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61.
Impacts of commuting efficiency on congestion and emissions: case of the Hamilton CMA, Canada 总被引:1,自引:0,他引:1
Darren M Scott Pavlos S Kanaroglou William P Anderson 《Transportation Research Part D: Transport and Environment》1997,2(4):245-257
This study uses IMULATE (Integrated Model of Urban LAnd use, Transportation, energy and Emissions) to examine the impacts of commuting efficiency on congestion and automobile emissions—specifically, non-methane hydrocarbons, carbon monoxide and nitrogen oxides—in the Hamilton Census Metropolitan Area. Estimates of these externalities are compared for two commuting scenarios: a base scenario of estimated commuting flows for 1991 and an optimal scenario in which the mean commuting time for all workers is minimized. The findings indicate that significant reductions in congestion and automobile emissions are possible by advocating policies that encourage greater commuting efficiency in the locational choices of workers. The analysis of jobs–housing balance as one such means suggests that a considerable proportion of commuting cannot be explained by geographical imbalances in the distributions of jobs and housing, and that workers consider many factors besides commuting costs in their locational choices. It is concluded that policies promoting jobs–housing balance as the principal strategy for facilitating more efficient commuting may not meet the expectations of policy-makers. 相似文献
62.
导管对螺旋桨水动力性能的影响 总被引:2,自引:0,他引:2
以面元法为数值计算方法,采用双曲面元以消除面元间的缝隙.分别计算螺旋桨和导管,二者之间的影响通过迭代方法加以考虑.螺旋桨对导管的诱导速度在导管表面周向平均,导管对螺旋桨的诱导速度在螺旋桨盘面处周向平均,从而使导管周围和螺旋桨周围的非定常流动简化为定常流动.应用该方法编制了程序,计算了导管桨的水动力性能,进一步研究了导管的大小、形状、位置等因素对螺旋桨的水动力性能、表面压力分布、叶片环量分布等的影响. 相似文献
63.
64.
J.J. McPhee R.J. Anderson 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》1996,25(5):349-367
The set of differential equations governing the motion of an unrestrained coned wheelset travelling on a tangent section of track and acted upon by creep forces arising from the contact between wheel and rail are, in the terminology of numerical analysis, extremely "stiff". This stiffness can be attributed to the existence of two negative real eigenvalues in the solution of the eigenproblem associated with the linearized equations of motion. Compared with the two complex conjugate eigenvalues that complete this solution, the real eigenvalues have large magnitudes and necessitate that relatively. small timesteps be used in order to obtain an accurate numerical integration of the full set of equations of motion. However, by truncating the set of left and right eigenvectors to eliminate these real eigenvalues in a modal analysis of the wheelset, it was found that their contribution to the overall dynamic response is negligible. This same modal truncation approach was then applied to the sub-structured equations of motion for a simple rail vehicle system consisting of two wheelsets connected to a main body by linear springs and dampers. Essentially, the physical degrees of freedom for each wheelset substructure were replaced by a single complex coordinate obtained from the previous normal modes analysis. Using this model reduction procedure, accurate numerical results for the motion of the rail vehicle were generated several times faster than the results obtained by numerically integrating the full set of differential equations directly. 相似文献
65.
J. Edward Anderson 《先进运输杂志》1996,30(3):1-3
This note derives an equation for the ratio of the maximum possible station flow to average line flow in a personal rapid transit or dual-mode system using fully synchronous control. It is shown that such a system is impractical except in very small networks. 相似文献
66.
J. Edward Anderson 《先进运输杂志》1984,18(1):77-111
The transit industry is facing declining ridership and increasing costs with with no apparent end in sight. This paper takes the view that totally new solutions are needed. The approach is to examine the equation for total cost of a transit system per passenger-mile to determine how to configure a new system to minimize this quantity. Term-by-term analysis leads to derivation of a consistent set of optimum characteristics. Guideway costs are minimized by distributing the load in very small capsules. The fleet cost is minimized by increasing the average speed without increasing the cruising speed by use of off-line stations, which in turn minimize energy use by permitting nonstop trips. Maintenance costs are minimized by designing a very light-weight, automated vehicle with very few moving parts. While this general configuration has been known for several decades, it has not been generally recognized that it can be derived by minimization of system costs, and that cost minimization is obtained simultaneously with service maximization. While a great deal of controversy surrounded this concept a decade ago, advances in technology make it fully practical now. 相似文献