AECDAILY WR EN 160503 0325:2025 Edition
$43.55
Basics of Moisture Movement Through the Building Enclosure
Published By | Publication Date | Number of Pages |
AECDAILY | 2025 |
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | Slide 1 |
2 | Slide 2: Basics of Moisture Movement Through the Building Enclosure |
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: Moisture Movement Within Buildings Introduction |
8 | Slide 8: Introduction |
9 | Slide 9: Introduction |
10 | Slide 10: Moisture Movement Concerns |
11 | Slide 11: Above-Grade Moisture Movement |
12 | Slide 12: Hydrological (Water) Cycle |
13 | Slide 13: Dew Point |
14 | Slide 14: Forces of Moisture Movement Above Grade |
15 | Slide 15: Moisture Movement by Air Transport vs. Vapor Diffusion |
16 | Slide 16: Air Leakage and Consequences |
17 | Slide 17: Control Layers Above Grade |
18 | Slide 18: Building Envelope Control Layers |
19 | Slide 19: Water Control Layer |
20 | Slide 20: Air Leakage Control Layer |
21 | Slide 21: Importance of the Air Control Layer |
22 | Slide 22: Vapor Control Layer |
23 | Slide 23: Vapor Control Layer |
24 | Slide 24: Air Barrier Systems |
25 | Slide 25: Effective Air Barrier System Materials |
26 | Slide 26: Types of Air Barrier Materials |
27 | Slide 27: Types of Air Barrier Materials: Self-Adhered Sheet Membranes |
28 | Slide 28: Types of Air Barrier Materials: Fluid-Applied Membranes |
29 | Slide 29: Types of Air Barrier Materials: Fluid-Applied Foaming Materials |
30 | Slide 30: Types of Air Barrier Materials: Mechanically Fastened Materials |
31 | Slide 31: Review Question |
32 | Slide 32: Answer |
33 | Slide 33: Liquid Moisture Movement |
34 | Slide 34: Sources of Water Below Grade |
35 | Slide 35: How Does Water Enter a Structure Below Grade? |
36 | Slide 36: Common Substrates |
37 | Slide 37: What Determines the Extent of Water Penetration? |
38 | Slide 38: Consequences of Water Intrusion |
39 | Slide 39: Structural Waterproofing Systems |
40 | Slide 40: Waterproofing vs. Dampproofing vs. Vaporproofing |
41 | Slide 41: Positive Side or Negative Side? |
42 | Slide 42: Waterproofing System Characteristics |
43 | Slide 43: Types of Waterproofing Materials |
44 | Slide 44: Self-Adhering Sheet Membranes |
45 | Slide 45: Self-Adhering Sheet Membrane Characteristics |
46 | Slide 46: Thermofusible (Torch-On) Sheet Membranes |
47 | Slide 47: Thermofusible (Torch-On) Sheet Membrane Characteristics |
48 | Slide 48: Hot Fluid-Applied Membranes |
49 | Slide 49: Hot Fluid-Applied Membranes |
50 | Slide 50: Cold Fluid-Applied Membranes |
51 | Slide 51: Cold Fluid-Applied Membranes |
52 | Slide 52: Blindside/Underslab Waterproofing Systems |
53 | Slide 53: Membrane Protection |
54 | Slide 54: Cementitious Waterproofing |
55 | Slide 55: Review Question |
56 | Slide 56: Answer |
57 | Slide 57: Underslab Moisture Movement |
58 | Slide 58: How Does Moisture Enter Underslab? |
59 | Slide 59: Vapor Pressure |
60 | Slide 60: How Much Moisture? |
61 | Slide 61: Consequences of Underslab Moisture Infiltration |
62 | Slide 62: Underslab Vapor Retarder Systems |
63 | Slide 63: Vapor Barrier vs. Vapor Retarder |
64 | Slide 64: Industry Standards and Guidelines |
65 | Slide 65: Vapor Retarders |
66 | Slide 66: Vapor Retarder Placement |
67 | Slide 67: Installation |
68 | Slide 68: Review Question |
69 | Slide 69: Answer |
70 | Slide 70: Design and Specification |
71 | Slide 71: System Design |
72 | Slide 72: Specification |
73 | Slide 73: Material Selection |
74 | Slide 74: Preinstallation Meeting |
75 | Slide 75: Summary |
76 | Slide 76: Summary |
77 | Slide 77: Thank You |