Certification Documentation - Intressegrupp Passivhus Sverige · 2019. 3. 24. · 02ud Lamilux...

81
Certificate-ID: 20215_Krause_PH_20190219_KrH Certification Documentation This building has been awarded the Certified Passive House seal by Prof. Dr. Harald Krause. This certification is based solely on the design data and specifications provided Prof. Dr. Harald Krause by the client for the purpose of certification. Prof. Dr. Harald Krause has checked and approved the building’s energy balances according to these data. This certification does not cover quality assurance of the construction work or design implementation. Prof. Dr. Harald Krause hereby takes no responsibility for any faults in the above.

Transcript of Certification Documentation - Intressegrupp Passivhus Sverige · 2019. 3. 24. · 02ud Lamilux...

  • Certificate-ID: 20215_Krause_PH_20190219_KrH

    Certification Documentation

    This building has been awarded the Certified Passive House seal by Prof. Dr. Harald Krause.

    This certification is based solely on the design data and specifications provided Prof. Dr.

    Harald Krause by the client for the purpose of certification. Prof. Dr. Harald Krause has

    checked and approved the building’s energy balances according to these data.

    This certification does not cover quality assurance of the construction work or design

    implementation. Prof. Dr. Harald Krause hereby takes no responsibility for any faults in the

    above.

  • Certificate-ID: 20215_Krause_PH_20190219_KrH

    Certification Documentation

    CONTENT

    PHPP certified

    Construction manager´s declaration

    Report of air tightness measurement

    HRV commissioning report

  • Passive House VerificationPhoto or Drawing Building:

    Street:

    Postcode/City: 74147

    Province/Country:

    Building type:

    Climate data set: SE0001a-Stockholm

    Climate zone: 2: Cold Altitude of location: 30 m

    Home owner / Client:

    Street:

    Postcode/City: 74140

    Province/Country:

    Architecture: Mechanical engineer:

    Street: Street:

    Postcode/City: 116 20 Postcode/City: 80320

    Province/Country: Province/Country:

    Energy consultancy: Certification:

    Street: Street:

    Postcode/City: 352 36 Postcode/City: 83122 Samerberg-Törwang

    Province/Country: Province/Country:

    Year of construction: 2017 Interior temperature winter [°C]: 20,0 Interior temp. summer [°C]: 25,0

    No. of dwelling units: 1 Internal heat gains (IHG) heating case [W/m2]: 2,8 IHG cooling case [W/m²]: 2,8

    No. of occupants: 800,0 Specific capacity [Wh/K per m² TFA]: 132 Mechanical cooling:

    Specific building characteristics with reference to the treated floor area

    Treated floor area m² 6129,9 Criteria Fullfilled?2

    Space heating Heating demand kWh/(m²a) 7 ≤ 15 -

    Heating load W/m² 6 ≤ - 10

    Space cooling Cooling & dehum. demand kWh/(m²a) - ≤ - -

    Cooling load W/m² - ≤ - -

    Frequency of overheating (> 25 °C) % 0 ≤ 10 yesFrequency of excessively high humidity (> 12 g/kg) % 0 ≤ 20 yes

    Airtightness Pressurization test result n50 1/h 0,1 ≤ 0,6 yes

    PE demand kWh/(m²a) 128 ≤ - -

    PER demand kWh/(m²a) 62 ≤ 60 62

    kWh/(m²a) 26 ≥ - 4

    2 Empty field: Data missing; '-': No requirement

    Passive House Classic? yesTask: First name: Surname: Signature:

    2-Certifier Harad Krause

    Certificate ID Issued on: City:

    19.02.19

    Non-renewable Primary Energy (PE)

    Primary Energy Renewable (PER)

    I confirm that the values given herein have been determined following the PHPP methodology and based on the characteristic

    values of the building. The PHPP calculations are attached to this verification.

    yesGeneration of renewable energy (in relation to pro-

    jected building footprint area)

