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CEPC Technical Design Report
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作者 Waleed Abdallah Tiago Carlos Adorno de Freitas +110 位作者 Konstantin Afanaciev Shakeel Ahmad Ijaz Ahmed Xiaocong Ai Abid Aleem Wolfgang Altmannshofer Fabio Alves Weiming An Rui An Daniele Paolo Anderle Stefan Antusch Yasuo Arai Andrej Arbuzov Abdesslam Arhrib Mustafa Ashry Sha Bai Yu Bai Yang Bai Vipul Bairathi Csaba Balazs Philip Bambade Yong Ban Tripamo Bandyopadhyay Shou-Shan Bao Desmond P.Barber Ayse Bat Varvara Batozskaya Subash Chandra Behera Alexander Belyaev Michele Bertucci Xiao-Jun Bi Yuanjie Bi Tianjian Bian Fabrizio Bianchi Thomas Biekotter Michela Biglietti Shalva Bilanishvili Deng Binglin Denis Bodrov Anton Bogomyagkov Serge Bondarenko Stewart Boogert Maarten Boonekamp Marcello Borri Angelo Bosotti Vincent Boudry Mohammed Boukidi Igor Boyko Ivanka Bozovic Giuseppe Bozzi Jean-Claude Brient Anastasiia Budzinskaya Masroor Bukhari Vladimir Bytev Giacomo Cacciapaglia Hua Cai Wenyong Cai Wujun Cai Yijian Cai Yizhou Cai Yuchen Cai Haiying Cai Huacheng Cai Lorenzo Calibbi Junsong Cang Guofu Cao Jianshe Cao Antoine Chance Xuejun Chang Yue Chang Zhe Chang Xinyuan Chang Wei Chao Auttakit Chatrabhuti Yimin Che Yuzhi Che Bin Chen Danping Chen Fuqing Chen Fusan Chen Gang Chen Guoming Chen Hua-Xing Chen Huirun Chen Jinhui Chen Ji-Yuan Chen Kai Chen Mali Chen Mingjun Chen Mingshui Chen Ning Chen Shanhong Chen Shanzhen Chen Shao-Long Chen Shaomin Chen Shiqiang Chen Tianlu Chen Wei Chen Xiang Chen Xiaoyu Chen Xin Chen Xun Chen Xurong Chen Ye Chen Ying Chen Yukai Chen Zelin Chen Zilin Chen Gang Chen Boping Chen Chunhui Chen 《Radiation Detection Technology and Methods》 CSCD 2024年第1期I0003-I0016,1-1091,共1105页
The Circular Electron Positron Collider(CEPC)is a large scientific project initiated and hosted by China,fostered through extensive collaboration with international partners.The complex comprises four accelerators:a 3... The Circular Electron Positron Collider(CEPC)is a large scientific project initiated and hosted by China,fostered through extensive collaboration with international partners.The complex comprises four accelerators:a 30 GeV Linac,a 1.1 GeV Damping Ring,a Booster capable of achieving energies up to 180 GeV,and a Collider operating at varying energy modes(Z,W,H,and tt).The Linac and Damping Ring are situated on the surface,while the subterranean Booster and Collider are housed in a 100 km circumference underground tunnel,strategically accommodating future expansion with provisions for a potential Super Proton Proton Collider(SPPC).The CEPC primarily serves as a Higgs factory.In its baseline design with synchrotron radiation(SR)power of 30 MW per beam,it can achieve a luminosity of 5×10^(34)cm^(-2)s^(-1)per interaction point(IP),resulting in an integrated luminosity of 13 ab^(-1)for two IPs over a decade,producing 2.6 million Higgs bosons.Increasing the SR power to 50 MW per beam expands the CEPC's capability to generate 4.3 million Higgs bosons,facilitating precise measurements of Higgs coupling at sub-percent levels,exceeding the precision expected from the HL-LHC by an order of magnitude.This Technical Design Report(TDR)follows the Preliminary Conceptual Design Report(Pre-CDR,2015)and the Conceptual Design Report(CDR,2018),comprehensively detailing the machine's layout,performance metrics,physical design and analysis,technical systems design,R&D and prototyping efforts,and associated civil engineering aspects.Additionally,it includes a cost estimate and a preliminary construction timeline,establishing a framework for forthcoming engineering design phase and site selection procedures.Construction is anticipated to begin around 2027-2028,pending government approval,with an estimated duration of 8 years.The commencement of experiments and data collection could potentially be initiated in the mid-2030s. 展开更多
关键词 initiated EXCEEDING PRECISE
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Sensitivity to Tendency Perturbations of Tropical Cyclone Short-range Intensity Forecasts Generated by WRF 被引量:8
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作者 xiaohao qin Wansuo DUAN Hui XU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2020年第3期291-306,共16页
