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AECDAILY HS EN 174302 0325:2025 Edition

$63.70

How Automated Parking Can Improve Building Design

Published By Publication Date Number of Pages
AECDAILY 2025
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PDF Catalog

PDF Pages PDF Title
1 Slide 1
2 Slide 2: How Automated Parking Can Improve Building Design
3 Slide 3
4 Slide 4: How to Use This Online Learning Course
5 Slide 5: Purpose and Learning Objectives
6 Slide 6: Contents
7 Slide 7: What Is Automated Parking?
8 Slide 8: What Is Automated Parking?
9 Slide 9: Benefits of Automated Parking
10 Slide 10: Optimizing Space
11 Slide 11: Efficient Use of Space
12 Slide 12: Optimizing Space
13 Slide 13: Optimizing Space
14 Slide 14: Optimizing Space
15 Slide 15: Benefits of Improved Efficiency
16 Slide 16: Other Benefits
17 Slide 17: Design Versatility of Automated Parking
18 Slide 18
19 Slide 19
20 Slide 20: When to Use Automated Parking
21 Slide 21: When to Use Automated Parking
22 Slide 22: When to Use Automated Parking
23 Slide 23: Building on an Infill Site
24 Slide 24: Building on an Infill Site
25 Slide 25: Building on an Infill Site
26 Slide 26: Using Automated Parking for an Infill Site
27 Slide 27: Building on an Infill Site
28 Slide 28: Automated Parking for an Infill Site
29 Slide 29: Automated Parking for an Infill Site
30 Slide 30: Automated Parking for an Infill Site
31 Slide 31: Different Types of Automated Parking
32 Slide 32: Dependent vs. Independent Access
33 Slide 33: Dependent Access Parking Stackers
34 Slide 34: Dependent Access Parking Stackers
35 Slide 35: Dependent Access Parking Stackers
36 Slide 36: Height of Dependent Access Parking Stackers
37 Slide 37: Dependent Access Parking Stacker Considerations
38 Slide 38: Dependent Access Parking Stacker Considerations
39 Slide 39: Dependent Access Parking Stacker Considerations
40 Slide 40: Dependent Access Parking Stacker Considerations
41 Slide 41: Dependent Access Parking Stackers
42 Slide 42: Independent Access Parking Systems
43 Slide 43: Independent Access Mechanical Parking Systems
44 Slide 44: Independent Access Mechanical Parking Systems
45 Slide 45: Features of an Independent Access Mechanical System
46 Slide 46: Semiautomated Independent Access Parking Systems
47 Slide 47: Semiautomated Systems
48 Slide 48: Video of Semiautomated Parking System
49 Slide 49: Semiautomated Systems
50 Slide 50: How Semiautomated Systems Move
51 Slide 51: Semiautomated Systems
52 Slide 52: Semiautomated Systems
53 Slide 53: Semiautomated Systems
54 Slide 54: Column Placement in Semiautomated Systems
55 Slide 55: Column Placement in Semiautomated Systems
56 Slide 56: Semiautomated Systems
57 Slide 57: Fully Automated Systems
58 Slide 58: Video of Fully Automated System
59 Slide 59: Fully Automated Systems
60 Slide 60: Fully Automated Systems
61 Slide 61: Fully Automated Systems
62 Slide 62: Designing Fully Automated Systems for Throughput
63 Slide 63: Design Considerations for Fully Automated Systems
64 Slide 64: Performance Guidelines for Throughput
65 Slide 65: Access/Retrieval Time
66 Slide 66: Fill/Emptying Time and Parking Processes/Hour
67 Slide 67: Throughput Requirement Depends on Use
68 Slide 68
69 Slide 69
70 Slide 70
71 Slide 71
72 Slide 72: Choosing Automated Parking
73 Slide 73: Guidelines for Selecting an Automated System
74 Slide 74: Ask the Right Questions
75 Slide 75: Be Wary of Misleading Data When Choosing a System
76 Slide 76: Understand the User and Use Patterns
77 Slide 77: Understand the User and Use Patterns
78 Slide 78: Examine Physical Constraints
79 Slide 79: Other Opportunities
80 Slide 80: Additional Options
81 Slide 81: Complying with ADA in Fully Automated Systems
82 Slide 82: Electric Vehicle Charging
83 Slide 83: Smartphone App
84 Slide 84: Video of Bicycle Storage
85 Slide 85: Case Studies
86 Slide 86: The Phoenix Building
87 Slide 87: The Phoenix Building
88 Slide 88: The Phoenix Building
89 Slide 89: Torre Reforma Building
90 Slide 90: Torre Reforma Building
91 Slide 91: Summary
92 Slide 92: Summary
93 Slide 93: Resources
94 Slide 94: Thank You
AECDAILY HS EN 174302 0325
$63.70