Research Article

Optimal Scheduling of Multi-energy System Considering Economy and Energy Conservation

Table 6

Comparison of exergy input and cost under different situations in summer.

Time (h)Exergy1 (105 kWh)Exergy2 (105 kWh)Cost1 (103$)Cost2 (103$)

11.66902.96145.53458.1823
21.61552.42824.63687.8956
31.58011.84343.01484.0601
41.73771.98883.03184.3522
51.63381.82994.20385.0703
61.94721.95944.33704.5690
71.98512.96604.099910.0784
82.21762.22024.49825.9145
92.28143.02037.26679.4220
102.44803.14786.11208.9195
112.31753.18566.77609.1697
122.36643.39587.264110.8285
132.32832.76604.00285.7498
142.22283.23126.30369.3766
152.24243.14986.24439.1928
162.48943.25846.11489.7600
172.69973.32476.60889.0703
182.49433.50977.708710.7322
192.67653.33614.26496.0636
202.47883.35819.114513.2069
212.68623.47176.942910.5788
222.35453.38596.78019.1762
231.86962.08133.88364.2246
241.92402.50402.64114.6140