8 research outputs found

    两有限热源制冷循环的优化性能

    Get PDF
    两有限热源制冷循环的优化性能自有限时间热力学提出以来,对两无限热源内可逆制冷循环已有较多的研究[1~8],但对两有限热源制冷循环还研究不多,尚未有普遍的理论.本文应用有限时间热力学理论,证明了牛顿定律两有限热源内可逆制冷循环在给定的循环制冷量Q2和循..

    从文化与行业角度对中国企业命名的实证研究

    Get PDF
    本文通过定量及定性研究相结合的方法,着重从文化与行业角度对现代中国企业命名特征进行研究, 从抽取的八百多个企业名称中挖掘中国企业现有的命名规律及特点,以期为企业名称及品牌的进一步研究提供参考

    两有限热源热力学循环的优化性能及工作参数选择的有限时间热力学准则

    No full text
    本文在现有文献中主要讨论一热源为有限的内可逆二热源循环 的基础上.采用双热源均为有限的一类更一般的内可逆二热源 循环模型。其中包括动力循环、制冷循环和泵热循环等基本热力 学循环,据讨循环的最优构形及导出循环的基本优化关系,并应 用它讨论了循环的优化能.获得一些有意义的新结论。同时也推 出了许多文以中的主要结果.此外。还讨论了有关两变温热源循环 工作参数选择的有限时间热力学准则问题,并指出一些文献中 有关结论的错误学位:理学硕士院系专业:物理与机电工程学院物理学系_理论物理学号:YL00007

    新疆油田作业废水高效处理技术研究与应用

    No full text
    新疆油田公司为国家能源需求做出卓越贡献的同时,也始终致力于油田污染的治理,目前国内各油田均没有针对油田作业废水处理的成熟技术,一般采取集中储存在废液池的方法,通过自然蒸发和氧化等实现减量化,随着油田持续开发上产,其存量不断增加,是潜在的污染源,寻求高效技术系统地处理油田作业废水十分必要。 1.主要技术内容 “新疆油田作业废水高效处理技术研究与应用”研究时间为2006.11~2011.12。主要完成了以下技术内容研究工作: (1)新疆油田作业废水污染物特征分析; (2)作业废水处理技术的工艺流程研究; (3)单元工艺技术、装置及其参数研究; ..

    JUNO Sensitivity on Proton Decay pνˉK+p\to \bar\nu K^+ Searches

    Get PDF
    The Jiangmen Underground Neutrino Observatory (JUNO) is a large liquid scintillator detector designed to explore many topics in fundamental physics. In this paper, the potential on searching for proton decay in pνˉK+p\to \bar\nu K^+ mode with JUNO is investigated.The kaon and its decay particles feature a clear three-fold coincidence signature that results in a high efficiency for identification. Moreover, the excellent energy resolution of JUNO permits to suppress the sizable background caused by other delayed signals. Based on these advantages, the detection efficiency for the proton decay via pνˉK+p\to \bar\nu K^+ is 36.9% with a background level of 0.2 events after 10 years of data taking. The estimated sensitivity based on 200 kton-years exposure is 9.6×10339.6 \times 10^{33} years, competitive with the current best limits on the proton lifetime in this channel

    JUNO sensitivity on proton decay pνK+p → νK^{+} searches

    No full text

    JUNO sensitivity on proton decay p → ν K + searches*

    No full text
    The Jiangmen Underground Neutrino Observatory (JUNO) is a large liquid scintillator detector designed to explore many topics in fundamental physics. In this study, the potential of searching for proton decay in the pνˉK+ p\to \bar{\nu} K^+ mode with JUNO is investigated. The kaon and its decay particles feature a clear three-fold coincidence signature that results in a high efficiency for identification. Moreover, the excellent energy resolution of JUNO permits suppression of the sizable background caused by other delayed signals. Based on these advantages, the detection efficiency for the proton decay via pνˉK+ p\to \bar{\nu} K^+ is 36.9% ± 4.9% with a background level of 0.2±0.05(syst)±0.2\pm 0.05({\rm syst})\pm 0.2(stat) 0.2({\rm stat}) events after 10 years of data collection. The estimated sensitivity based on 200 kton-years of exposure is 9.6×1033 9.6 \times 10^{33} years, which is competitive with the current best limits on the proton lifetime in this channel and complements the use of different detection technologies

    Ziprasidone versus other atypical antipsychotics for schizophrenia

    No full text
    corecore