BS PD CEN TR 15131-2006 Thermal performance of building materials — The use of interpolating equations in relation to thermal measurement on thick specimens — Guarded hot plate and.pdf
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1、PUBLISHED DOCUMENT PD CEN/TR 15131:2006 Thermal performance of building materials The use of interpolating equations in relation to thermal measurement on thick specimens Guarded hot plate and heat flow meter apparatus ICS 91.100.60; 91.120.10 PD CEN/TR 15131:2006 This Published Document was publish
2、ed under the authority of the Standards Policy and Strategy Committee on 21 February 2006. BSI 21 February 2006ISBN 0 580 47345 7 National foreword This Published Document is the official English language version of CEN/TR 15131:2006. The UK participation in its preparation was entrusted to Technica
3、l Committee B/540, Energy performance of materials, components and buildings, which has the responsibility to: A list of organizations represented on this committee can be obtained on request to its secretary. Cross-references The British Standards which implement international or European publicati
4、ons referred to in this document may be found in the BSI Catalogue under the section entitled “International Standards Correspondence Index”, or by using the “Search” facility of the BSI Electronic Catalogue or of British Standards Online. This publication does not purport to include all the necessa
5、ry provisions of a contract. Users are responsible for its correct application. Compliance with a Published Document does not of itself confer immunity from legal obligations. aid enquirers to understand the text; present to the responsible international/European committee any enquiries on the inter
6、pretation, or proposals for change, and keep UK interests informed; monitor related international and European developments and promulgate them in the UK. Summary of pages This document comprises a front cover, an inside front cover, the CEN/TR title page, pages 2 to 28, an inside back cover and a b
7、ack cover. The BSI copyright notice displayed in this document indicates when the document was last issued. Amendments issued since publication Amd. No. Date CommentsTECHNICALREPORT RAPPORTTECHNIQUE TECHNISCHERBERICHT CEN/TR15131 January2006 ICS91.100.60;91.120.10 EnglishVersion Thermalperformanceof
8、buildingmaterialsTheuseof interpolatingequationsinrelationtothermalmeasurementon thickspecimens Guardedhotplateandheatflowmeter apparatus Performancethermiquedesmatriauxpourlebtiment Utilisationdesquationsdinterpolationdanslecadredes mesuragesthermiquessurprouvettepaissePlaque chaudegardeetappareilf
9、luxmtre DieAnwendungvonInterpolationsgleichungenfr wrmetechnischeMessungenunddickenProbekrpern HeizplattenundWrmestromMessapparate ThisTechnicalReportwasapprovedbyCENon27September2005.IthasbeendrawnupbytheTechnicalCommitteeCEN/TC89. CENmembersarethenationalstandardsbodiesofAustria,Belgium,Cyprus,Cze
10、chRepublic,Denmark,Estonia,Finland,France, Germany,Greece,Hungary,Iceland,Ireland,Italy,Latvia,Lithuania,Luxembourg,Malta,Netherlands,Norway,Poland,Portugal,Romania, Slovakia,Slovenia,Spain,Sweden,SwitzerlandandUnitedKingdom. EUROPEANCOMMITTEEFORSTANDARDIZATION COMITEUROPENDENORMALISATION EUROPISCHE
11、SKOMITEEFRNORMUNG ManagementCentre:ruedeStassart,36B1050Brussels 2006CEN Allrightsofexploitationinanyformandbyanymeansreserved worldwideforCENnationalMembers. Ref.No.CEN/TR15131:2006:E2 Contents page Foreword 3 1 Scope .4 2 Normative references .4 3 Terms, definitions and symbols 4 4 Modelling thick
12、ness effect .5 5 Prediction of the thickness effect with the interpolating functions 11 Bibliography.28 CEN/TR 15131:20063 Foreword This Technical Report (CEN/TR 15131:2006) has been prepared by Technical Committee CEN/TC 89 “Thermal performance of buildings and building components”, the secretariat
13、 of which is held by SIS. CEN/TR 15131:20064 1 Scope This Technical Report supplements technical information on modelling of heat transfer in products of high and medium thermal resistance when the thickness effect may be relevant; by doing this it supplies minimum background information on the inte
14、rpolating equations to be used in the procedures described in EN 12939 to test thick products of high and medium thermal resistance. All testing procedures to evaluate the thermal performance of thick specimens require utilities, which are essentially based on interpolating functions containing a nu
15、mber of material parameters and testing conditions. Interpolating functions and material parameters are not the same for all materials. Essential phenomena and common interpolating functions are presented in Clause 4, which is followed by separate equations for each material family. This Technical R
16、eport also gives diagrams derived from the above interpolating equations to assess the relevance of the thickness effect for some insulating materials. 2 Normative references The following referenced documents are indispensable for the application of this Technical Report. For dated references, only
17、 the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. EN 12939:2000, Thermal performance of building materials and products Determination of thermal resistance by means of guarded hot plate and heat flow meter methods Th
18、ick products of high and medium thermal resistance EN ISO 7345:1995, Thermal insulation Physical quantities and definitions (ISO 7345:1987) EN ISO 9288:1996, Thermal insulation Heat transfer by radiation Physical quantities and definitions (ISO 9288:1989) 3 Terms, definitions and symbols For the pur
19、poses of this Technical Report, the terms and definitions given in EN ISO 7345:1995, EN ISO 9288:1996 and EN 12939:2000 apply. NOTE EN ISO 9288 defines spectral directional extinction, absorption and scattering coefficients and the spectral directional albedo only, while this Technical Report makes
20、use of total hemispherical coefficients, which can be obtained from the previous ones by appropriate integrations. To avoid confusion with the monochromatic directional coefficients, they are referenced here as related to the “two flux model“, see Clause 4. Symbol Quantity Unit d thickness m h surfa
21、ce coefficient of heat transfer J transfer factor W/(mK) R thermal resistance m 2 K/W T thermodynamic temperature K total hemispherical emissivity thermal conductivity W/(mK) r radiativity density kg/m 3 CEN/TR 15131:20065 Stefan-Boltzmanns constant (5,6699710 -8 ) W/(m 2 K 4 ) Celsius temperature C
22、 4 Modelling thickness effect 4.1 General The following qualitative description of heat transfer in low density homogeneous insulating materials formed the basis for the development of a model to get interpolating functions. A graph of thermal resistance versus specimen thickness for all homogeneous
23、 insulating materials has the form of that in Figure 1. The extrapolation to zero thickness, R 0 , of the straight portion (bold continuous line) depends both on material properties and testing conditions, in particular the emissivity of the surfaces bounding the specimen or product. Only the slope
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