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ON WELL-CONDITIONED BOUNDARY VALUE PROBLEMS FOR SYSTEMS OF SECOND ORDER DIFFERENCE EQUATIONS
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作者 L.Jodar E.Ponsoda M.Legua Fernandez 《Analysis in Theory and Applications》 1996年第4期81-95,共15页
In this paper well-conditioning of boundary value problems for systems of second order difference equa-tions is studied.First,a sufficient condition for the existence of a unique bounded solution (for large enough num... In this paper well-conditioning of boundary value problems for systems of second order difference equa-tions is studied.First,a sufficient condition for the existence of a unique bounded solution (for large enough number of steps) of an associated homogeneous system is given.Finally,a sufficient condition for well-condi-tioning,intrinsically related to the problem data is proposed. 展开更多
关键词 ON well-conditionED BOUNDARY VALUE PROBLEMS FOR SYSTEMS OF SECOND ORDER DIFFERENCE EQUATIONS
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地温空调成井工艺参数对地下水系统的影响 被引量:2
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作者 米庆彬 付博 +4 位作者 窦明 韩涛 张彦 张坤 张华云 《人民黄河》 CAS 北大核心 2014年第9期44-47,共4页
在对成井环节分析的基础上,识别了对地下水系统影响较为显著的成井工艺参数(即井径和滤水管孔隙率),基于地下水水热运移基本原理,建立了地下水流动和热量输运耦合模型。选取典型地温空调项目,通过设计不同成井工艺参数,模拟地温空调运... 在对成井环节分析的基础上,识别了对地下水系统影响较为显著的成井工艺参数(即井径和滤水管孔隙率),基于地下水水热运移基本原理,建立了地下水流动和热量输运耦合模型。选取典型地温空调项目,通过设计不同成井工艺参数,模拟地温空调运行对地下水流场和温度场的影响。结果显示:不同井径和孔隙率在地温空调运行中,对地下水系统影响程度差别较大,井径对抽水井、回水井的影响比较明显,孔隙率对抽水井的影响大于对回水井的影响,适合安阳市地温空调的井径为30 cm、滤水管孔隙率为30%。 展开更多
关键词 地温空调 成井工艺 地下水系统 影响效果 流场 温度场
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同井回灌循环水方法在中央地温空调中的应用
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作者 陈顺 赵西蓉 毛歆燕 《水文地质工程地质》 CAS CSCD 北大核心 2007年第3期99-101,共3页
文章分析了既环保又节能地利用地下水中热(冷)资源的有效途径,提出了同井回灌循环水方法的新思路,使砂土、粉土地层中地下水在中央地温空调中的应用实现突破,并成功地投入使用。同时与异井回灌方法进行了比较,提出了同井回灌法的优越性。
关键词 同井回灌 地热(冷) 循环水 中央地温空调
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Numerical simulation of squeezing Cu-Water nanofluid flow by a kernel-based method
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作者 Mojtaba Fardi Yasir Khan 《International Journal of Modeling, Simulation, and Scientific Computing》 EI 2022年第1期175-191,共17页
The main aim of this paper is to propose a kernel-based method for solving the problem of squeezing Cu–Water nanofluid flow between parallel disks.Our method is based on Gaussian Hilbert–Schmidt SVD(HS-SVD),which gi... The main aim of this paper is to propose a kernel-based method for solving the problem of squeezing Cu–Water nanofluid flow between parallel disks.Our method is based on Gaussian Hilbert–Schmidt SVD(HS-SVD),which gives an alternate basis for the data-dependent subspace of“native”Hilbert space without ever forming kernel matrix.The well-conditioning linear system is one of the critical advantages of using the alternate basis obtained from HS-SVD.Numerical simulations are performed to illustrate the efficiency and applicability of the proposed method in the sense of accuracy.Numerical results obtained by the proposed method are assessed by comparing available results in references.The results demonstrate that the proposed method can be recommended as a good option to study the squeezing nanofluid flow in engineering problems. 展开更多
关键词 Nanofluid flow Hilbert-Schmidt SVD ILL-CONDITIONING well-conditioning
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