    Växjö

    SE-Sweden

    SE-Sweden

    GÄVLE

    ÅF Infrastructure AB

    Norra Kungsgatan 5

    Adolfsbergsskola

    B. Tec Prof. Dr. Harald Krause

    Sonnenfeld 9

    Centralvägen 19E

    Knivsta

    Lustigkullagatan 18

    Knivsta

    Kommunfastigheter i Knivsta AB,

    SE-Sweden

    School

    LLP-arkitektkontor AB

    Fiskargatan 9

    Stockholm

    IG Passivhus Sverige AB

    DE-Deutschland

    yes

    -

    Alternative criteria

    SE-Sweden

    SE-Sweden

    20215_Krause_PH_20190219_KrH Samerberg-Törwang

    Honnörsgatan 16

    PHPP, Verification PHPP_V9.6a_EN_Vraskola_HP_2019_02_19

  • - Clim

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  • -

    U-value of building assembliesPassive House with PHPP Version 9.6a

    Adolfsbergsskola / Climate: Stockholm / TFA: 6130 m² / Heating: 6,6 kWh/(m²a) / Freq. overheating: 0 % / PER: 61,6 kWh/(m²a)

    Secondary calculation: Equivalent thermal conductivity of still air spaces -> (on the right)

    Wedge-shaped assembly layer -> (on the right)

    Unheated / uncooled attic -> (on the right)

    Assembly no. Building assembly description Interior insulation?

    01ud EW Plan1

    Heat transmission resistance [m²K/W]

    Orientation of building element 0,13 interior Rsi 0,13

    Adjacent to 0,04 exterior Rse: 0,04

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Concrete 2,300 150

    Therma TW58 0,022 240

    Concrete 80-120mm 2,300 80

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    100% 47,0 cm

    U-value supplement 0,01 W/(m²K) U-value: 0,103 W/(m²K)

    Assembly no. Interior insulation?

    02ud Lamilux Rauchlift

    Heat transmission resistance [m²K/W]

    Orientation of building element 1-Roof interior Rsi 0,10

    Adjacent to 1-Outdoor air exterior Rse: 0,04

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    0,112 100

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    100% 10,0 cm

    U-value supplement W/(m²K) U-value: 0,970 W/(m²K)

    Assembly no. Interior insulation?

    03ud Floor slab

    Heat transmission resistance [m²K/W]

    Orientation of building element 3-Floor interior Rsi 0,17

    Adjacent to 2-Ground exterior Rse: 0,00

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Concrete 2,300 120

    Cellplast s150 0,035 300

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    100% 42,0 cm

    U-value supplement W/(m²K) U-value: 0,114 W/(m²K)

    PHPP, U-Values PHPP_V9.6a_EN_Vraskola_HP_2019_02_19

  • Assembly no. Interior insulation?

    04ud Roof

    Heat transmission resistance [m²K/W]

    Orientation of building element 1-Roof interior Rsi 0,10

    Adjacent to 1-Outdoor air exterior Rse: 0,04

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Rockwool 037 0,037 Timber 0,130 50

    Still air 0,170 Timber 0,130 28

    Protect F 0,250 15

    Rockwool 037 0,037 Timber 0,130 50

    Isover 035 0,035 Plywood 0,170 400

    Isover 035 0,035 Timber 0,130 50

    Plywood 0,130 15

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    88% 3,0% 8,5% 60,8 cm

    U-value supplement W/(m²K) U-value: 0,068 W/(m²K)

    Assembly no. Interior insulation?

    05ud Overhang

    Heat transmission resistance [m²K/W]

    Orientation of building element 3-Floor interior Rsi 0,17

    Adjacent to 3-Ventilated exterior Rse: 0,17

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Concrete 2,300 300

    Mineral wool 0,038 Timber 0,130 90

    Mineral wool 0,038 Plywood 0,170 310

    Mineral wool 0,038 Timber 0,130 90

    Mineral wool 0,038 Plywood 0,170 360

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    91% 7,5% 1,7% 115,0 cm

    U-value supplement W/(m²K) U-value: 0,046 W/(m²K)

    Assembly no. Interior insulation?

