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高压天然气管网水力计算精度的研究 被引量:4
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作者 彭继军 杨昭 田贯三 《天然气工业》 EI CAS CSCD 北大核心 2005年第7期96-98,共3页
随着我国城市能源天然气化的发展,出现了高压、超高压管网。对此类管网进行水力计算,必须考虑管路中燃气的可压缩性,而现有燃气管道水力计算公式不适合超高压的情况。为此,筛选出精度较高的BWR状态方程用于高压天然气管网水力计算中的... 随着我国城市能源天然气化的发展,出现了高压、超高压管网。对此类管网进行水力计算,必须考虑管路中燃气的可压缩性,而现有燃气管道水力计算公式不适合超高压的情况。为此,筛选出精度较高的BWR状态方程用于高压天然气管网水力计算中的物性计算,以解决原有城市高压天然气管网水力计算公式不能满足高压低温时精度要求的问题;提出了两种解决原有水力计算公式不能满足高压管网精度要求问题的计算方法,并用实例验证了采用该方法的燃气管网水力计算结果。结果表明,采用该方法可提高高压和超高压管网的水力计算准确性。 展开更多
关键词 天然气管网 计算精度 水力计算公式 高压管网 精度要求 城市能源 可压缩性 燃气管道 物性计算 状态方程 计算方法 计算结果 燃气管网 实例验证 超高压 BWR 准确性
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一种新型微灌技术——微灌地膜 被引量:1
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作者 王胜利 刘峻峰 《节水灌溉》 北大核心 2001年第3期1-3,共3页
本文介绍了微灌地膜的基本性能、结构型式 ,并通过水力性能的测试 ,分析了微孔出流流量 q与工作水头H的关系 ,探讨了微灌地膜毛管的水力计算公式 ,对毛管水流流态进行了分析 ,可供微灌地膜设计和进一步研究参考。
关键词 微灌地膜 毛管 水力性能 结构型式 水力计算公式
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Consolidation analysis of composite foundation with partially penetrated cement fly-ash gravel(CFG) piles under changing permeable boundary conditions 被引量:3
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作者 邹新军 赵增明 徐洞斌 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4019-4026,共8页
Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the ... Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the underlying untreated stratum. Due to the changing permeability property of CFG piles, the whole consolidation process of the composite ground with CFG piles was divided into two stages, i.e., the early stage(permeable CFG pile bodies) and the later stage(impermeable pile bodies). Then, the consolidation equation of the composite foundation with CFG piles was established by using the Terzaghi one-dimensional consolidation theory. Consequently, the unified formula to calculate the excess pore water pressure was derived with the specific solutions for the consolidation degree of composite ground, reinforced area and underlying stratum under instant load obtained respectively. Finally, combined with a numerical example, influencing rules by main factors(including the replacement rate m, the treatment depth h1, the permeability coefficient Ks1, Kv2 and compression modulus Es1, Es2 of reinforced area and underlying stratum) on the consolidation property of composite ground with CFG piles were discussed in detail. The result shows that the consolidation velocity of underlying stratum is slower than that of the reinforced area. However, the consolidation velocity of underlying stratum is slow at first then fast as a result of the transferring of effective stress to the underlying stratum during the dissipating process of excess pore water pressure. 展开更多
关键词 composite ground CFG piles permeability double-layered foundation consolidation degree
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