The Jumbom Zombies Social game, Academy Art University
Jun 2013 to 2000 Game Concept Artist & Digital PaintingAllen & Allen Student film, Academy Art University
May 2012 to 2000 Film Director & Art Director, & 2D Character AnimatorThe Googli Magooli Animation short, Academy Art University San Francisco, CA Mar 2013 to Apr 2013 Layout Design & Background Painting
Education:
Academy of Art University San Francisco, CA Jun 2010 to Dec 2013 M.F.A. in 2D AnimationBeijing Film Academy 2005 to 2009 Bachelor of Science in Animation
Girish Upadhya - San Jose CA, US Thomas W. Kenny - San Carlos CA, US Peng Zhou - Albany CA, US Mark Munch - Los Altos CA, US James Gill Shook - Santa Cruz CA, US Kenneth Goodson - Belmont CA, US David Corbin - Los Altos CA, US
A microchannel heat exchanger coupled to a heat source and configured for cooling the heat source comprising a first set of fingers for providing fluid at a first temperature to a heat exchange region, wherein fluid in the heat exchange region flows toward a second set of fingers and exits the heat exchanger at a second temperature, wherein each finger is spaced apart from an adjacent finger by an appropriate dimension to minimize pressure drop in the heat exchanger and arranged in parallel. The microchannel heat exchanger includes an interface layer having the heat exchange region. Preferably, a manifold layer includes the first set of fingers and the second set of fingers configured within to cool hot spots in the heat source. Alternatively, the interface layer includes the first set and second set of fingers configured along the heat exchange region.
Method And Apparatus For Flexible Fluid Delivery For Cooling Desired Hot Spots In A Heat Producing Device
Thomas W. Kenny - San Carlos CA, US Mark Munch - Los Altos CA, US Peng Zhou - Albany CA, US James Gill Shook - Santa Cruz CA, US Girish Upadhya - San Jose CA, US Kenneth Goodson - Belmont CA, US David Corbin - Los Altos CA, US
A heat exchanger apparatus and method of manufacturing comprising: an interface layer for cooling a heat source and configured to pass fluid therethrough, the interface layer having an appropriate thermal conductivity and a manifold layer for providing fluid to the interface layer, wherein the manifold layer is configured to achieve temperature uniformity in the heat source preferably by cooling interface hot spot regions. A plurality of fluid ports are configured to the heat exchanger such as an inlet port and outlet port, whereby the fluid ports are configured vertically and horizontally. The manifold layer circulates fluid to a predetermined interface hot spot region in the interface layer, wherein the interface hot spot region is associated with the hot spot. The heat exchanger preferably includes an intermediate layer positioned between the interface and manifold layers and optimally channels fluid to the interface hot spot region.
Channeled Flat Plate Fin Heat Exchange System, Device And Method
A device, method, and system for a fluid cooled channeled heat exchange device is disclosed. The fluid cooled channeled heat exchange device utilizes fluid circulated through a channel heat exchanger for high heat dissipation and transfer area per unit volume. The device comprises a highly thermally conductive material, preferably with less than 200 W/m-K. The preferred channel heat exchanger comprises two coupled flat plates and a plurality of fins coupled to the flat plates. At least one of the plates preferably to receive flow of a fluid in a heated state. The fluid preferably carries heat from a heat source (such as a CPU, for example). Specifically, at least one of the plates preferably comprises a plurality of condenser channels configured to receive, to condense, and to cool the fluid in the heated state. The fluid in a cooler state is preferably carried from the device to the heat source, thereby cooling the heat source.
A vapor escape membrane for use in a heat exchanging device, including a heat pipe or heat sink that runs liquid into a cooling region positioned adjacent to the heat producing device, the vapor escape membrane comprising: a porous surface for removing vapor produced from the liquid in the cooling region, the membrane configured to confine the liquid only within the cooling region. The vapor escape membrane transfers vapor to a vapor region within the heat exchanging device, wherein the membrane is configured to prevent liquid in the cooling region from entering the vapor region. The membrane is configured to include a hydrophobic surface between the membrane and the cooling region, wherein the liquid in the cooling region does not flow through the porous surface. The vapor escape membrane includes a plurality of apertures for allowing vapor to transfer therethrough, each of the apertures having a predetermined dimension.
Method And Apparatus For Efficient Vertical Fluid Delivery For Cooling A Heat Producing Device
Thomas W. Kenny - San Carlos CA, US Mark Munch - Los Altos CA, US Peng Zhou - Albany CA, US James Gill Shook - Santa Cruz CA, US Girish Upadhya - San Jose CA, US Kenneth Goodson - Belmont CA, US Dave Corbin - Los Altos CA, US Mark McMaster - Palo Alto CA, US James Lovette - San Francisco CA, US
A heat exchanger and method of manufacturing thereof comprises an interface layer for cooling a heat source. The interface layer is coupled to the heat source and is configured to pass fluid therethrough. The heat exchanger further comprises a manifold layer that is coupled to the interface layer. The manifold layer includes at least one first port that is coupled to a first set of individualized holes which channel fluid through the first set. The manifold layer includes at least one second port coupled to a second set of individualized holes which channel fluid through the second set. The first set of holes and second set of holes are arranged to provide a minimized fluid path distance between the first and second ports to adequately cool the heat source. Preferably, each hole in the first set is positioned a closest optimal distance to an adjacent hole the second set.
