Combustion Processes Laboratories

Parent: UC Berkeley

eScholarship stats: Breakdown by Item for December, 2024 through March, 2025

ItemTitleTotal requestsDownloadView-only%Dnld
7wz5m7dgA Generalized Pyrolysis Model for Combustible Solids121388331.4%
66b5995fA Comparison of Three Fire Models in the Simulation of Accidental Fires94751979.8%
2t05897wFlame Height Measurement of Laminar Inverse Diffusion Flames83562767.5%
8fv775b6Application of Genetic Algorithms and Thermogravimetry to Determine the Kinetics of Polyurethane Foam in Smoldering Combustion70224831.4%
9x75r07qFlame Structure and Soot Formation in Inverse Diffusion Flames (Ph.D. Dissertation)5364711.3%
0bq9n8pnComputational Model of Forward and Opposed Smoldering Combustion with Improved Chemical Kinetics (PhD. Thesis)4483618.2%
2j80r0t5The Effect of the Di-Tertiary Butyl Peroxide (DTBP) additive on HCCI Combustion of Fuel Blends of Ethanol and Diethyl Ether44152934.1%
9q66m1j1SMOLDER IGNITION OF POLYURETHANE FOAM: EFFECT OF OXYGEN CONCENTRATION4473715.9%
8xf9z5wnLES of Sandia Flame D with Eulerian PDF and Finite-Rate Chemistry41132831.7%
0d439075A Comparison of Infrared Light Emitting Diodes (IR-LED) versus Infrared4063415.0%
5zb7w2p5An enthalpy-temperature hybrid method for solving phase change problems and its application to polymer pyrolysis and ignition4063415.0%
7x42c7jdThe effect of buoyancy on opposed smoldering37162143.2%
6t2213hgSpace shuttle based microgravity smoldering combustion experiments33102330.3%
3277951mA Generalized Pyrolysis Model for Simulating Charring, Intumescent, Smoldering, and Noncharring Gasification32122037.5%
5t34j9m4Numerical Issues of Monte Carlo PDF for Large Eddy Simulations of Turbulent Flames3152616.1%
6cd5b6vqDirect Use of Wet Ethanol in a Homogeneous Charge Compression Ignition (HCCI) Engine: Experimental and Numerical Results3142712.9%
74p7b65xInvestigation of HCCI Combustion of Diethyl Ether and Ethanol Mixtures Using Carbon 14 Tracing and Numerical Simulations30141646.7%
5cg7f8hvForced forward smoldering experiments in microgravity2932610.3%
5xq8441tLaser Extinction in Laminar Inverse Diffusion Flames2762122.2%
00x644fdIgnition of Combustion Modified Polyurethane Foam2642215.4%
0fq8c495Development of Isooctane Skeletal Mechanisms for Fast and Accurate Predictions of SOC and Emissions of HCCI Engines based on LLNL Detailed Mechanism2671926.9%
9qz491vxMicrophones and Knock Sensors for Feedback Control of HCCI Engines2681830.8%
7fg575cmEffect of Varied Air Flow on Flame Structure of Laminar Inverse Diffusion Flames2561924.0%
36q6790wField performance of a nephelometer in rural kitchens: effects of high humidity excursions and correlations to gravimetric analyses (Journal of Exposure Science and Environmental Epidemiology 2006)2432112.5%
7pn0x893Transition from Forward Smoldering to Flaming in Small Polyurethane Foam Samples2471729.2%
05h2t55hField performance of a nephelometer in rural kitchens: effects of high humidity excursions and correlations to gravimetric analyses2351821.7%
3104664pModeling of One-Dimensional Smoldering of Polyurethane in Microgravity Conditions2371630.4%
0qp039spLandfill Gas Fueled HCCI Demonstration System2151623.8%
5p11f68bA numerical investigation into the anomalous slight NOx increase when burning biodiesel; A new (old) theory2021810.0%
76s259zpFlow-Assisted Flame Propagation Through a Porous Combustible in Microgravity2021810.0%
52h298s5Using Biofuel Tracers to Study Alternative Combustion Regimes1841422.2%
7xb9t2gkCOSMIC: Carbon Monoxide and Soot in Microgravity Inverse Combustion1421214.3%
5st5w2gzBidimensional Numerical Model for Polyurethane Smoldering in a Fixed Bed1321115.4%

Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.