    06ud Floor slab lift shaft

    Heat transmission resistance [m²K/W]

    Orientation of building element 3-Floor interior Rsi 0,17

    Adjacent to 2-Ground exterior Rse: 0,00

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Concrete 2,300 200

    Foamglass T4+ 0,041 300

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    100% 50,0 cm

    U-value supplement W/(m²K) U-value: 0,132 W/(m²K)

    Wärmeleitfähigkeit lWärmeleitfähigkeit lWärmeleitfähigkeit lWärmeleitfähigkeit lWärmeleitfähigkeit l

    PHPP, U-Values PHPP_V9.6a_EN_Vraskola_HP_2019_02_19

  • Assembly no. Interior insulation?

    07ud EW Ground

    Heat transmission resistance [m²K/W]

    Orientation of building element 2-Wall interior Rsi 0,13

    Adjacent to 2-Ground exterior Rse: 0,00

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Concrete 200-220mm 2,300 200

    Cellplast s150 0,035 300

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    100% 50,0 cm

    U-value supplement W/(m²K) U-value: 0,114 W/(m²K)

    Assembly no. Interior insulation?

    08ud Blind windows

    Heat transmission resistance [m²K/W]

    Orientation of building element 2-Wall interior Rsi 0,13

    Adjacent to 1-Outdoor air exterior Rse: 0,04

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Gypsum Plasterboard 0,250 13

    Still air 0,140 Timber 0,130 25

    Mineralwool 0,036 Timber 0,130 95

    SPU 0,023 96

    Glass 1,000 6

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    93% 7,5% 23,5 cm

    U-value supplement W/(m²K) U-value: 0,145 W/(m²K)

    Assembly no. Interior insulation?

    09ud EW Plan 2

    Heat transmission resistance [m²K/W]

    Orientation of building element 2-Wall interior Rsi 0,13

    Adjacent to 3-Ventilated exterior Rse: 0,13

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Concrete 2,300 150

    Therma TW58 0,022 240

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    100% 39,0 cm

    U-value supplement 0,01 W/(m²K) U-value: 0,102 W/(m²K)

    Wärmeleitfähigkeit l Wärmeleitfähigkeit lWärmeleitfähigkeit lWärmeleitfähigkeit lWärmeleitfähigkeit lWärmeleitfähigkeit l

    PHPP, U-Values PHPP_V9.6a_EN_Vraskola_HP_2019_02_19

  • Assembly no. Interior insulation?

    10ud EW Plan 3

    Heat transmission resistance [m²K/W]

    Orientation of building element 2-Wall interior Rsi 0,13

    Adjacent to 3-Ventilated exterior Rse: 0,13

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Gypsum Plasterboard 0,250 26

    Mineralwool 0,036 Timber 0,130 95

    Cellulose 0,040 Timber 0,130 90

    Cellulose 0,040 Plywwod 0,170 410

    Weatherboard 0,050 10

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    88% 10,0% 1,7% 63,1 cm

    U-value supplement W/(m²K) U-value: 0,068 W/(m²K)

    Assembly no. Interior insulation?

    11ud

    Heat transmission resistance [m²K/W]

    Orientation of building element interior Rsi

    Adjacent to exterior Rse:

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    100% cm

    U-value supplement W/(m²K) U-value: W/(m²K)

    Assembly no. Interior insulation?

    12ud

    Heat transmission resistance [m²K/W]

    Orientation of building element interior Rsi

    Adjacent to exterior Rse:

    Area section 1 l [W/(mK)] Area section 2 (optional) l [W/(mK)] Area section 3 (optional) l [W/(mK)] Thickness [mm]

    Percentage of sec. 1 Percentage of sec. 2 Percentage of sec. 3 Total

    100% cm

    U-value supplement W/(m²K) U-value: W/(m²K)

    PHPP, U-Values PHPP_V9.6a_EN_Vraskola_HP_2019_02_19

  • -C

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    Exte

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    ft

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    Angle

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    Tre

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    a1

    Tre

    ate

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    are

    a1

    x (

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    6129,8

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    )=

    6129,9

    Exte

    rior

    door

    7E

    xte

    rior

    door

    1x (

    1,4

    3x

    2,1

    6+

    8,7

    4-

    ) -

    =11,8

    Exte

    rior

    door

    0,8

    6

    1E

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    ort

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    lan

    18

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    50,1

    4x

    4,8

    3+

    -34,7

    5)

