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71.
船载式监控系统通常是地面监控系统的衍生品,在海洋的环境下存在信号阻隔以及监控传输缓慢的现象,并且传输过程没有报警系统,针对上述问题,设计一套在船载CCTV海洋环境下的实时监控系统.选用BMG-COZ-NDIR传感器减少来自海洋环境对监控质量的影响,MSP430F149型号微处理芯片处理监控数据时能够分析出异常数据,并发出报警信号,重新修订传感器信号数据压缩编码,完成实时监控指令,设置报警传输编码,执行报警命令.通过编码信令的搭配实现船载海洋环境下的实时监控.通过设计仿真实验得到结论:(1)设计的船载CCTV海洋环境下实时监控系统在海洋环境下能够保持无阻隔的实时监控;(2)实时监控数据的传输质量以及传输效率优于传统监控系统;(3)对异常数据发出警示.  相似文献   
72.
目前桥梁施工安全的研究,从宏观和微观两方面相结合的系统研究比较欠缺.根据大桥施工特点,从时间和空间角度,采取"线-点-面-点-面"分析方法,把桥梁建设的工艺过程看作线,具体的工艺看作点,各工艺的影响因素组成面,把每一影响因素看作点,各影响因素的影响指标组成面,以各工艺点为核心,对事故隐患进行全方位动态分析,结合计算机软...  相似文献   
73.
朱书慧 《环境科学》2023,44(7):3760-3770
有机气溶胶(OA)不仅是大气细颗粒物(PM2.5)的重要组成部分,其与臭氧(O3)污染也密切相关.采用气溶胶在线热脱附(TAG)系统对上海市城区秋冬季大气PM2.5中94种有机分子示踪物浓度进行了在线观测,分析了不同气流轨迹影响下有机气溶胶的组成分布特征以及大气氧化性对其生成的影响.结果表明,本地气团影响下的OA组成以饱和脂肪酸、不饱和脂肪酸和正构烷烃等指示一次来源的有机分子示踪物为主,偏北长距离输送影响下的OA则含有较高比例的生物质燃烧示踪物.与本地气团和长距离输送气团不同,海面气团携带的OA主要由二羧酸和羟基羧酸类指示二次来源的有机分子示踪物构成,其生成受光化学和液相氧化过程影响显著.进一步运用正定矩阵因子分解法(PMF)对PM2.5和OA污染来源进行解析,获得7类一次排放源和5类二次生成源,其中,二次硝酸盐对PM2.5浓度贡献率最为突出(25.2%),移动源则对OA浓度贡献率最高(24.0%).污染过程中,燃煤源、移动源和餐饮源等人为源及其相关的二次生成源(二次硝酸盐、二...  相似文献   
74.
针对传统的可靠性分析方法在具有动态特性的地铁车载ATP系统可靠性分析中的不足,提出动态故障树分析法。在引用可用度、平均失效时间和平均修复时间等可靠性指标的基础上,结合Isograph软件改进动态故障树分析法,建立基于Isograph的动态故障树分析模型,并通过对车载ATP系统的结构与功能分析以及历史故障数据的统计分析确定车载ATP系统的关键部件,使用 Isograph软件预计关键部件的可靠性参数,对地铁车载ATP系统的可靠性进行评估。结果表明:采用该方法求解的系统可靠性指标均满足系统需求,并且精确度较高,运用此方法能够对具有顺序相关、资源共享、可修复以及冷、热备份等特性的系统进行可靠性建模,达到快速以及准确分析动态特性系统可靠性的目的。  相似文献   
75.
内河船舶柴油机的实际排放特征   总被引:4,自引:0,他引:4  
利用由SEMTECH-DS和ELPI组成的PEMS(车载排放测试系统),对京杭运河江苏段具有代表性的12艘内河船舶进行实际排放测试,分析不同工况下CO、HC、NOx和PM的排放. 结果表明:巡航工况下CO、HC和PM排放速率分别为0.093、0.019、0.018g/s,低于进、出港工况;而NOx排放速率为0.347g/s,分别为出港和进港工况的1.66和2.90倍;不同工况外排NO占NOx比例不同,其中巡航工况中外排NO所占比例最大(达到96.7%),而出港和进港工况则分别为93.6%和93.1%. 随着负荷增加,船舶 CO、HC、NO和PM的排放浓度增大,高负荷下CO、HC、NOx、PM的排放浓度比低负荷分别增高89.23%、29.51%、44.72%和229.49%. 由颗粒物的粒径分布可知,3种工况下颗粒物数浓度的粒径分布呈双峰分布,分别对应核模态和积聚模态,粒径<120nm的颗粒物数浓度占总浓度的99.84%以上,PM2.5数浓度占PM10比例均超过99.9%.   相似文献   
76.
