtained data obtained by embedding the Campbell CR300 soil temperature and humidity sensor in the Luchob ecological sample plot in Tajikistan. </p>",
            "ds_process_way": "<p>In 2019, the Luchob ecological quadrat was set up, and a survey and record sample plot was set up in the ecological quadrat. A 1 m × 1 m sample plot was set up in the sample plot to complete the herb species richness, vegetation coverage, vegetation phenological period and above-ground biomass. Survey and sample collection, as well as soil temperature and humidity measurement. After completing the above-ground biomass survey, researchers set 5 soil depths (0-10 cm, 10-20 cm, 20-30 cm, 30-40 cm, 40-60 cm) and buried Campbell according to the characteristics that the root depth distribution of herbaceous plants is mainly concentrated in 0-60 cm. \nCR300 soil moisture sensor monitors soil moisture content, conductivity and soil temperature of sample soil. Soil temperature data is automatically stored in the temperature recorder. The buried soil moisture sensor is connected to the data collector to obtain the induced electrical signal information of soil moisture on the sensor. After internal conversion and processing in the collector, soil moisture data is obtained, and the data downloader is connected to the data collector to download the monitoring data. </p>",
            "ds_quality": "<p>The initial settings of the soil sensor and data logger were debugged in accordance with the product operation manual, and tested 2-3 times. No sensor instability such as data loss or data abnormality was found. </p>",
            "ds_acq_place": "Tajikistan Luchob Ecological Sample",
            "ds_format": "xls",
            "ds_projection": "no",
            "ds_space_res": "no",
            "ds_time_res": "no"
        }
    },
    "license_type": null,
    "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": [
        "土壤温度",
        "电导率",
        "土壤含水量"
    ],
    "ds_subject_tags": [
        "地理学"
    ],
    "ds_class_tags": [],
    "ds_locus_tags": [
        "塔吉克斯坦"
    ],
    "ds_time_tags": [
        2019
    ],
    "ds_contributors": [
        "李耀明",
        "范连连"
    ],
    "ds_meta_authors": [
        "范连连",
        "李锦"
    ],
    "ds_managers": [
        "范连连"
    ],
    "category": "土壤"
}