    -42,1

    =165,3

    01u

    d-E

    W P

    lan

    10,1

    03

    490

    No

    rth

    0,7

    00,6

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    0

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    ort

    h G

    rou

    nd

    9E

    xte

    rnal w

    all -

    Gro

    und

    1x (

    x+

    30,8

    0-

    ) -

    0,0

    =30,8

    07u

    d-E

    W G

    rou

    nd

    0,1

    14

    490

    No

    rth

    3E

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    ort

    h P

    lan

    28

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    49,9

    8x

    3,6

    0+

    -1,9

    3)

    -69,1

    =108,9

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    490

    No

    rth

    0,7

    00,6

    00,9

    0

    4E

    W N

    ort

    h P

    lan

    38

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    49,9

    8x

    3,2

    3+

    -)

    -71,2

    =90,3

    10u

    d-E

    W P

    lan

    30,0

    68

    490

    No

    rth

    0,7

    00,6

    00,9

    0

    5E

    W E

    ast

    Pla

    n1

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    68,2

    1x

    0,7

    8+

    -)

    -0,0

    =53,2

    01u

    d-E

    W P

    lan

    10,1

    03

    94

    90

    East

    0,7

    00,6

    00,9

    0

    6E

    W E

    ast

    Gro

    un

    d9

    Exte

    rnal w

    all -

    Gro

    und

    1x (

    68,2

    4x

    4,0

    5+

    -)

    -0,0

    =276,4

    07u

    d-E

    W G

    rou

    nd

    0,1

    14

    94

    90

    East

    7E

    W E

    ast

    Pla

    n2

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    67,9

    8x

    3,6

    0+

    -18,5

    2)

    -113,9

    =112,3

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    94

    90

    East

    0,7

    00,6

    00,9

    0

    8E

    W E

    ast

    Pla

    n3

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    67,9

    8x

    4,5

    2+

    -54,9

    1)

    -41,8

    =210,5

    10u

    d-E

    W P

    lan

    30,0

    68

    94

    90

    East

    0,7

    00,6

    00,9

    0

    9E

    W S

    ou

    th P

    lan

    18

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    50,1

    8x

    0,7

    8+

    -)

    -0,0

    =39,1

    01u

    d-E

    W P

    lan

    10,1

    03

    184

    90

    So

    uth

    0,7

    00,6

    00,9

    0

    10

    EW

    So

    uth

    Gro

    un

    d9

    Exte

    rnal w

    all -

    Gro

    und

    1x (

    16,6

    0x

    4,0

    5+

    97,8

    6-

    ) -

    0,0

    =165,1

    07u

    d-E

    W G

    rou

    nd

    0,1

    14

    184

    90

    So

    uth

    11

    EW

    So

    uth

    Pla

    n 2

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    49,9

    8x

    3,6

    0+

    -9,0

    8)

    -60,7

    =110,2

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    184

    90

    So

    uth

    0,7

    00,6

    00,9

    0

    12

    EW

    So

    uth

    Pla

    n 3

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    49,9

    8x

    3,2

    3+

    -)

    -71,2

    =90,3

    10u

    d-E

    W P

    lan

    30,0

    68

    184

    90

    So

    uth

    0,7

    00,6

    00,9

    0

    13

    EW

    So

    uth

    Pla

    n1 E

    ntr

    an

    ce z

    on

    e8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    31,1

    7x

    4,8

    3+

    -97,8

    6)

    -0,0

    =52,7

    01u

    d-E

    W P

    lan

    10,1

    03

    184

    90

    So

    uth

    0,7

    00,6

    00,9

    0

    14

    EW

    So

    uth

    Pla

    n2 u

    nd

    er

    overh

    an

    g E

    ntr

    an

    ce z

    on

    e8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    10,9

    8x

    1,6

    7+

    -12,1

    0)

    -3,8

    =2,4

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    184

    90

    So

    uth

    0,7

    00,6

    00,9

    0

    15

    EW

    West

    Gro

    un

    d9

    Exte

    rnal w

    all -

    Gro

    und

    1x (

    34,0

    8x

    3,6

    0+

    -)

