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- Planning criteria for Passive Houses in New Zealand @basics:passive_houses_in_different_climates
- Houses in typical climates of New Zealand. Three different climate zones were selected (chapter 2), in whic... ===== Read more ===== [[basics:passive_houses_in_different_climates:planning_criteria_for_passive_houses_in_... :Climate conditions]] [[basics:passive_houses_in_different_climates:planning_criteria_for_passive_houses_in_... on model and method]] [[basics:passive_houses_in_different_climates:planning_criteria_for_passive_houses_in_
- Basic principle for calculating thermal bridges @basics:building_physics_-_basics:thermal_bridges:tbcalculation
- Passive House buildings in different climates
- ====== Passive House buildings in different climates ====== ==== Passive House buildings: a method rather th... d ventilation and just copy these to a completely different situation because * there is a specific buildi... der consideration. \\ [[basics:passive_houses_in_different_climates:introduction|Read more...]] [{{:picopen:map_ph_different_climates.png?1000| **The principle remains the sa
- The Passive House in summer
- ly reduces the heat exchange between systems with different temperatures. Therefore, it also protects a cool... uring the hot summer of 1993;\\ measured on three different floors on the southern side of the\\ Darmstadt-Kr... cteristics of Passive Houses built according to **different construction methods** and having a **different orientation** – taking account of the type and level of shad
- Introduction - Passive House buildings in different climates @basics:passive_houses_in_different_climates
- ====== Introduction - Passive House buildings in different climates ====== |{{:picopen:map_ph_different_climates.png?800}}| |**The principle remains the same - the de... d ventilation and just copy these to a completely different situation because * there is a specific buildi... specific design of passive houses may look quite different in varying circumstances, the leading principle w
- Efficiency of household appliances and their impact on the primary energy demand of residential buildings @basics:passive_house_-_assuring_a_sustainable_energy_supply
- ared energy efficiency of household appliances in different markets ===== In order to have a reference of th... the declared energy demand of the appliances are different from region to region or country to country. It i... tely represent the best available products in the different markets. [{{ :picopen:energy_user_per.png?direct... 0 |**Table 1** Energy demand per appliance in the different regions. \\ Cells in gray include the normalized
- Passive Houses in hot, humid climates @basics:passive_houses_in_different_climates
- ===== (extract of the study //Passive Houses for different climate zones// which can be ordered [[http://pas... Passive Houses:** \\ [[basics:passive_houses_in_different_climates:hot_humid_climates:dubai|Read more]] {{... ing components:** \\ [[basics:passive_houses_in_different_climates:hot_humid_climates:dubai:hygrothermal an... ====== **Start page - [[basics:passive_houses_in_different_climates|]]** [[basics:passive_houses_in_differe
- Examples of thermal bridge calculations @basics:building_physics_-_basics:thermal_bridges:tbcalculation
- Exterior wall on floor slab @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
- Interior walls on floor slabs @basics:building_physics_-_basics:thermal_bridges:tbcalculation:examples
- Economy and financing of efficiency: new buildings, renovation and step by step retrofit @basics:affordability:investing_in_energy_efficiency
- Passive House – the next decade | Determining application-specific PER factors @basics:passive_house_-_assuring_a_sustainable_energy_supply:passive_house_the_next_decade
- Philips Experimental House Research 1974ff: Passive versus Active Measures in Europe & America @basics:the_passive_house_-_historical_review
- Renewable primary energy demand in residential buildings with high energy intensity @basics:passive_house_-_assuring_a_sustainable_energy_supply
- Factors that influence the energy balance and affordability of non-residential EnerPHit projects @basics:affordability:investing_in_energy_efficiency:economic_feasibility_of_passive_house_retrofits
- Special features and characteristics of components in contact with the ground @basics:building_physics_-_basics:thermal_bridges:tbcalculation:ground_contact
- Recommended procedure for calculating thermal bridges of components in contact with the ground @basics:building_physics_-_basics:thermal_bridges:tbcalculation:ground_contact