, 15 2.2 Network structure, solution approaches, and modeling approaches for stochastic programming models, Network structure, key decisions and solution approaches for deterministic distribution network studies

, Network structure, key decisions and solution approaches in multi-period planning horizon distribution network studies

.. .. Demand,

, Average statistical optimality gap values

, Evaluation of the stochastic solution

, The average computational time (CPU)

, Mean value and MSD deviations for (LCA(? N )) under (P6,P7

, Best location decisions for (LCA(? N ))

. .. ?-n-)), 54 3.10 The impact of capacity configuration on the location decisions, Best location decisions for, p.54

. .. Test-problems-size,

.. .. Demand,

L. T. I1, T. C. Nit)-instances, and .. .. , Average statistical optimality gap values for, p.79

, Average results per problem-instance

, Location decisions and their operating periods for 5-4/./20-25, p.83

, Location decisions and their operating periods for 5-4/./50-15, p.84

, Location decisions and their operating periods for the customer dispersion attribute (I1 vs I2)

, Comparison between static and multi-period modeling approach, p.88

. .. Test-problems-size,

, Mean value and MSD deviations for (LCA(? N )) for problem sizes P4 and P5, p.126

, Mean value and MSD deviations for (LCA(? N )) for problem sizes P2 and P3, p.127

, Best location decisions for (LCA(? N ))

, Best location decisions for (LAF(? N ))

D. , Average results under attributes (.,.,.,.) with sequential approach, p.135

, Detailed results for 5-4/12/15-25

, Location decisions and their operating periods for 5-4/./15-25, p.138

. .. , 20 3.1 A potential Two-Echelon Distribution Network Design Problem (2E-DDP) . . 27 3.2 Decision time hierarchy for the planning horizon under uncertainty, D.5 Location decisions under static modeling

. .. , Capacity decisions versus demand for Dis-P6-LL-500 in (LCA(? N )), p.57

. .. , Capacity decisions versus demand for Dis-P6-LL-500 in (LAF(? N )), p.58

, A potential two-echelon capacitated location-routing problem (2E-CLRP), p.63

, Main steps of our solution approach

, Representation of two-echelon urban area

. I1, . Lt, and .. ). Tc, Capacity-allocation decisions from multi-period modeling approach versus the a priori capacity C l for 5-4/8/15-25, p.86

. I1, . Lt, and .. ). Tc, Capacity-allocation decisions from multi-period modeling approach versus the a priori capacity C l for 5-4/8/20-25, p.86

. I1, . Lt, and .. ). Tc, Capacity-allocation decisions from static modeling approach versus the a priori capacity C l for 5-4/8/20-25

, A potential Two-Echelon Distribution Network Design Problem (2E-DDP), p.93

, Decision time hierarchy for the planning horizon under uncertainty, p.97

, Multi-stage stochastic trees with both strategic and operational time periods, p.98

. .. , An illustration of the rolling horizon algorithm with T RH " 1, vol.104

. .. , /16/25-243 with H " 1, p.111

B. , Capacity allocation decisions versus the a priori capacity for Con-P6-HL-500 in (LCA(? N ))

. .. , Capacity decisions versus demand for Con-P6-HL-500 in (LCA(? N )), p.130

B. ;. , 3 Capacity decisions versus demand for Con-P6-HL-500 in (LAF(? N )), p.131

, A generic Two-Echelon Distribution Network Design Problem (2E-DDP), p.142

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