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排序方式: 共有181条查询结果,搜索用时 31 毫秒
31.
运用Fluent软件对重庆市嘉陵江化龙桥段瑞安新天地江水水源热泵系统尾水排入受纳水域的过程进行二维数值模拟,选取Fluent中非耦合、隐式求解器对模型内的定常流动进行求解,得出受纳水域受水源热泵系统温排水影响后的温升面积和温度梯度。结果表明:在温排水流量为2.0×103 m3/h、温差为4℃的条件下,计算该水域沿水流方向温升超过1℃的最大影响距离为150.4 m,温升超过1℃的水域面积约为1 525 m2,为模拟江水面积的8.59%。选取1℃温升值作为温升带的边界控制值,并在热泵系统最大负荷工况下,根据W=Q×ΔT计算研究水域热环境容量为19.402 m3.℃/s,剩余热环境容量为17.736 m3.℃/s。根据地表水环境质量标准,该工程温排水量小于受纳水域的热承载力,不会对受纳水域生态环境造成热污染。 相似文献
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为研究层次分析法在安全评价中权重确定受主观因素影响较大的问题,提出将突变理论和模糊数学相结合的突变级数评价模型。模型考虑离心泵机组的结构、故障模式及人员管理等因素建立多层次评价指标体系,并结合模糊数学确定底层指标的隶属函数矩阵;利用突变级数法对各指标进行标准化和归一化处理;将底层指标隶属函数矩阵逐级量化递归得到总突变隶属矩阵。研究结果表明:此离心泵机组的最大总突变隶属函数值达到了0.961 9,即为“良好”。但同时也发现第一级与第二级相差不大,说明只要采取一定的安全措施,就可提高此离心泵的安全性。分析结果与实际情况相符合。 相似文献
33.
AHP—模糊综合评价法在离心泵安全评价中的应用 总被引:1,自引:1,他引:0
将模糊综合评价法与层次分析法相结合,建立基于AHP—模糊综合评价模型,并探讨基于AHP—模糊综合评价方法在离心泵安全评价方面的应用。根据离心泵系统的结构、实际运行情况、常见故障模型及历史故障数据建立安全评价指标体系,结合层次分析法确定矩阵权重值,确定单级模糊综合评价结果;利用上述评价结果,可以进行多级模糊综合评价,最后得出离心泵的安全等级。此外,应用Microsoft Visual Studio 2008软件开发工具和Matlab数学软件编制评价程序,提高实用性。 相似文献
34.
介绍了气力输送系统在电厂660MW机组除灰中的应用,并对飞灰特性,以及除灰系统设计、关键技术运用、运行情况、设备维护和故障处理等问题进行了分析论述。 相似文献
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为“挖掘”输油泵机组风险根源,降低设备预知性维护难度,结合输油泵多准则风险评价,提出1种基于等级全息建模的输油泵机组风险根源辨识方法,运用等级全息建模方法将输油泵系统分解为泵体结构、管理因素、环境因素、操作因素、技术因素、运行因素、设备安装7个子系统进行定性和定量分析。结果表明:相比危险与可操作性分析(HAZOP)、事故树分析(FTA)等传统风险辨识方法,等级全息建模(HHM)对轴承等关键部件以及压力等运行参数的监测更为深入,能够有效辨识输油泵机组高风险情景,提升输油泵的风险辨识效率。 相似文献
37.
ABSTRACT Refrigerant pressure drop and temperature change in pipes are normally ignored in the thermodynamic analysis of traditional vehicle air conditioning system, this will result in serious errors. In this Paper, pressure drop and temperature difference are simulated in different pipes of electric vehicle (EV) heat pump system to analysis the effects of pipes in the actual EV heat pump system. The results indicate that the greater the mass flow, the faster pressure drop increases, the temperature difference decreases. Pressure drop of saturated liquid refrigerant is smaller than that of saturated gas refrigerant at the same saturation pressure and mass flow rate. The higher the refrigerant pressure (no phase change), the slower pressure drop decreases, the faster the temperature difference decreases. Pressure drop decreases with the increment of bending angle of the pipe. For EV heat pump system, suitable valves and less branches are helpful for energy saving of the system. Shortening the pipe between compressor and condenser can reduce temperature change obviously. Pressure drop per unit length in the pipe between evaporator and compressor is large especially in heating mode because of lower refrigerant density. It even reaches to over 100 times of that in the pipe between condenser and throttle valve in heating mode and has negative effects on the performance of the system. If the evaporator is closer to the compressor and the number of branches is less, then pressure drop will decrease a lot, which will be advantageous for energy saving of the heat pump system. 相似文献
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39.
Davide Chiaroni Vittorio Chiesa Simone Franzò Federico Frattini 《International Journal of Green Energy》2017,14(11):889-898
This article investigates the impact that the electricity tariff reform is likely to have on investments in renewable energies (i.e., photovoltaics) and the adoption of energy efficiency measures (i.e., installation of heat pumps and efficient home appliances) in the residential market in Italy. The study develops detailed cost comparisons and simulations considering two different investment scenarios (before and after the reform) to conclude that the reform will: (i) have a negative impact on investments in photovoltaic systems; (ii) favor the adoption of energy efficiency measures, such as efficient home appliances. 相似文献
40.
Julia E. Kelso Michelle A. Baker 《Journal of the American Water Resources Association》2016,52(1):262-268
Water quality monitoring programs across multiple disciplines use total suspended solids (TSS), and volatile suspended solids (VSS), to assess potential impairments of surface water and groundwater. While previous methods for instream filtering have been developed, the need for rapid, cost‐effective, high volume sampling has increased with the need to verify and supplement data produced by sondes and instantaneous data loggers. We present an efficient method to filter water instream with a portable drill pump that results in reduced sample processing time, and potentially reduced error associated with sample transportation, preservation, contamination, and homogenization. This technical note outlines the advantages of filtering instream vs. in the laboratory. It also compares TSS and VSS concentrations filtered with a drill pump vs. standard filtration methods with a vacuum pump as outlined by USEPA methods 160.2 and 160.4. Samples were collected at 4 sites and filtered in the field, or transported to the laboratory and filtered within 12 or 24 h of collection. Overall TSS and VSS samples filtered instream with a drill pump vs. in the laboratory produced similar concentrations with a similar range in variability for each method. Sample filtering with a drill pump decreased processing time by five minutes per sample. 相似文献