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Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Date post: 30-Mar-2015
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Sound Analysis of an Amphitheatre
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Page 1: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Sound Analysis of an Amphitheatre

Page 2: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Importing Model to Ecotect Anaysis.

Page 3: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

.3ds geometry--Ecotect

Page 4: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

.3ds geometry--Ecotect

Page 5: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Conclusion: Analysis will retard or take long time.

Page 6: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Revit and Ecotect

Tag the object carefully in Revit for gbxml filetype!

Page 7: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Revit model tagged as shaded part and untagged as un-shaded part.To import gbxml format from revit for analysis, whole part should be completely tagged

Page 8: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Conclusion: Analysis will work but cylindrical geometry will be a mess as ecotect converts it into triangular components.

Page 9: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Cylinder computed by Ecotect becomes more complex triangular geometry

Avoid Complex Geometry as far as possible.

Page 10: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Carefully deleted the outer cylindrical from imported xml file and created cylinder surface on ecotect so that analysis is done smoothly.

More Simplified geometry for Ecotect Model

Page 11: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Acoustical Analysis

Page 12: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Set Sound Source and Reflectors (ceilings)

Page 13: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Generate Rays

Page 14: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Reflector position and orientation calculationAcoustical Analysis

Page 15: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 1Default

Page 16: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 1

12m

dia=30m

Page 17: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 1Default

12m

dia=30m

Page 18: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 1Default

12m

dia=30m

Page 19: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 1Default

dia=30m

12m

Page 20: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Conclusion of Trial 1

• More REVEB sound was detected.• Hence need to modify

-Geometry -Orientation (incident angle etc.)

• Material quality is kept as default.• Hence parameters to control in the analysis

are Reflectors (ceilings) property.

Page 21: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 2Lowering ceiling

Decreased by 3m

9m

dia=30m

Page 22: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 2Lowering ceiling

Decreased by 3m

9m

dia=30m

Page 23: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Decreased by 3m

Trial 2Lowering ceiling

9m

dia=30m

Page 24: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 3Increased by 3m

15m

dia=30m

Page 25: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Trial 3

15m

dia=30m

Page 26: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Conclusion of Trials 2 and 3

• As we change the heights of the ceiling, just above the stage, quality changes drastically

• As we lower more noise is observed• As we higher the ceiling good quality is

observed for same directed ray generated.

Page 27: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Material assignment to the Reflectors at height of 12m

Acoustical Analysis

Page 28: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Assigning all reflectors as Acoustical Tile.

Page 29: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Table to feed different NRC Values

Page 30: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Feeding different Absorptive value for different frequency.

Page 31: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Adding Material-NRC.03

dia=30m

12m

Page 32: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Adding Material-NRC.03

12m

dia=30m

Page 33: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Adding Material-NRC.61

dia=30m

12m

Page 34: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Adding Material-NRC.85

dia=30m

12m

Page 35: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Conclusion of different NRC Values

• For Higher Noise Reduction Coefficients (NRC 0.6 and above) most of the sound waves are observed that leads to Dryness of Sound which seems to be bad of an amphitheatre.

• For lower NRC(0.3) we have variety of sound variation which is not desired

• Hence selected NRC 0.56 which is 12 mm Mineral Fiber Material which is also fire resistant.

Page 36: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Adding Material-NRC.56

12m

dia=30m

Page 37: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Adding Material-NRC.56

12m

dia=30m

Page 38: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Results or Output from Ecotect Analysis.Acoustical Analysis

Page 39: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Acoustical Response

Page 40: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Sound Decay for different frequency

Page 41: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

Reverberation Graph

TOTAL SABINE NOR-ER MIL-SEFREQ. ABSPT. RT(60) RT(60) RT(60)------- -------- ------- ------- ------- 63Hz: 104.349 3.35 2.80 4.87125Hz: 110.039 3.21 2.70 1.70250Hz: 206.346 1.53 1.39 1.13500Hz: 519.030 0.86 0.68 0.57 1kHz: 579.543 0.80 0.60 0.49 2kHz: 485.506 0.86 0.71 0.62 4kHz: 390.240 1.04 0.90 0.82 8kHz: 390.551 1.02 0.90 0.8216kHz: 308.554 1.14 1.07 0.99

Page 42: Importing Model to Ecotect Anaysis. .3ds geometry--Ecotect.

STATISTICAL ACOUSTICS - 18 Room

Volume: 4070.390 m3Surface Area: 761.794 m2Occupancy: 680 (850 x 80%)Optimum RT (500Hz - Speech): 0.99 sOptimum RT (500Hz - Music): 1.65 s

Volume per Seat: 4.789 m3Minimum (Speech): 5.329 m3Minimum (Music): 9.129 m3

Most Suitable: Norris-Eyring (Highly absorbant)Selected: Sabine (Uniformly distributed)


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