Technology in Architecture Lecture 15 Waste & Vent Systems Waste & Vent Sizing Procedure Bathroom Design Lecture 15 Waste & Vent Systems Waste & Vent Sizing.

Slides:



Advertisements
Similar presentations
Typical Plumbing System
Advertisements

INTD 59 bathroom design basics. five basic steps in bath design 1.gathering client & project information 2.setting priorities 3.researching and selecting.
Architectural Drawing
INTD 51 human environments building systems. heating/ventilation/air-conditioning (HVAC) maintain a comfortable indoor climate control temperature and.
PLUMBING DESIGN © Copyright 2008 HVAC Design Solutions1 Essential Design Programs with Accurate Sizing Calculations help to “Streamline Your Design” Essential.
Plumbing System Albert Einstein was named an honorary member of the Plumbers and Steamfitters Union after publicly stating that he would become a plumber.
Chapter 20 Plumbing Plans.
Plumbing for Kitchens & Baths
Understanding and Designing Plumbing Systems
Understanding and Designing Plumbing Systems
Chapter 3.1 Storm Drainage Sizing. Building Drain & Sewer  Building Drain —That part of the lowest piping of a drainage system that receives the discharge.
Plumbing Systems CNST 305 Environmental Systems 1 Dr. Berryman
Chapter 14 Floor-Plan Symbols.
 Determine the waterline components needed to complete the water supply for the bathroom shown in figures 13-6 and 13-7.
Competency: Design and draw interior elevations for kitchens and baths Objective: Explain the elements of kitchen and bath design.
How do each part of a W.C’s work? Don’t worry I will explain everything to you.
Chapter 3.1 Storm Drainage Sizing. Building Drain & Sewer  Building Drain —That part of the lowest piping of a drainage system that receives the discharge.
Presentation Template
Keeping them Straight October 11,  Piping components come in two categories  Building Piping Components  Underground Piping Components.
© Goodheart-Willcox Co., Inc. Permission granted to reproduce for educational use only Warm-up 4/6/15 What type of water do you have at your house? Objective:
Building drainage.
SEWER PIPING DESIGN Sewer piping differs from water piping, in that sewer pipes are not under pressure. The function that takes place inside sewer pipes.
EQUIVA Construction Camp A Joint Project Among: Shell Texas A&M Construction Science Texas Engineering Extension Service Texaco.
CTC 450 Review 1  WW Characteristics. Objectives 2  Understand the basics of storm drainage systems  Understand the basics of sewer systems.
1 HVACR116 – Trade Skills Plumbing, HVAC, Electrical Overview.
Chapter 18 Plumbing Plans.
Residential Construction Unit 5 Energy Efficiencies and Mechanicals Mr. Todzia.
Architectural Graphics UNT in partnership with TEA. Copyright ©. All rights reserved.
BUILDING MATERIAL BUILDING MATERIAL PALESTINE UNIVERSITY chapter No.#7 Mechanical Works Dr. Ali Ibrahim Tayeh.
HVACR116 – Trade Skills Plumbing, HVAC, Electrical Overview.
Copyright © Texas Education Agency, All rights reserved. Architectural Graphics.
111 Dr. Nihad Almughany University of Palestine Faculty of Applied Engineering and Urban Planning Dept. of Architecture 2nd Semester Building.
Technology in Architecture Lecture 14 Upfeed Systems Pipe Sizing Procedure Pipe Sizing Example Lecture 14 Upfeed Systems Pipe Sizing Procedure Pipe Sizing.
Affordable housing project
PLUMBING VENTS A vent is simply described as a device that can take unwanted air from one place and deposit it somewhere else, usually outside. A plumbing.
CON 4003/CVE 4073/CVE 5073 Construction Estimating Prof R. V. Locurcio.
Smoke Testing Information
 Determine the waterline components needed to complete the water supply for the bathroom shown in figures 13-6 and 13-7.
CTC 450 Review 1  WW Characteristics. Objectives 2  Understand the basics of storm drainage systems  Understand the basics of sewer systems.
DOMESTIC DRAINAGE SYSTEM 2012BC25444
House Drainage System By- Prajyoti P. Upganlawar
Unit 209: Drainage systems
Technology in Architecture
Plumbing is the directing of the flow of water. Usually considered in two parts Fresh water supply Pipes, fittings, and fixtures that supply hot and cold.
CTC 450 Review WW Characteristics.
Plumbing System Albert Einstein was named an honorary member of the Plumbers and Steamfitters Union after publicly stating that he would become a plumber.
Sizing Group Vent, Stack , Stack vent
Approximate activity space required
Manitoba Building Officials Conference
Heating Ventilation and Air Conditioning
RESIDENTIAL PLUMBING SYSTEMS (WASTEWATER)
Unit 13 Plumbing Prints. Unit 13 Plumbing Prints.
PLUMBING PLANS CHAPTER 31
Heating Ventilation and Air Conditioning
Typical Plumbing System
ME444 ENGINEERING PIPING SYSTEM DESIGN
Plumbing System Albert Einstein was named an honorary member of the Plumbers and Steamfitters Union after publicly stating that he would become a plumber.
Technology in Architecture
Technology in Architecture
2 Days National Workshop on “National Building Code of India 2016 ”
Heating Ventilation and Air Conditioning
Technology in Architecture
Technology in Architecture
Water Types of water Sewer systems TCU/VIA 6th semester workshop
Technology in Architecture
Technology in Architecture
Plumbing System Albert Einstein was named an honorary member of the Plumbers and Steamfitters Union after publicly stating that he would become a plumber.
Objective: Explain the elements of kitchen and bath design.
Inspection chamber - IC Inspection chamber - IC
Presentation transcript:

Technology in Architecture Lecture 15 Waste & Vent Systems Waste & Vent Sizing Procedure Bathroom Design Lecture 15 Waste & Vent Systems Waste & Vent Sizing Procedure Bathroom Design

Waste & Vent Systems

Fundamentals Siphon action can drain water Trap blocks sewer gas Vent breaks siphon S: p. 1006, F.22.8

Air Gaps Eliminate the potential for cross contamination S: p. 1009, F.22.11

Vents and Stacks Individual vents Circuit vents Soil stack Vent stack Stack vent “Wet stack” Vent through roof (VTR) S: p. 1008, F Note: Drain fittings are 45º

Drains & Sewers House drain House sewer Storm drain Clean outs House traps Fresh air inlet S: p. 1007, F.22.9 Note: Drain fittings are 45º

Waste & Vent Sizing Procedure

1. Identify waste & soil locations Clusters are more efficient S: p. 1014, F.22.17

2. Layout system vertically & horizontally 2. Layout system vertically & horizontally Grouped fixtures can be stacked in a vertical riser S: p. 1027, F.22.31

3. Size Traps Trap size is used when connecting to main S: p. 1017, T.22.2

4. Calculate Drainage Fixture Units (DFU) Pipe sizes based on DFU S: p. 1017, T

5. Determine loads Fixture location may control size S: p. 1022, F.22.24

6. Determine slope and size of horizontal drains 6. Determine slope and size of horizontal drains Slope may be constrained by depth of floor cavity S: p. 1020, T.22.5

7. Verify maximum vent length Measured from plans S: p. 1022, F.22.24

8. Size vents according to DFU and length Calculate for each vent load and developed length S: p. 1019, T.22.4

9. Verify space requirements and adjust design Common adjustments “Wet” walls  6” cavity Slope and ceiling exposure Cleanout access

Bathroom Design

Design Considerations ADA compliance ANSI Standard A Wheel chair access Grab bars Counter top/fixture heights Visual privacy Acoustical privacy