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1.
This study describes some key ergonomic factors within the engine room, navigation bridge and other locations of a merchant ship. Ergonomic assessments were carried out on a crew of a merchant ship. The study examines the importance of factors such as noise, vibration, heat radiation (in machinery areas), psychological stress and ergonomics of the physical arrangement of the navigation bridge. It also addresses the effect of working in confined areas for a long duration and the need to process large amounts of data, decision-making and the influence of specific operating conditions in different areas of a ship. This study includes analysis of workstations, working methods and the burden of environmental factors as well as a discussion of specific marine environmental conditions such as confined working and leisure spaces, long-term family and sociocultural separation, frequent changes in climate and time zones, and temporary physical overload and long-term psychological burdens.  相似文献   
2.
In this study, balanites Aegyptiaca (L.) Del biodiesel was blended in proportions of 10% and 20% on the volume basis with diesel fuel and tested in a single cylinder, VCR diesel engine under measured load conditions with varied EGR rates (0, 10 and 20%). The results showed that B10 and B20 blends shown a significant reduction rate in terms of NOx emissions that were familiar with biodiesel blends. At peak load conditions, BTE increased slightly for test fuel blends compared with pure diesel fuel while the BSFC rate and EGT suffered from increasing and decreasing nature with respect to blending percentage. From the emissions point of view, with the increase in blends percentage, a significant reduction rate is observed in terms of CO and HC concentrations (up to 12.34 and 17.5%, respectively) while NOx emissions decreased at peak load conditions (up to 24.34%). HC and CO emissions decreased with increase in blends percentage. However, lower levels of NOx and EGT (up to 21.37 and 8.47%, respectively) and the average increase in terms of BTE and BSFC (up to 2.83 and 2.9%, respectively) can be realised with B20 test fuel blend under 20% EGR rate.  相似文献   
3.
HAZOP是分析系统可靠性的一种有效方法,在石油、化工工业中得到了广泛应用。但人工HAZOP分析存在费时、费力、成本高等缺点,而计算机辅助SDG-HAZOP分析的提出有效地改善了人工分析的弊端,然而传统的计算机辅助SDG-HAZOP是纯定性的分析与推理,分析的结果往往过于冗繁。本文介绍了一种改进的基于状态向量推理的计算机辅助SDG-HAZOP分析方法,该方法基于SDG定性模型,构造了一个计算机自动推理引擎,并引入了状态向量的概念,通过正向反向推理,快速高效地发掘出偏差产生的后果和原因。通过应用实践表明,与人工HAZOP分析法和现有SDG-HAZOP分析方法相比,该方法具有完备性好、评价结果系统性和条理性强等优点。  相似文献   
4.
This study investigated the emission characteristics of ultrafine particles based on test bench and on-board measurements. The bench test results showed the ultrafine particle number concentration of the diesel engine to be in the range of (0.56-8.35) × 108 cm-3. The on-board measurement results illustrated that the ultrafine particles were strongly correlated with changes in real-world driving cycles. The particle number concentration was down to 2.0 × 106 cm-3 and 2.7 × 107 cm-3 under decelerating and idling operations and as high as 5.0 × 108 cm-3 under accelerating operation. It was also indicated that the particle number measured by the two methods increased with the growth of engine load at each engine speed in both cases. The particle number presented a "U" shaped distribution with changing speed at high engine load conditions, which implies that the particle number will reach its lowest level at medium engine speeds. The particle sizes of both measurements showed single mode distributions. The peak of particle size was located at about 50-80 nm in the accumulation mode particle range. Nucleation mode particles will significantly increase at low engine load operations like idling and decelerating caused by the high concentration of unburned organic compounds.  相似文献   
5.
某涡轮风扇发动机试车台的声环境研究   总被引:1,自引:0,他引:1  
王娜  万能  汤道敏 《环境工程》2012,(Z1):107-109
涡轮风扇发动机试车台空气流量大,试车噪声呈宽带强噪声,其中突出的低频域噪声可远距离传播,易造成大范围的环境污染。为掌握某型涡轮风扇发动机在室内试车时的噪声特性,并检验试车台建筑物和各项降噪设备的效果,我们对新建试车台的声环境进行了测量。通过对该试车台内、外环境噪声数据的分析,表明新建试车台的声环境满足了我国有关规范的要求。本次研究工作对今后试车台的声学设计具有重要的借鉴意义。  相似文献   
6.
掺甲醇汽油对国III汽油机排放性能影响   总被引:1,自引:1,他引:0  
在一台整车试验满足国III排放法规要求的多点电喷汽油机上,采用甲醇掺入汽油的混合燃料(甲醇的体积分数分别为0%、15%和50%)进行台架试验,使用傅里叶变换红外光谱分析仪(FTIR)在线检测了常规车用三效催化转化器前后的常规和非常规排放.研究结果表明:怠速工况下,掺醇燃料对NOx排放基本没有影响,但CO和HC随掺醇比增加而普遍降低,非常规排放中乙醛排放有所降低,甲醇和甲醛则随掺醇比的增加有较大幅度升高,热怠速时经催化后掺醇燃料对各种排放均无影响,可被控制在极低的水平;其它工况下,随掺醇比增加,CO和HC减少,NOx在高掺醇比下低速低负荷和高速高负荷时有较为明显的改善,非常规排放甲醛和甲醇排放随掺醇比增大而急剧增加,乙醛排放则随之减少.经三效催化转化器作用,无论常规排放NOx、CO和HC,还是非常规排放甲醛、甲醇和乙醛基本上能够实现零排放.  相似文献   
7.
