9 research outputs found

    林火在空间上的波动性及其对全球变化的响应(Ⅰ)

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    研究表明,林火在时间方向具有一定的周期性,表现为一定频率的火周期。该文应用黑龙江省1980~1999年林火数据,分别计算出每年火灾发生的火点的质心经纬度坐标和火场面积质心的经纬度坐标,用波谱分析研究其质心随年份的波动现象。结果表明,1980-1999年的黑龙江省林火的火场质心分别是以东经126.97°,北纬49.63°为轴作东西、南北波动,波动具有明显的同期性,经度方向和纬度方向的周期均为3.3a,其东西南北波动的最大最小值分别为东经128.68°,北纬52.82°,东经123.08°,北纬46.86°。火点的质心分别以东经127.90°,北纬48.69°为轴作东西、南北方向的波动,波动不具有明显的周期性,其东西南北波动的最大最小值分别为东经129.22°,北纬50.37°,东经125.18°,北纬47.28°

    The utility model relates to a floating type ocean surveying and mapping device with a seawater monitoring function

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    本发明公开了一种带有海水监测功能的漂浮式海洋测绘装置,属于海洋测绘技术领域,包括通过钢绞线连接在船体尾部的测绘设备,所述测绘设备包括载板,载板的底面上通过四个固定件固接在两个防锈钢架,两个防锈钢架的两端连接有两个浮筒,浮筒上连接有充气管,充气管的一端处安装有气门嘴;本发明所提供的海洋测绘装置,能够适应各种海洋的复杂状况,能够自动使充气囊张开,避免因浮筒破损进水而造成整体沉没水中的问题,有效保护了海水检测设备的安全,同时具备防倾翻的功能,避免因海浪冲击而造成整体倾翻的问题,且能够与船体连接,以各种船只为动力,携带运行,检测时也能保证海水检测探头不受损坏,使用寿命更长

    Measurement of integrated luminosity of data collected at 3.773 GeV by BESIII from 2021 to 2024

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    We present a measurement of the integrated luminosity e+e- of collision data collected by the BESIII detector at the BEPCII collider at a center-of-mass energy of Ecm = 3.773 GeV. The integrated luminosities of the datasets taken from December 2021 to June 2022, from November 2022 to June 2023, and from October 2023 to February 2024 were determined to be 4.995±0.019 fb-1, 8.157±0.031 fb-1, and 4.191±0.016 fb-1, respectively, by analyzing large angle Bhabha scattering events. The uncertainties are dominated by systematic effects, and the statistical uncertainties are negligible. Our results provide essential input for future analyses and precision measurements

    Measurement of integrated luminosity of data collected at 3.773 GeV by BESIII from 2021 to 2024*

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    Amplitude analysis of the decays D0π+ππ+πD^0\rightarrow\pi^+\pi^-\pi^+\pi^- and D0π+ππ0π0D^0\rightarrow\pi^+\pi^-\pi^0\pi0

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    Determination of the number of ψ(3686) events taken at BESIII

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    The number of ψ(3686) events collected by the BESIII detector during the 2021 run period is determined to be (2259.3±11.1)×106 by counting inclusive ψ(3686) hadronic events. The uncertainty is systematic and the statistical uncertainty is negligible. Meanwhile, the numbers of ψ(3686) events collected during the 2009 and 2012 run periods are updated to be (107.7±0.6)×106 and (345.4±2.6)×106, respectively. Both numbers are consistent with the previous measurements within one standard deviation. The total number of ψ(3686) events in the three data samples is (2712.4±14.3)×10^

    Prediction of Energy Resolution in the JUNO Experiment

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    International audienceThis paper presents the energy resolution study in the JUNO experiment, incorporating the latest knowledge acquired during the detector construction phase. The determination of neutrino mass ordering in JUNO requires an exceptional energy resolution better than 3% at 1 MeV. To achieve this ambitious goal, significant efforts have been undertaken in the design and production of the key components of the JUNO detector. Various factors affecting the detection of inverse beta decay signals have an impact on the energy resolution, extending beyond the statistical fluctuations of the detected number of photons, such as the properties of liquid scintillator, performance of photomultiplier tubes, and the energy reconstruction algorithm. To account for these effects, a full JUNO simulation and reconstruction approach is employed. This enables the modeling of all relevant effects and the evaluation of associated inputs to accurately estimate the energy resolution. The study reveals an energy resolution of 2.95% at 1 MeV. Furthermore, the study assesses the contribution of major effects to the overall energy resolution budget. This analysis serves as a reference for interpreting future measurements of energy resolution during JUNO data taking. Moreover, it provides a guideline in comprehending the energy resolution characteristics of liquid scintillator-based detectors
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