ABSTRACT: Records of hourly water temperatures for two streams in the Upper Mississippi River basin were used to find the error between instantaneous measurements of stream water temperatures and true daily averages. The instantaneous summer water temperature measurements were assumed to be collected during daylight hours, and measurement times were selected randomly. The absolute error at the 95 percent confidence level of randomly collected stream water temperatures was less than 0.9°C for a 1 to 5m deep large river, but as large as 3.6°C for a 0.3 to lm deep small stream. Temperature readings of morning samples were usually below daily average values, and afternoon readings were usually above. Daily mean water temperatures were obtained with less than 0.23°C standard deviation from true daily averages if the daily maximum and minimum water temperatures were averaged. Sample results were obtained for the open water (summer) season only, since diurnal water temperature fluctuations in ice covered streams are usually negligible.  相似文献   
77.
ABSTRACT: This paper presents a field investigation of collecting hydrodynamic and sediment data in Lake Okeechobee with analyses examining mechanisms affecting sediment resuspension in the lake. Lake Okeechobee is a large subtropical lake located in south central Florida. Three‐dimensional flow velocities, suspended solids concentrations (SSC), and temperatures at four locations were measured from January 18 to March 5, 2000. Analyses of these data indicate that wind is the dominant factor in driving flow velocities and therefore transporting suspended solids. Wind direction also affects the SSC, especially in the north central and west littoral areas of the lake. The surface and bottom velocity components frequently flow in opposite directions, forming a stratification of the water column and preventing suspended solids from settling out. This retention of SSC in the water column may have a strong impact on the water quality of Lake Okeechobee. This study provides valuable storm event data and mechanism analyses, which will improve our understanding of the transport of suspended solids, thermal exchanges, and flow patterns within Lake Okeechobee.  相似文献   
78.
An attempt at population analysis of sables in the Ural–Ob region of the species range was made with the use of vast biological material (craniometry, 1909 specimens; ecological structure, 2157 specimens; and coat color, 439169 pelts). Population groups in the region were mainly described on the basis of morphological, geographic, historical, and ecological criteria. Seven spatially separated population groups were found, which were named after the main rivers of their habitats: the Tavda–Konda–Sos'va, Dem'yanka, Salym–Yugan, Agan–Vakh, Kazym–Nazym, Nadym–Kunovat, and Pur–Taz groups. They distinctly differed from one another with respect to cranial measurements, coat color, and some structural demographic parameters. In some cases, morphological differences reached the subspecies level. The data obtained make it possible to revise the pattern of geographic variation within the species range.  相似文献   
79.
A tunable diode laser absorption spectrometer (TDLAS) for formaldehyde atmospheric measurements has been set up and validated through comparison experiments with a Fourier transform infrared spectrometer (FT-IR) in a simulation chamber. Formaldehyde was generated in situ in the chamber from reaction of ethene with ozone. Three HCHO ro-vibrational line intensities (at 2909.71, 2912.09 and 2914.46 cm-1) possibly used by TDLAS were calibrated by FT-IR spectra simultaneously recorded in the 1600-3200 cm-1 domain during ethene ozonolysis, enabling the on-line deduction of the varying concentration for HCHO in formation. The experimental line intensities values inferred confirmed the calculated ones from the updated HITRAN database. In addition, the feasibility of stratospheric in situ HCHO measurements using the 2912.09 cm-1 line was demonstrated. The TDLAS performances were also assessed, leading to a 2σ detection limit of 88 ppt in volume mixing ratio with a response time of 60 sec at 30 Torr and 294 K for 112 m optical path. As part of this work, the room-temperature rate constant of this reaction and the HCHO formation yield were found to be in excellent agreement with the compiled literature data.  相似文献   
80.
Due to its simplicity and accurately measuring the flow rate, the venturi system is a special kind of pipe that is widely used in various applied fluid mixtures. One of the venturi system's important applications is ejectors devices that accurately facilitate adding air to water to sustain oxygen demand target levels in many waterworks engineering systems. This study aims to improve venturi system measurement accuracy through experimental investigation and analytical analysis for the venturi system conditional configuration parameters effect on target aeration operational efficiency. In the experiment work, different runs are implemented to characterize the performance of such aerators by describing the impact of venturi characteristics and configurations, including water flow rate, air inlets orifices diameters, inlet velocities, throat lengths, inlet angles, outlets angles, and outlet diameters on aeration efficiency. Results show that the venturi air vent diameter is an important governing parameter for determining aeration performance value. Additionally, an indicated increase in aeration performance with an increasing throat length to its diameter ratio. Meanwhile, the results revealed a varying noted effect of the venturi system characteristics and configurations on aeration performance. Moreover, the equations that relate venturi system configuration and Reynolds numbers with the aeration operational performance are developed to facilitate the target accurate aeration efficiency estimation.  相似文献   
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