海洋环境下燃气轮机涡轮叶片的热腐蚀与防护   总被引:4,自引:0,他引:4  
涡轮叶片热腐蚀是海洋环境工作下的燃气轮机的典型故障之一,也是决定涡轮叶片使用寿命的主要限制因素之一.简要分析了我国沿海地区海洋环境的特点以及涡轮叶片热腐蚀的特点,讨论了燃气轮机涡轮叶片的热腐蚀机理和影响因素,结果表明叶片表面温度、燃气中的盐含量以及燃油中的硫与钒是导致热腐蚀的重要因素.最后,着重从选材、涂层应用和维护等...  相似文献   
8.
电动增压补气消除柴油机瞬态加速冒烟的试验   总被引:1,自引:0,他引:1  
将自行开发的、适用车载24V电源的电动增压补气系统在一台490QDI柴油机上进行了实验研究.实验工况包括起始负荷分别为0和40N.m的加载加速的瞬态工况以及1400r·min-1、60N·m,1600 r·min-1、90N-m和1800 r.min-1、120N·m 3种低转速、大扭矩稳态工况,针对以上工况分别进行了有无电动增压补气的实验.试验结果表明,有电动增压补气的柴油机同原机相比,零负荷加载加速时的微粒排放降低达70%以上,瞬间输出功率最大可提高54.5%;在稳态工况时,HC、CO排放都随着电机转速的升高而降低,最大减少量分别达到66.7%和75.O%;波许烟度平均减小50%以上.此外,加速补气对提高燃油经济性也有一定效果,比油耗最大能降低7.46%.  相似文献   
9.
The diminishing resources and continuously increasing cost of petroleum in association with their alarming pollution levels from diesel engines has led to an interest in finding alternative fuels to diesel. Emission control and engine efficiency are two of the most important parameters in current engine design. The impending introduction of emission standards such as Euro IV and Euro V has forced research towards developing new technologies for combating engine emissions. This paper examines the effects of compression ratio, swirl augmentation techniques and ethanol addition on the combustion of compressed natural gas (CNG) blended with Honge oil methyl esters (HOME) in a dual fuel engine. The present results show that the combustion of HOME and 15% ethanol blend with CNG induction in a dual-fuel engine operated in optimized parameters at an injection timing of 27° Before Top Dead Centre and a compression ratio of 17.5 resulted in acceptable combustion emissions and improved brake thermal efficiencies. The implementation of swirl augmentation techniques increased brake thermal efficiencies (BTEs) and considerably reduced combustion emissions such as smoke, HC, CO and NOx. The addition of ethanol also increased BTEs. However, at more than 15% of ethanol in HOME, NOx emissions increased dramatically.  相似文献   
10.
Renewable and alternative fuels have numerous advantages compared with fossil fuels as they are renewable and biodegradable and provide food and energy security and foreign exchange savings besides addressing environmental concerns and socio-economic issues (Yaliwal et al. 2013. International Journal of Sustainable Engineering, doi:10.1080/19397038.2013.801530. Zhu et al. 2011a, Applied Thermal Engineering 31 (14–15): 2271–2278; Zhu et al. 2011b, Fuel 90: 1743-1750; Banapurmath, Tewari, and Hosmath 2008, Renewable Energy 33: 2007-2018; Banapurmath 2009, “Performance, Combustion and Emission Characteristics of a Single Cylinder Direct Injection CI Engine Operated on Dual Fuel Mode Using Honge Oil and Producer Gas.” PhD thesis, 1–195; Banapurmath et al. 2011, Waste and Biomass Valorization 2: 1–11). In this context, the main objective of the present work is to study methods of biofuel production such as Honge oil methyl ester (HOME) using a conventional transesterification process and bioethanol from the Calliandra calothyrsus shrub using a new pretreatment method known as hydrothermal explosion. Further, experimental investigations were carried out on a single-cylinder, four-stroke, direct-injection stationary diesel engine operating in a dual-fuel mode using HOME, bioethanol and producer gas combinations to determine its performance, combustion and emission characteristics. The performance of the dual-fuel engine was analyzed at optimized engine conditions. HOME-Bioethanol (BE) blends such as HOME+ 5% bioethanol (BE5), HOME+ 10% bioethanol (BE10) and HOME+ 15% bioethanol (BE15) were prepared by adding bioethanol to HOME (on volume basis) in different proportions ranging from 5 to 15% with an increment of 5%. In this present work, the effect of different BE blends on the performance of producer gas fuelled dual fuel engine was studied. Experimental investigation on dual fuel engine using BE5-Producer gas operation resulted in up to 4–9% increased brake thermal efficiency with decreased hydrocarbon (HC), carbon monoxide (CO) and marginally increased nitric oxide (NOx) emission levels compared to HOME-Producer gas, BE10-producer gas and BE15-producer gas mode of operation. However, it was observed that, the overall performance of BE-producer gas operation was found to be lower compared to diesel-producer gas operation.  相似文献   
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