• Study Resource
  • Explore
    • Arts & Humanities
    • Business
    • Engineering & Technology
    • Foreign Language
    • History
    • Math
    • Science
    • Social Science

    Top subcategories

    • Advanced Math
    • Algebra
    • Basic Math
    • Calculus
    • Geometry
    • Linear Algebra
    • Pre-Algebra
    • Pre-Calculus
    • Statistics And Probability
    • Trigonometry
    • other →

    Top subcategories

    • Astronomy
    • Astrophysics
    • Biology
    • Chemistry
    • Earth Science
    • Environmental Science
    • Health Science
    • Physics
    • other →

    Top subcategories

    • Anthropology
    • Law
    • Political Science
    • Psychology
    • Sociology
    • other →

    Top subcategories

    • Accounting
    • Economics
    • Finance
    • Management
    • other →

    Top subcategories

    • Aerospace Engineering
    • Bioengineering
    • Chemical Engineering
    • Civil Engineering
    • Computer Science
    • Electrical Engineering
    • Industrial Engineering
    • Mechanical Engineering
    • Web Design
    • other →

    Top subcategories

    • Architecture
    • Communications
    • English
    • Gender Studies
    • Music
    • Performing Arts
    • Philosophy
    • Religious Studies
    • Writing
    • other →

    Top subcategories

    • Ancient History
    • European History
    • US History
    • World History
    • other →

    Top subcategories

    • Croatian
    • Czech
    • Finnish
    • Greek
    • Hindi
    • Japanese
    • Korean
    • Persian
    • Swedish
    • Turkish
    • other →
 
Profile Documents Logout
Upload
Heating and cooling
Heating and cooling

Fall 2015
Fall 2015

Pot. Temp handout - Mechanical Engineering | University of Utah
Pot. Temp handout - Mechanical Engineering | University of Utah

... lighter fluid lies below heavier fluid the equilibrium is unstable and small tilting of the density surface will grow and lead to convective motions. From the equation of state, for an adiabatic system, we know that a change in pressure results in a change in Temperature. This change must be account ...
Thermal Convection vs. Thermal Conduction
Thermal Convection vs. Thermal Conduction

Introduction to Solar Energy, Lecture 3     ...
Introduction to Solar Energy, Lecture 3 ...

Cold Plate - L.D.S. System
Cold Plate - L.D.S. System

Specific Heat!
Specific Heat!

Module 6 How to implement thermal insulation to HVAC Services
Module 6 How to implement thermal insulation to HVAC Services

6. Absorption of Heat
6. Absorption of Heat

Transfer of Thermal Energy worksheet
Transfer of Thermal Energy worksheet

ME 3210 Mechatronics – Thermal Systems
ME 3210 Mechatronics – Thermal Systems

Opaque Envelopes - Energy Code Ace
Opaque Envelopes - Energy Code Ace

Location of Voltage on Bare Conductor
Location of Voltage on Bare Conductor

Humidity Ratio - SNS Courseware
Humidity Ratio - SNS Courseware

... • Dew point is also known as saturation temperature. • Dew point temperature is determined by moving from a state point horizontally to the left along lines of constant humidity ratio until the upper, curved, saturation temperature boundary is reached. ...
Problems
Problems

Heat, Enthalpy, Temperature
Heat, Enthalpy, Temperature

me 259 midterm exam #1 review
me 259 midterm exam #1 review

... Know How To: ...
Air thermal bridges
Air thermal bridges

ppt
ppt

Unit 2 Section 5 Vertical Motion in the Atm
Unit 2 Section 5 Vertical Motion in the Atm

... The air parcel can change over time by rising, falling, or emitting or absorbing heat. ...
Passive House Standard Video Tutorial
Passive House Standard Video Tutorial

Atmosphere I
Atmosphere I

... plane of the ecliptic. As the Earth travels around the sun the illuminated surface changes. This gives rise to the seasons. ...
ATMOSPHERE REVIEW SHEET
ATMOSPHERE REVIEW SHEET

heated bar method
heated bar method

specific heat
specific heat

... wooden spoon for the same time, which will have a higher T? ...
< 1 ... 49 50 51 52 53 54 55 56 57 ... 65 >

Dynamic insulation



Dynamic insulation is a form of insulation where cool outside air flowing through the thermal insulation in the envelope of a building will pick up heat from the insulation fibres. Buildings can be designed to exploit this to reduce the transmission heat loss (U-value) and to provide pre-warmed, draft free air to interior spaces. This is known as dynamic insulation since the U-value is no longer constant for a given wall or roof construction but varies with the speed of the air flowing through the insulation (climate adaptive building shell). Dynamic insulation is different from breathing walls. The positive aspects of dynamic insulation need to be weighed against the more conventional approach to building design which is to create an airtight envelope and provide appropriate ventilation using either natural ventilation or mechanical ventilation with heat recovery. The air-tight approach to building envelope design, unlike dynamic insulation, results in a building envelope that provides a consistent performance in terms of heat loss and risk of interstitial condensation that is independent of wind speed and direction. Under certain wind conditions a dynamically insulated building can have a higher heat transmission loss than an air-tight building with the same thickness of insulation.
  • studyres.com © 2025
  • DMCA
  • Privacy
  • Terms
  • Report