The present study uses the nonlinear singular vector(NFSV)approach to identify the optimally-growing tendency perturbations of the Weather Research and Forecasting(WRF)model for tropical cyclone(TC)intensity forecasts... The present study uses the nonlinear singular vector(NFSV)approach to identify the optimally-growing tendency perturbations of the Weather Research and Forecasting(WRF)model for tropical cyclone(TC)intensity forecasts.For nine selected TC cases,the NFSV-tendency perturbations of the WRF model,including components of potential temperature and/or moisture,are calculated when TC intensities are forecasted with a 24-hour lead time,and their respective potential temperature components are demonstrated to have more impact on the TC intensity forecasts.The perturbations coherently show barotropic structure around the central location of the TCs at the 24-hour lead time,and their dominant energies concentrate in the middle layers of the atmosphere.Moreover,such structures do not depend on TC intensities and subsequent development of the TC.The NFSV-tendency perturbations may indicate that the model uncertainty that is represented by tendency perturbations but associated with the inner-core of TCs,makes larger contributions to the TC intensity forecast uncertainty.Further analysis shows that the TC intensity forecast skill could be greatly improved as preferentially superimposing an appropriate tendency perturbation associated with the sensitivity of NFSVs to correct the model,even if using a WRF with coarse resolution. 展开更多
关键词 sensitivity tendency perturbation tropical cyclone INTENSITY forecasts
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小单元多丝漂移室探测器系统研制
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作者 黄鑫杰 尹小豪 +14 位作者 何周波 马朋 胡荣江 邹海川 邱天力 何志轩 秦智 秦雨浩 魏向伦 杨贺润 鲁辰桂 李蒙 杨远胜 李志杰 段利敏 《原子能科学技术》 EI CSCD 北大核心 2024年第1期218-224,共7页
为精确测量CSR外靶终端靶前入射粒子的径迹,研制了多套小单元多丝漂移室探测器,该探测器灵敏面积为80 mm×80 mm,每套探测器包括x、x′、y、y′4个探测电极面,每个电极面引出16个阳极丝信号。前端电子学采用基于SFE16芯片的放大器,... 为精确测量CSR外靶终端靶前入射粒子的径迹,研制了多套小单元多丝漂移室探测器,该探测器灵敏面积为80 mm×80 mm,每套探测器包括x、x′、y、y′4个探测电极面,每个电极面引出16个阳极丝信号。前端电子学采用基于SFE16芯片的放大器,数据读出系统采用基于HPTDC芯片的数据采集卡。采用两套小单元多丝漂移室对400 MeV/u的^(16)O束流位置进行了测试,探测器的工作气体为Ar(80%)+CO_(2)(20%),阳极丝电压为+900 V,场丝与阴极丝均接地,拟合得到的单层电极的位置分辨(拟合残差)为105.9μm,探测效率为99.3%,该指标可以满足现阶段CSR外靶终端大部分核物理实验对反应靶点的定位要求。 展开更多
关键词 小单元 多丝漂移室 位置分辨 探测效率
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中国年点亮维和一线中国红
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作者 本刊编辑部 王冬冬(图) +4 位作者 王军杰(图) 王皓宇(图) 庄小好(图) 秦琳瑛(图) 霍亚雄(图) 《中国军队(中法文版)》 2024年第1期90-95,共6页
第78届联合国大会于2023年12月22日协商一致通过决议,将春节(农历新年)确定为联合国假日。这对在海外执行维和任务的中国官兵来说,意义更加特别。龙年新春,中国维和部队各任务区举行多彩活动,多国维和友军受邀参加,与中国维和军人欢聚一... 第78届联合国大会于2023年12月22日协商一致通过决议,将春节(农历新年)确定为联合国假日。这对在海外执行维和任务的中国官兵来说,意义更加特别。龙年新春,中国维和部队各任务区举行多彩活动,多国维和友军受邀参加,与中国维和军人欢聚一堂,互道祝福,感受浓浓年味。 展开更多
关键词 维和任务 协商一致 多彩活动 联合国大会 任务区 点亮
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中国年点亮维和一线中国红
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作者 本刊编辑部 王冬冬(图) +4 位作者 王军杰(图) 王皓宇(图) 庄小好(图) 秦琳瑛(图) 霍亚雄(图) 《中国军队(中西文版)》 2024年第1期90-95,共6页
第78届联合国大会于2023年12月22日协商一致通过决议,将春节(农历新年)确定为联合国假日。这对在海外执行维和任务的中国官兵来说,意义更加特别。龙年新春,中国维和部队各任务区举行多彩活动,多国维和友军受邀参加,与中国维和军人欢聚一... 第78届联合国大会于2023年12月22日协商一致通过决议,将春节(农历新年)确定为联合国假日。这对在海外执行维和任务的中国官兵来说,意义更加特别。龙年新春,中国维和部队各任务区举行多彩活动,多国维和友军受邀参加,与中国维和军人欢聚一堂,互道祝福,感受浓浓年味。 展开更多
关键词 维和任务 协商一致 多彩活动 联合国大会 任务区 点亮
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Effects of Dropsonde Data in Field Campaigns on Forecasts of Tropical Cyclones over the Western North Pacific in 2020 and the Role of CNOP Sensitivity 被引量:1
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作者 xiaohao qin Wansuo DUAN +2 位作者 Pak-Wai CHAN Boyu CHEN Kang-Ning HUANG 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第5期791-803,共13页
Valuable dropsonde data were obtained from multiple field campaigns targeting tropical cyclones,namely Higos,Nangka,Saudel,and Atsani,over the western North Pacific by the Hong Kong Observatory and Taiwan Central Weat... Valuable dropsonde data were obtained from multiple field campaigns targeting tropical cyclones,namely Higos,Nangka,Saudel,and Atsani,over the western North Pacific by the Hong Kong Observatory and Taiwan Central Weather Bureau in 2020.The conditional nonlinear optimal perturbation(CNOP)method has been utilized in real-time to identify the sensitive regions for targeting observations adhering to the procedure of real-time field campaigns for the first time.The observing system experiments were conducted to evaluate the effect of dropsonde data and CNOP sensitivity on TC forecasts in terms of track and intensity,using the Weather Research and Forecasting model.It is shown that the impact of assimilating all dropsonde data on both track and intensity forecasts is case-dependent.However,assimilation using only the dropsonde data inside the sensitive regions displays unanimously positive effects on both the track and intensity forecast,either of which obtains comparable benefits to or greatly reduces deterioration of the skill when assimilating all dropsonde data.Therefore,these results encourage us to further carry out targeting observations for the forecast of tropical cyclones according to CNOP sensitivity. 展开更多
