Miersch, E.F. “Natural LSI Process Step to Create Controllable Boiling Centers” IBM Tech Disc vol. 18 No. 2 Jul. 1975.* |
Hesketh et al., “Organ Pipe Radiant Modes of Periodic Micromachined Silicon Surfaces”, Nature, vol. 324, pp. 549-551 (1986). |
Gebhart, Heat Transfer, p. 371, McGraw-Hill, New York (1971). |
Rohsenow, Handbook of Heat Transfer, pp. 13-28, McGraw-Hill, New York (1973). |
Messina et al., “Effect of Precise Arrays of Pits on Nucleate Boiling”, Int. J. Heat Mass Transfer, vol. 24, pp. 141-145 (1981). |
Albertson et al., “Electroformed Boiling Surfaces” (undated). |
Bergles et al., “Characteristcs of Nucleate Pool Boiling from Porous Metallic Coatings”, Journal of Heat Transfer, vol. 104, pp. 279-285, May (1982). |
Marto et al., “Pool Boiling Heat Transfer from Enhanced Surfaces to Dielectric Fluids”, Journal of Heat Transfer, vol. 104, pp. 292-299, May (1982). |
Gebhart et al., “Boiling Enhancement on Micro-configured Surfaces”, Inter. Comm. Heat Mass Transfer, vol. 15, No. 1, pp. 141-149, Mar.-Apr. (1988). |
Nakayama et al., “Effects of Pore Diameters and System Pressure on Saturated Pool Nucleate”, Journal of Heat Transfer, vol. 104, pp. 286-290, May (1982). |
Anderson et al., “Microelectronic Cooling by Enhanced Pool Boiling of a Dielectric Fluorocarbon Liquid”, Journal of Heat Transfer, vol. III, pp. 752-759 (1988). |
Miller, “Effects of Boiling History on a Micro-Configured Surface in a Dielectric Liquid” (not published). |
Wright et al., “Enhanced Boiling on Microconfigured Surfaces”, Journal of Electronic Packaging, vol. III, pp. 112-120 (1989). |
Butler et al., “Improved Pool Boiling Heat Transfer to Helium from Treated Surfaces and its Application to Superconducting Magnets”, Inter J. Heat Mass Transfer, vol. 43, pp. 105-111 (1970). |
Hesketh, “The Emittance of Heavily Doped Micro-Configured Silicon Surfaces”, Ph.D. Thesis (1987). |