    -0,0

    =122,7

    07u

    d-E

    W G

    rou

    nd

    0,1

    14

    274

    90

    West

    0,7

    00,6

    00,9

    0

    16

    EW

    West

    Pla

    n1

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    34,1

    1x

    4,8

    3+

    24,5

    0-

    ) -

    31,4

    =157,9

    01u

    d-E

    W P

    lan

    10,1

    03

    274

    90

    West

    0,7

    00,6

    00,9

    0

    17

    EW

    West

    Pla

    n 2

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    67,9

    8x

    3,6

    0+

    -58,2

    5)

    -43,7

    =142,8

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    274

    90

    West

    0,7

    00,6

    00,9

    0

    18

    EW

    West

    Pla

    n 3

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    67,9

    8x

    4,5

    2+

    -32,6

    0)

    -63,8

    =210,8

    10u

    d-E

    W P

    lan

    30,0

    68

    274

    90

    West

    0,7

    00,6

    00,9

    0

    19

    EW

    NW

    Pla

    n1 E

    ntr

    an

    ce

    8E

    xte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    34,2

    5x

    1,2

    3+

    -)

    -0,0

    =42,1

    01u

    d-E

    W P

    lan

    10,1

    03

    339

    90

    No

    rth

    0,7

    00,6

    00,9

    0

    20

    EW

    NW

    Pla

    n2 u

    nd

    er

    overh

    an

    g

    En

    tran

    ce z

    on

    e8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    12,0

    5x

    1,6

    7+

    -)

    -17,0

    =3,2

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    339

    90

    No

    rth

    0,7

    00,6

    00,9

    0

    21

    EW

    NW

    Pla

    n2 A

    triu

    m8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    22,1

    9x

    3,6

    0+

    -)

    -31,9

    =48,0

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    339

    90

    No

    rth

    0,7

    00,6

    00,9

    0

    22

    EW

    NW

    Pla

    n3 A

    triu

    m8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    x+

    99,4

    3-

    ) -

    32,0

    =67,4

    10u

    d-E

    W P

    lan

    30,0

    68

    339

    90

    No

    rth

    0,7

    00,6

    00,9

    0

    23

    EW

    E P

    lan

    2 A

    triu

    m8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    18,8

    7x

    3,6

    0+

    -)

    -0,0

    =67,9

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    94

    90

    East

    0,7

    00,6

    00,9

    0

    24

    EW

    E P

    lan

    3 A

    triu

    m8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    x+

    85,1

    6-

    ) -

    27,2

    =58,0

    10u

    d-E

    W P

    lan

    30,0

    68

    94

    90

    East

    0,7

    00,6

    00,9

    0

    25

    EW

    S P

    lan

    2 A

    triu

    m8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    20,2

    2x

    3,6

    0+

    -)

    -28,6

    =44,2

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    184

    90

    So

    uth

    0,7

    00,6

    00,9

    0

    26

    EW

    S P

    lan

    3 A

    triu

    m8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    20,2

    2x

    5,6

    1+

    -0,4

    3)

    -28,9

    =84,2

    10u

    d-E

    W P

    lan

    30,0

    68

    184

    90

    So

    uth

    0,7

    00,6

    00,9

    0

    27

    EW

    W P

    lan

    2 A

    triu

    m8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    9,7

    2x

    3,6

    0+

    -)

    -24,5

    =10,5

    09u

    d-E

    W P

    lan

    2

    0,1

    02

    274

    90

    West

    0,7

    00,6

    00,9

    0

    28

    EW

    W P

    lan

    3 A

    triu

    m8

    Exte

    rnal w

    all -

    Am

    bie

    nt

    1x (

    x+

    44,1

    9-

    ) -

    14,0

    =30,2

    10u

    d-E

    W P

    lan

    30,0

    68

    274

    90

    West

    0,7

    00,6

    00,9

    0

    29

    x (

    x+

    -)

    -0,0

    =

    Radia

    tion-

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    4D

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    105 P

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    107 P

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    D11 -

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    12

    D12 -

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    D14 -

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    D23 -

    GG

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    D24 -

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    19

    D25 -

    324 T

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    D15

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    D26 -

    305 T

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    21

    D27 -

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    D28 -

    318 A

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    D29 -

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    D34 -

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    PH

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    P_2019_02_19

  • -C

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    end

    PH

    PP

    , A

    reas

    PH

    PP

    _V

    9.6

    a_E

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    _H

    P_2019_02_19

  • - Additional b

    Heat losses through the groundPassive House with PHPP Version 9.6a

    Adolfsbergsskola / Climate: Stockholm / TFA: 6130 m² / Heating: 6,6 kWh/(m²a) / Freq. overheating: 0 % / PER: 61,6 kWh/(m²a)

