Towards Optimizing a Personal Cooling Garment for Hot and Humid Deep Mining Conditions
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[1] A Michael Donoghue,et al. Heat illness in the U.S. mining industry. , 2004, American journal of industrial medicine.
[2] B. L. Bennett,et al. Comparison of two cool vests on heat-strain reduction while wearing a firefighting ensemble , 1993, European Journal of Applied Physiology and Occupational Physiology.
[3] Saffa Riffat,et al. Improving the coefficient of performance of thermoelectric cooling systems: a review , 2004 .
[4] Kw Wong,et al. Evaluation of a cooling vest in four industries in Hong Kong , 2015 .
[5] James R. House,et al. The impact of a phase-change cooling vest on heat strain and the effect of different cooling pack melting temperatures , 2013, European Journal of Applied Physiology.
[6] Phillip A Bishop,et al. Evaluation of a Carbon Dioxide Personal Cooling Device for Workers in Hot Environments , 2010, Journal of occupational and environmental hygiene.
[7] Stephen R. Muza,et al. Effectiveness of an Air Cooled Vest Using Selected Air Temperature, Humidity and Air Flow Rate, Combinations , 1987 .
[8] J B Cohen,et al. A personal conditioning system based on a liquid-conditioned vest and a thermoelectric supply system. , 1988, Ergonomics.
[9] Tetsuro Katafuchi,et al. Self-perspiration garment for extravehicular activity improves skin cooling effects without raising humidity , 2014 .
[10] Yifan Yang,et al. Man-portable personal cooling garment based on vacuum desiccant cooling , 2012 .
[11] R D Michas,et al. Heat balance of subjects wearing protective clothing with a liquid- or air-cooled vest. , 1991, Aviation, space, and environmental medicine.
[12] D. Moran,et al. Effect of a personal ambient ventilation system on physiological strain during heat stress wearing a ballistic vest , 2008, European Journal of Applied Physiology.
[13] Faming Wang,et al. Effects of two cooling garments on post-exercise thermal comfort of female subjects in the heat , 2015, Fibers and Polymers.
[14] Leslie Levine,et al. A Physiological Evaluation of a Prototype Air-Vest Microclimate Cooling System , 1991 .
[15] Michael N. Sawka,et al. Perspectives in microclimate cooling involving protective clothing in hot environments , 1988 .
[16] Mohammad Sheikhzadeh,et al. Personal cooling garments: a review , 2014 .
[17] Eun Soo Jeong,et al. A new approach to optimize thermoelectric cooling modules , 2014 .
[18] B. Bain. Effectiveness of Ice-Vest Cooling in Prolonging Work Tolerance Time during Heavy Exercise in the Heat for Personnel Wearing Canadian Forces Chemical Defence Ensembles , 1991 .
[19] Li-Chu Wang,et al. Evaluation of two cooling systems under a firefighter coverall. , 2014, Applied ergonomics.
[20] Aitor Coca,et al. Subjective perceptions and ergonomics evaluation of a liquid cooled garment worn under protective ensemble during an intermittent treadmill exercise , 2011, Ergonomics.
[21] Diana Enescu,et al. A review on thermoelectric cooling parameters and performance , 2014 .
[22] Samuel N Cheuvront,et al. Intermittent microclimate cooling during exercise-heat stress in US army chemical protective clothing , 2006, Ergonomics.
[23] Margaret A. Kolka,et al. Thermal Comfort and Sensation in Men Wearing a Cooling System Controlled by Skin Temperature , 2007, Hum. Factors.
[24] Banta Gr,et al. Heat strain during at-sea helicopter operations and the effect of passive microclimate cooling. , 1992 .
[25] James R. House,et al. Post-exercise cooling techniques in hot, humid conditions , 2009, European Journal of Applied Physiology.
[26] J. Frim,et al. Efficacy of air and liquid cooling during light and heavy exercise while wearing NBC clothing. , 1999, Aviation, space, and environmental medicine.
[27] D. Rowe. Thermoelectrics Handbook , 2005 .
[28] Martin J Barwood,et al. Ventilated vest and tolerance for intermittent exercise in hot, dry conditions with military clothing. , 2009, Aviation, space, and environmental medicine.
[29] Apc Chan,et al. Factors affecting horticultural and cleaning workers' preference on cooling vests , 2013 .
[30] G. Sleivert,et al. Responsiveness of thermal sensors to nonuniform thermal environments and exercise. , 2003, Aviation, space, and environmental medicine.
[31] G R Banta,et al. Heat strain during at-sea helicopter operations and the effect of passive microclimate cooling. , 1992, Aviation, space, and environmental medicine.
[32] Howard L. Hartman,et al. Mine ventilation and air conditioning , 1961 .
[33] M. Sawka,et al. Efficacy of body ventilation system for reducing strain in warm and hot climates , 2008, European Journal of Applied Physiology.
[34] Glen P Kenny,et al. Ice Cooling Vest on Tolerance for Exercise under Uncompensable Heat Stress , 2011, Journal of occupational and environmental hygiene.
[35] Faming Wang,et al. A novel personal cooling system (PCS) incorporated with phase change materials (PCMs) and ventilation fans: An investigation on its cooling efficiency. , 2015, Journal of thermal biology.
[36] Glen P Kenny,et al. A Field Evaluation of the Physiological Demands of Miners in Canada's Deep Mechanized Mines , 2012, Journal of occupational and environmental hygiene.
[37] U. Rohde,et al. Reducing heat stress under thermal insulation in protective clothing: microclimate cooling by a ‘physiological’ method , 2015, Ergonomics.
[38] Jonathan W. Kaufman,et al. Assessment of Advanced Personal Cooling Systems for Use With Chemical Protective Outer Garments , 2001 .
[39] Kent B. Pandolf,et al. Tri-Service Perspectives on Microclimate Cooling of Protective Clothing in the Heat. , 1995 .
[40] P Webb,et al. Automatic cooling in water cooled space suits. , 1970, Aerospace medicine.
[41] Aitor Coca,et al. Effects of Liquid Cooling Garments on Recovery and Performance Time in Individuals Performing Strenuous Work Wearing a Firefighter Ensemble , 2011, Journal of occupational and environmental hygiene.
[42] C Piekarski. Climatic stress in coalmining in Germany: occupational health aspects. , 1995, Ergonomics.
[43] T. Tritt. Thermoelectric Materials: Principles, Structure, Properties, and Applications , 2002 .
[44] Anna Marszałek,et al. Assessment of the human responses to the influence of personal liquid cooling system in the hot environment , 2014 .