Localised boundary air layer and clothing evaporative resistances for individual body segments
暂无分享,去创建一个
Ingvar Holmér | Kalev Kuklane | Faming Wang | Chuansi Gao | Li-Yen Lin | Vincenzo Molinaro | Faming Wang | K. Kuklane | I. Holmér | Chuansi Gao | S. del Ferraro | Li-Yen Lin | T. Sotto Mayor | V. Molinaro | Miguel Ribeiro | Simona del Ferraro | Tiago Sotto Mayor | Miguel Ribeiro | S. Del Ferraro
[1] I. Holmér. Protective clothing in hot environments. , 2006, Industrial health.
[2] George Havenith,et al. Clothing ventilation, vapour resistance and permeability index: changes dus to posture, movement and wind , 1990 .
[3] Jintu Fan,et al. Measurement of clothing thermal insulation and moisture vapour resistance using a novel perspiring fabric thermal manikin , 2002 .
[4] EA McCullough,et al. Revised Interlaboratory Study of Sweating Thermal Manikins Including Results from the Sweating Agile Thermal Manikin , 2005 .
[5] Thomas Endrusick,et al. Interlaboratory Evaluation of a New Sweating Guarded Hot Plate Test Method (ISO 11092) , 1994 .
[6] Ingvar Holmér,et al. Evaluation of Clothing Heat Transfer by Dry and Sweating Manikin Measurements , 1996 .
[7] G. Havenith,et al. Correction of clothing insulation for movement and wind effects, a meta-analysis , 2004, European Journal of Applied Physiology.
[8] Ingvar Holmér,et al. A Study on Evaporative Resistances of Two Skins Designed for Thermal Manikin Tore under Different Environmental Conditions , 2009 .
[9] Thomas E. Bernard,et al. Evaporative resistance and sustainable work under heat stress conditions for two cloth anticontamination ensembles , 1999 .
[10] Jintu Fan,et al. Clothing Thermal Insulation During Sweating , 2003 .
[11] R. E. Link,et al. Assessment of Clothing Effects in Thermal Comfort Standards: A Review , 2007 .
[12] Ingvar Holmér,et al. Personal factors in thermal comfort assessment: clothing properties and metabolic heat production , 2002 .
[13] A. Bivainytė,et al. Investigation on the air and water vapour permeability of double-layered weft knitted fabrics , 2011 .
[14] Akbar Irandoukht,et al. Development of the Predictive Models for the Fabric Water Vapor Resistance , 2011 .
[15] I Holmér,et al. Physiological evaluation of the resistance to evaporative heat transfer by clothing. , 1981, Ergonomics.
[16] E. Arens,et al. Convective and radiative heat transfer coefficients for individual human body segments , 1997, International journal of biometeorology.
[17] Faming Wang,et al. Evaluation of an electrically heated vest (EHV) using a thermal manikin in cold environments. , 2010, The Annals of occupational hygiene.
[18] Faming Wang,et al. Comparisons of Thermal and Evaporative Resistances of Kapok Coats and Traditional Down Coats , 2010 .
[19] Ingvar Holmér,et al. Determination of clothing evaporative resistance on a sweating thermal manikin in an isothermal condition: heat loss method or mass loss method? , 2011, The Annals of occupational hygiene.
[20] George Havenith,et al. Ventilation of rain-wear determined by a trace gas method , 1988 .
[21] George Havenith,et al. Resultant clothing insulation: a function of body movement, posture, wind, clothing fit and ensemble thickness , 1990 .
[22] P. Tourneux,et al. Assessment of whole body and regional evaporative heat loss coefficients in very premature infants using a thermal mannequin: influence of air velocity. , 2005, Medical physics.
[23] P. A. Mason,et al. Determining localized garment insulation values from manikin studies: computational method and results , 2005, European Journal of Applied Physiology.
[24] Ingvar Holmér,et al. Development and validity of a universal empirical equation to predict skin surface temperature on thermal manikins , 2010 .
[25] K C Parsons,et al. Protective clothing: heat exchange and physiological objectives. , 1988, Ergonomics.
[26] P. Fanger,et al. Effect of physical activity and air velocity on the thermal insulation of clothing. , 1985, Ergonomics.
[27] Ingvar Holmér,et al. HEATED MANIKINS AS A TOOL FOR EVALUATING CLOTHING , 1995 .
[28] E. A. Mccullough,et al. Apparent evaporative resistance at critical conditions for five clothing ensembles , 2008, European Journal of Applied Physiology.
[29] A. Okur,et al. A new dynamic sweating hotplate system for steady-state and dynamic thermal comfort measurements , 2010 .
[30] I Holmér. The role of performance tests, manikins and test houses in defining clothing characteristics relevant to risk assessment. , 1999, The Annals of occupational hygiene.
[31] W. Yu,et al. Effect of posture positions on the evaporative resistance and thermal insulation of clothing , 2011, Ergonomics.
[32] T. Agner,et al. Guidelines for transepidermal water loss (TEWL) measurement , 1990, Contact dermatitis.
[33] B. Wilbik-Hałgas,et al. Air and Water Vapour Permeability in Double - Layered Knitted Fabrics with Different Raw Materials , 2006 .
[34] Ingvar Holmér,et al. Effect of temperature difference between manikin and wet fabric skin surfaces on clothing evaporative resistance: how much error is there? , 2011, International Journal of Biometeorology.