    Building section 1

    Ground characteristics Climate data

    Thermal conductivity l 2,0 W/(mK) Avg indoor temp. winter Ti 20,0 °C

    Heat capacity rc 2,0 MJ/(m³K) Avg indoor temp. summer Ti 25,0 °C

    Periodic penetration depth d 3,17 m Avg ground surface temperature Tg,ave 7,6 °C

    Amplitude of Tg,ave Tg,^ 10,3 °C

    Phase shifting of Te,m t 1,3 Months

    Length of the heating period n 7,6 Months

    Heating degree hours - exterior Gt 102,0 kKh/a

    Building data U-value floor slab/basement ceiling Uf 0,114 W/(m²K)

    Area of ground floor slab / basement ceA 2276,3 m² TBs floor slab / basement ceiling YB*l 4,23 W/K

    Perimeter length P 202,7 m U-value floor slab / basement ceiling incUf' 0,116 W/(m²K)

    Charact. dimension of floor slab B' 22,46 m Equivalent thickness floor dt 17,30 m

    Floor slab type (select only one)

    Slab on grade

    Perimeter insulation width/depth D m Orientation of perimeter insulation horizontal

    Perimeter insulation thickness dn m (check only one field) vertical x

    Conductivity perimeter insulation ln W/(mK)

    x Heated basement or floor slab completely / partially below ground level

    Basement wall height below ground levez 2,51 m U-Value wall below ground UwB 0,114 W/(m²K)

    Unheated basement

    Height aboveground wall h m U-Value wall above ground UW W/(m²K)

    Basement wall height below ground levez m U-Value wall below ground UWB W/(m²K)

    Air change unheated basement n 0,20 h-1 U-Value basement floor slab UfB W/(m²K)

    Air volume basement V m³

    Suspended floor above a ventilated crawl space (at max. 0.5 m below ground)

    U-Value crawl space UCrawl W/(m²K) Area of ventilation openings eP m²

    Height of crawl space wall h m Wind velocity at 10 m height v 4,0 m/s

    U-Value crawl space wall UW W/(m²K) Wind shield factor fW 0,05 -

    Additional thermal bridge heat losses at perimeter Steady-state fraction YP,stat*l 2,243 W/K

    Phase shift b Months Harmonic fraction YP,harm*l 2,243 W/K

    Groundwater correction

    Depth of the groundwater table zW 3,0 m Groundwater correction factor GW 1,17418443 -

    Groundwater flow rate qW 0,05 m/d

    Interim results

    Phase shift b 1,43 Months Steady-state heat flow Fstat 3089,4 W

    Steady-state transmittance LS 248,68 W/K Periodic heat flow Fharm 140,5 W

    Exterior periodic transmittance Lpe 40,88 W/K Heat losses during heating period Qtot 17998 kWh

    Transmittance building L0 323,38 W/K

    Monthly average temperatures in the ground for monthly method (building assembly 1)

    Month 1 2 3 4 5 6 7 8 9 10 11 12 Avg. value

    Winter 9,6 9,2 9,2 9,4 10,0 10,7 11,3 11,7 11,7 11,5 10,9 10,2 10,4

    Summer 10,8 10,4 10,3 10,6 11,1 11,8 12,4 12,8 12,9 12,6 12,1 11,4 11,6

    Design ground temperature for 'Heating load' worksheet 9,2 For 'Cooling load' worksheet 12,9

    Reduction factor for 'Annual heating' worksheet 0,55

    Total result (all building parts)

    Phase shift b 1,43 Months Steady-state heat flow Fstat 3779,5 W

    Steady-state transmittance LS 304,23 W/K Periodic heat flow Fharm 177,4 W

    Exterior periodic transmittance Lpe 51,64 W/K Heat losses during heating period Qtot 22050 kWh