关键词 tropical cyclones targeting observation field campaign CNOP sensitivity dropsonde intensity forecasts
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Possible Sources of Forecast Errors Generated by the Global/Regional Assimilation and Prediction System for Landfalling Tropical Cyclones.PartⅠ:Initial Uncertainties 被引量:4
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作者 Feifan ZHOU Munehiko YAMAGUCHI xiaohao qin 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2016年第7期841-851,共11页
This paper investigates the possible sources of errors associated with tropical cyclone (TC) tracks forecasted using the Global/Regional Assimilation and Prediction System (GRAPES). The GRAPES forecasts were made ... This paper investigates the possible sources of errors associated with tropical cyclone (TC) tracks forecasted using the Global/Regional Assimilation and Prediction System (GRAPES). The GRAPES forecasts were made for 16 landfaIling TCs in the western North Pacific basin during the 2008 and 2009 seasons, with a forecast length of 72 hours, and using the default initial conditions ("initials", hereafter), which are from the NCEP-FNL dataset, as well as ECMWF initials. The forecasts are compared with ECMWF forecasts. The results show that in most TCs, the GRAPES forecasts are improved when using the ECMWF initials compared with the default initials. Compared with the ECMWF initials, the default initials produce lower intensity TCs and a lower intensity subtropical high, but a higher intensity South Asia high and monsoon trough, as well as a higher temperature but lower specific humidity at the TC center. Replacement of the geopotential height and wind fields with the ECMWF initials in and around the TC center at the initial time was found to be the most efficient way to improve the forecasts. In addition, TCs that showed the greatest improvement in forecast accuracy usually had the largest initial uncertainties in TC intensity and were usually in the intensifying phase. The results demonstrate the importance of the initial intensity for TC track forecasts made using GRAPES, and indicate the model is better in describing the intensifying phase than the decaying phase of TCs. Finally, the limit of the improvement indicates that the model error associated with GRAPES forecasts may be the main cause of poor forecasts of landfalling TCs. Thus, further examinations of the model errors are required. 展开更多
关键词 tropical cyclone track forecast error diagnosis Global/Regional Assimilation and Prediction System initialuncertainty
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Ground–Space–Sky Observing System Experiment during Tropical Cyclone Mulan in August 2022
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作者 Pak-wai CHAN Wei HAN +4 位作者 Betty MAK xiaohao qin Yongzhu LIU Ruoying YIN Jincheng WANG 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第2期194-200,共7页
Forecasting tropical cyclone track and intensity is a great challenge for the meteorological community,and safeguarding the life and property of people living near the coast is an important issue.One major reason for ... Forecasting tropical cyclone track and intensity is a great challenge for the meteorological community,and safeguarding the life and property of people living near the coast is an important issue.One major reason for challenging forecasts is the lack of observations over the vast oceans.During tropical cyclone Mulan between 8 and 10 August 2022 over the northern part of the South China Sea,the meteorological authority and research institutes of Chinese mainland collaborated with the meteorological service in Hong Kong on conducting the first-ever ground–space–sky observing system experiment on tropical cyclone Mulan.The enhanced targeted observations collected during the experiment include Geostationary Interferometric Infrared Sounder,round-trip radiosondes,and aircraft-launched dropsondes.This paper describes the campaign,technical details of the meteorological models used,and impact of the additional targeted observation data on the tropical cyclone forecast.Ideally,similar enhanced observation campaigns could be conducted in the future,not only in the northern part of the South China Sea,but also in other ocean basins. 展开更多
