Microclimatic modeling of the urban thermal environment of singapore to mitigate urban heat island a

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Microclimatic modeling of the urban thermal environment of singapore to mitigate urban heat island a

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APPENDIX A Figure Figure Velocities and temperatures for different geometries Velocity vectors at 60m height for H/W = 1.5 (Model parallel wind flow) Velocity vectors at 60m height for H/W = (Model parallel wind flow) Figure Velocity vectors at Point for H/W 0.6 (Model parallel wind) 3.5 Model 1_1.5m Model 1_5m Velocity (m/s) Model 1_10m 2.5 Model 1_15m Model 2_1.5m Model 2_5m Model 2_10m 1.5 Model 2_15m Model 2_30m 0.5 Model 2_60m 1.5 0.8 0.6 0.4 H/W ratio Figure Velocities at Point (perpendicular wind flow) Figure Figure Velocity vectors at Point when H/W = 1.5 (Model perpendicular wind flow) Velocity vectors at Point when H/W = (Model perpendicular wind flow) Figure Figure Velocity vectors at Point for H/W = 0.8 (Model perpendicular wind flow) Vectors at Point for H/W= 0.4 (Model perpendicular wind flow) 31.8 31.6 Model 1_1.5m Temperature (°C) Model 1_5m 31.4 Model 1_10m Model 1_15m 31.2 Model 2_1.5m Model 2_5m 31 Model 2_10m Model 2_15m 30.8 Model 2_30m Model 2_60m 30.6 30.4 1.5 0.8 0.6 0.4 H/W ratio Figure Figure 10 Temperatures at Point (perpendicular wind flow) Temperature contour at Point for H/W =1.5 (Model perpendicular wind flow) Figure 11 Temperature contours at Point for H/W 0.6 (Model perpendicular wind flow) Model 1_1.5m 2.5 Velocity (m/s) Model 1_5m Model 1_10m Model 1_15m Model 2_1.5m 1.5 Model 2_5m Model 2_10m Model 2_15m Model 2_30m 0.5 Model 2_60m 1.5 0.8 0.6 0.4 H/W ratio Figure 12 Velocities at Point (perpendicular wind flow) 31.4 31.3 Model 1_1.5m 31.2 Temperature (°C) Model 1_5m 31.1 Model 1_10m Model 1_15m 31 Model 2_1.5m 30.9 Model 2_5m 30.8 Model 2_10m 30.7 Model 2_15m Model 2_30m 30.6 Model 2_60m 30.5 30.4 1.5 0.8 0.6 0.4 H/W ratio Figure 13 Figure 14 Temperatures at Point (perpendicular wind flow) Temperature contours at Point for H/W = 1.5 (Model perpendicular wind flow) Figure 15 Figure 16 Temperature contours at Point for H/W = 0.4 (Model perpendicular wind flow) Temperature contours at Point for H/W 1.5 (Model perpendicular wind flow) Figure 17 Temperature contours at Point for H/W 0.6 (Model perpendicular wind flow) Figure 18 Velocity vectors at Point for H/W 1.5 (Model perpendicular wind flow) Figure 19 Figure 20 Velocity vectors at Point for H/W (Model perpendicular wind flow) Velocity vectors at Point for H/W 0.8 (Model perpendicular wind flow) Figure 21 Velocity vectors at Point for H/W 0.6 (Model perpendicular wind flow) Figure 22 Velocity vectors at Point for H/W 0.4 (Model perpendicular wind flow) [...]...Figure 21 Velocity vectors at Point 3 for H/W 0.6 (Model 2 perpendicular wind flow) Figure 22 Velocity vectors at Point 3 for H/W 0.4 (Model 2 perpendicular wind flow) . APPENDIX A Velocities and temperatures for different geometries Figure 1 Velocity vectors at 60m height for H/W = 1.5 (Model 2 parallel wind flow) Figure 2 Velocity vectors at. Temperature contours at Point 3 for H/W = 1.5 (Model 1 perpendicular wind flow) Figure 15 Temperature contours at Point 3 for H/W = 0.4 (Model 1 perpendicular wind flow) Figure 16 Temperature. contours at Point 3 for H/W 1.5 (Model 2 perpendicular wind flow) Figure 17 Temperature contours at Point 3 for H/W 0.6 (Model 2 perpendicular wind flow) Figure 18 Velocity vectors at

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