Optimized Multiple Heat Pipe Blocks For Electronics Cooling
Peng Zhou - Albany CA, US Dolf van Der Heide - San Jose CA, US Kenneth Goodson - Belmont CA, US Girish Upadhya - San Jose CA, US
Assignee:
Cooligy, Inc. - Mountain View CA
International Classification:
F28D 15/00 F28F 7/00
US Classification:
16510421, 165 803, 16510433
Abstract:
A plate is thermally coupled to a heat generating device and thermally coupled to two heat pipes. Each heat pipe is configured to have a predetermined boiling point temperature selected according to design criteria. One or more additional heat pipes can be coupled to the plate. A heat spreader can be in thermal contact with the heat generating device and with at least one of the heat pipes. The heat pipes can differ in outer cross-sectional dimensions depending on thermal distance position relative to the heat generating device, such that the heat pipes located a farther thermal distance from the heat generating device have smaller outer cross-sectional dimensions than the heat pipes located a shorter thermal distance from the heat generating device.
Method And Apparatus For Achieving Temperature Uniformity And Hot Spot Cooling In A Heat Producing Device
Kenneth Goodson - Belmont CA, US Thomas Kenny - San Carlos CA, US Peng Zhou - Albany CA, US Girish Upadhya - Mountain View CA, US Mark Munch - Los Altos CA, US Mark McMaster - Palo Alto CA, US James Horn - Redwood City CA, US
Assignee:
Cooligy, Inc. - Mountain View CA
International Classification:
F28F 7/00
US Classification:
165 804, 16510433, 361699, 257715, 174 151
Abstract:
A method of controlling temperature of a heat source in contact with a heat exchanging surface of a heat exchanger, wherein the heat exchanging surface is substantially aligned along a plane. The method comprises channeling a first temperature fluid to the heat exchanging surface, wherein the first temperature fluid undergoes thermal exchange with the heat source along the heat exchanging surface. The method comprises channeling a second temperature fluid from the heat exchange surface, wherein fluid is channeled to minimize temperature differences along the heat source. The temperature differences are minimized by optimizing and controlling the fluidic and thermal resistances in the heat exchanger. The resistances to the fluid are influenced by size, volume and surface area of heat transferring features, multiple pumps, fixed and variable valves and flow impedance elements in the fluid path, pressure and flow rate control of the fluid, and other factors.
James Lovette - Palo Alto CA, US Peng Zhou - Albany CA, US James Gill Shook - Santa Cruz CA, US
Assignee:
Cooligy, Inc. - Mountain View CA
International Classification:
F28D 15/00 F28F 3/00 H05K 7/20
US Classification:
16510433, 165 804, 165143, 165170
Abstract:
An apparatus and method of circulating a heat-absorbing material within a heat exchanger. The apparatus comprises a manifold layer coupled to an interface layer. The manifold layer comprises an inlet manifold and an outlet manifold. The interface layer comprises a plurality of channels that extend from the inlet manifold, toward a heat-exchanging plane, and turn away from the heat-exchanging plane, terminating at the outlet manifold. The plurality of channels are stacked in a plane non-parallel to the heat-exchanging plane. Each of the channels is adjacent to another, thus allowing heat radiated from a heat-generating device to be conducted to a cooling material circulating within the channels, away from the heat-generating device. Preferably, each of the channels has a U-shape or an elongated U-shape.
News
Does the novel coronavirus have any links to a high-security lab in Wuhan?
Zhengli sent a note over WeChat to reassure her friends that there was no link, saying "I swear with my life, [the virus] has nothing to do with the lab," the South China Morning Post reported Feb. 6. Zhengli and another colleague, Peng Zhou, did not reply to a Live Science email requesting comment.
Date: Apr 18, 2020
Category: More news
Source: Google
Lab in Wuhan Warned in Early 2019 about Bat-Transmitted Coronaviruses
The authors of the study are Yi Fan, Kai Zhao, Zheng-Li Shiand Peng Zhou, and while many other studies in recent years had predicted the likelihood of a pandemic, this one was unique in that it found a connection of diseases between bats and humans. Also, the scientists concluded that diseases from
University of California, Berkeley - Biophysics, University of Oregon - Biophysics, Peking University - Physics
Peng Zhou
Work:
China Construction Bank (2013)
Education:
Lanzhou University - IMBA
Peng Zhou
Peng Zhou
Peng Zhou
Education:
Beijing Film Academy - Animation & Comics
About:
Hello, I'm Peng Zhou. Original from China. Studying Character Animation at Academy of Art University. Thanks for stopping by! Please feel free to contact me about potencial work at: wahtthao@gmail...
Tagline:
Hello, I'm Peng Zhou. Original from China. Studying Character Animation at Academy of Art University. Thanks for stopping by! Please feel free to contact me about potencial work at: [email protected]