关键词 METEOROLOGICAL CYCLONE TROPICAL
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Which Features of the SST Forcing Error Most Likely Disturb the Simulated Intensity of Tropical Cyclones? 被引量:3
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作者 Jiawei YAO Wansuo DUAN xiaohao qin 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2021年第4期581-602,共22页
Among all of the sources of tropical cyclone(TC) intensity forecast errors, the uncertainty of sea surface temperature(SST) has been shown to play a significant role. In the present study, we determine the SST forcing... Among all of the sources of tropical cyclone(TC) intensity forecast errors, the uncertainty of sea surface temperature(SST) has been shown to play a significant role. In the present study, we determine the SST forcing error that causes the largest simulation error of TC intensity during the entire simulation period by using the WRF model with time-dependent SST forcing. The SST forcing error is represented through the application of a nonlinear forcing singular vector(NFSV)structure. For the selected 12 TC cases, the NFSV-type SST forcing errors have a nearly coherent structure with positive(or negative) SST anomalies located along the track of TCs but are especially concentrated in a particular region. This particular region tends to occur during the specific period of the TCs life cycle when the TCs present relatively strong intensity, but are still intensifying just prior to the mature phase, especially within a TC state exhibiting a strong secondary circulation and very high inertial stability. The SST forcing errors located along the TC track during this time period are verified to have the strongest disturbing effect on TC intensity simulation. Physically, the strong inertial stability of TCs during this time period induces a strong response of the secondary circulation from diabatic heating errors induced by the SST forcing error. Consequently, this significantly influences the subsidence within the warm core in the eye region, which,in turn, leads to significant errors in TC intensity. This physical mechanism explains the formation of NSFV-type SST forcing errors. According to the sensitivity of the NFSV-type SST forcing errors, if one increases the density of SST observations along the TC track and assimilates them to the SST forcing field, the skill of TC intensity simulation generated by the WRF model could be greatly improved. However, this adjustment is most advantageous in improving simulation skill during the time period when TCs become strong but are still intensifying just prior to reaching full 展开更多
关键词 tropical cyclone sea surface temperature sensitivity error growth inertial stability
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Pilot Allocation Optimization Using Enhanced Salp Swarm Algorithm for Sparse Channel Estimation 被引量:1
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作者 Ning Li Kun Yao +2 位作者 Zhongliang Deng xiaohao Zhao Jianchang qin 《China Communications》 SCIE CSCD 2021年第11期141-154,共14页
Pilot pattern has a significant effect on the performance of channel estimation based on compressed sensing.However,because of the influence of the number of subcarriers and pilots,the complexity of the enumeration me... Pilot pattern has a significant effect on the performance of channel estimation based on compressed sensing.However,because of the influence of the number of subcarriers and pilots,the complexity of the enumeration method is computationally impractical.The meta-heuristic algorithm of the salp swarm algorithm(SSA)is employed to address this issue.Like most meta-heuristic algorithms,the SSA algorithm is prone to problems such as local optimal values and slow convergence.In this paper,we proposed the CWSSA to enhance the optimization efficiency and robustness by chaotic opposition-based learning strategy,adaptive weight factor,and increasing local search.Experiments show that the test results of the CWSSA on most benchmark functions are better than those of other meta-heuristic algorithms.Besides,the CWSSA algorithm is applied to pilot pattern optimization,and its results are better than other methods in terms of BER and MSE. 展开更多
关键词 OFDM channel estimation CWSSA compressed sensing salp swarm algorithm pilot allocation
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