    Transmittance building L0 394,65 W/K Charact. dimension of floor slab B' 19,99 m

    Monthly Average temperatures in the ground for monthly method (all building assemblies)Month 1 2 3 4 5 6 7 8 9 10 11 12 Avg. value

    Winter 9,6 9,2 9,1 9,4 9,9 10,6 11,3 11,7 11,8 11,5 10,9 10,2 10,4

    Summer 10,7 10,3 10,2 10,5 11,1 11,8 12,4 12,8 12,9 12,6 12,0 11,3 11,6

    Design ground temperature for 'Heating load' worksheet 9,1 For 'Cooling load' worksheet 12,9

    Reduction factor for 'Annual heating' worksheet 0,55

    PHPP, Ground PHPP_V9.6a_EN_Vraskola_HP_2019_02_19

  • Heat losses through the ground 2Passive House with PHPP Version 9.6a

    Adolfsbergsskola / Climate: Stockholm / TFA: 6130 m² / Heating: 6,6 kWh/(m²a) / Freq. overheating: 0 % / PER: 61,6 kWh/(m²a)

    Building section 2

    Ground characteristics

    Thermal conductivity l 2,0 W/(mK)

    Heat capacity rc 2,0 MJ/(m³K)

    Periodic penetration depth d 3,17 m

    Building data U-value floor slab/basement ceiling Uf 0,114 W/(m²K)

    Area of ground floor slab / basement ceA 626,4 m² TBs floor slab / basement ceiling YB*l W/K

    Perimeter length P 87,7 m U-value floor slab / basement ceiling incUf' 0,114 W/(m²K)

    Charact. dimension of floor slab B' 14,28 m Equivalent thickness floor dt 17,58 m

    Floor slab type (select only one)

    x Slab on grade

    Perimeter insulation width/depth D m Orientation of perimeter insulation horizontal

    Perimeter insulation thickness dn m (check only one field) vertical x

    Conductivity perimeter insulation ln W/(mK)

    Heated basement or floor slab completely / partially below ground level

    Basement wall height below ground levez m U-Value wall below ground UwB W/(m²K)

    Unheated basement

    Height aboveground wall h m U-Value wall above ground UW W/(m²K)

    Basement wall height below ground levez m U-Value wall below ground UWB W/(m²K)

    Air change unheated basement n 0,20 h-1 U-Value basement floor slab UfB W/(m²K)

    Air volume basement V m³

    Suspended floor above a ventilated crawl space (at max. 0.5 m below ground)

    U-Value crawl space UCrawl W/(m²K) Area of ventilation openings eP m²

    Height of crawl space wall h m Wind velocity at 10 m height v 4,0 m/s

    U-Value crawl space wall UW W/(m²K) Wind shield factor fW 0,05 -

    Additional thermal bridge heat losses at perimeter Steady-state fraction YP,stat*l W/K

    Phase shift b Months Harmonic fraction YP,harm*l 0,000 W/K

    Groundwater correction

    Depth of the groundwater table zW 3,0 m Groundwater correction factor GW 1,06891892 -

    Groundwater flow rate qW 0,05 m/d

    Interim results

    Phase shift b 1,43 Months Steady-state heat flow Fstat 690,1 W

    Steady-state transmittance LS 55,55 W/K Periodic heat flow Fharm 36,9 W

    Exterior periodic transmittance Lpe 10,76 W/K Heat losses during heating period Qtot 4052 kWh

    Transmittance building L0 71,27 W/K

    Monthly average temperatures in the ground for monthly method (building assembly 2)

    Month 1 2 3 4 5 6 7 8 9 10 11 12 Avg. value

    Winter 9,3 8,9 8,8 9,1 9,8 10,6 11,3 11,8 11,8 11,5 10,9 10,1 10,3

    Summer 10,4 10,0 9,9 10,2 10,9 11,7 12,4 12,9 13,0 12,6 12,0 11,2 11,4

    Design ground temperature for 'Heating load' worksheet 8,8 For 'Cooling load' worksheet 13,0

    Reduction factor for 'Annual heating' worksheet 0,56

    PHPP, Ground PHPP_V9.6a_EN_Vraskola_HP_2019_02_19

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